Plant organelle proteomics: collaborating for optimal cell function.

Organelle proteomics describes the study of proteins present in organelle at a particular instance during the whole period of their life cycle in a cell. Organelles are specialized membrane bound structures within a cell that function by interacting with cytosolic and luminal soluble proteins making the protein composition of each organelle dynamic. Depending on organism, the total number of organelles within a cell varies, indicating their evolution with respect to protein number and function. For example, one of the striking differences between plant and animal cells is the plastids in plants. Organelles have their own proteins, and few organelles like mitochondria and chloroplast have their own genome to synthesize proteins for specific function and also require nuclear-encoded proteins. Enormous work has been performed on animal organelle proteomics. However, plant organelle proteomics has seen limited work mainly due to: (i) inter-plant and inter-tissue complexity, (ii) difficulties in isolation of subcellular compartments, and (iii) their enrichment and purity. Despite these concerns, the field of organelle proteomics is growing in plants, such as Arabidopsis, rice and maize. The available data are beginning to help better understand organelles and their distinct and/or overlapping functions in different plant tissues, organs or cell types, and more importantly, how protein components of organelles behave during development and with surrounding environments. Studies on organelles have provided a few good reviews, but none of them are comprehensive. Here, we present a comprehensive review on plant organelle proteomics starting from the significance of organelle in cells, to organelle isolation, to protein identification and to biology and beyond. To put together such a systematic, in-depth review and to translate acquired knowledge in a proper and adequate form, we join minds to provide discussion and viewpoints on the collaborative nature of organelles in cell, their proper function and evolution.

[1]  M. Umeda,et al.  Cell cycle function of a rice B2-type cyclin interacting with a B-type cyclin-dependent kinase. , 2003, The Plant journal : for cell and molecular biology.

[2]  J. Huet,et al.  Variation of the polypeptide composition of mitochondria isolated from different potato tissues. , 1992, Plant physiology.

[3]  Michel Zivy,et al.  Proteomics for genetic and physiological studies in plants , 1999, Electrophoresis.

[4]  Barry Causier,et al.  Analysing protein-protein interactions with the yeast two-hybrid system , 2002, Plant Molecular Biology.

[5]  F. Moreau,et al.  Isolation and properties of mitochondria from Arabidopsis thaliana cell suspension cultures , 1994 .

[6]  P. Haynes,et al.  Two-dimensional differential in-gel electrophoresis (DIGE) of leaf and roots of Lycopersicon esculentum. , 2007, Methods in molecular biology.

[7]  R. Alm,et al.  Proteomic variation is as large within as between strawberry varieties. , 2007, Journal of proteome research.

[8]  J. Bonifacino,et al.  The Mechanisms of Vesicle Budding and Fusion , 2004, Cell.

[9]  P. Lockhart,et al.  The origin of plastids , 2008, Philosophical Transactions of the Royal Society B: Biological Sciences.

[10]  Adam J. Carroll,et al.  Analysis of the Arabidopsis Cytosolic Ribosome Proteome Provides Detailed Insights into Its Components and Their Post-translational Modification *S , 2008, Molecular & Cellular Proteomics.

[11]  H. Mock,et al.  Proteome analysis of cold stress response in Arabidopsis thaliana using DIGE-technology. , 2006, Journal of experimental botany.

[12]  A. Millar,et al.  Towards an Analysis of the Rice Mitochondrial Proteome1 , 2003, Plant Physiology.

[13]  A. Millar,et al.  Genomic and Proteomic Analysis of Mitochondrial Carrier Proteins in Arabidopsis1 , 2003, Plant Physiology.

[14]  F. Tan,et al.  Removal of high‐abundance proteins for nuclear subproteome studies in rice (Oryza sativa) endosperm , 2008, Electrophoresis.

[15]  M. Resh Membrane targeting of lipid modified signal transduction proteins. , 2004, Sub-cellular biochemistry.

[16]  A. Sheikh,et al.  The 26S proteasome in garlic (Allium sativum): purification and partial characterization. , 2004, Journal of agricultural and food chemistry.

[17]  C. Foyer,et al.  Photorespiratory metabolism: genes, mutants, energetics, and redox signaling. , 2009, Annual review of plant biology.

[18]  T. Pederson,et al.  The plurifunctional nucleolus. , 1998, Nucleic acids research.

[19]  O. Kooten,et al.  Establishing in vitro Zinnia elegans cell suspension culture with high tracheary element differentiation , 2009, Cell biology international.

[20]  M. Mann,et al.  Proteomic analysis of the Arabidopsis nucleolus suggests novel nucleolar functions. , 2004, Molecular biology of the cell.

[21]  P Dupree,et al.  Use of a proteome strategy for tagging proteins present at the plasma membrane. , 1998, The Plant journal : for cell and molecular biology.

[22]  Jenny Renaut,et al.  Proteome analysis of non-model plants: a challenging but powerful approach. , 2008, Mass spectrometry reviews.

[23]  A. Rasmusson,et al.  The multiplicity of dehydrogenases in the electron transport chain of plant mitochondria. , 2008, Mitochondrion.

[24]  Anthony K. L. Leung,et al.  Nucleolar proteome dynamics , 2005, Nature.

[25]  P. Quail Plant Cell Fractionation , 1979 .

[26]  M. Duranti,et al.  Changes in the tobacco leaf apoplast proteome in response to salt stress , 2005, Proteomics.

[27]  P. Genschik,et al.  Cell cycle-dependent proteolysis and ectopic overexpression of cyclin B1 in tobacco BY2 cells. , 2000, The Plant journal : for cell and molecular biology.

[28]  G. Scheele Two-Dimensional Gel Analysis of Soluble Proteins , 1975 .

[29]  C. Nombela,et al.  Sequential Fractionation and Two-dimensional Gel Analysis Unravels the Complexity of the Dimorphic Fungus Candida albicans Cell Wall Proteome* , 2002, Molecular & Cellular Proteomics.

[30]  Jérôme Garin,et al.  The hydrophobic proteome of mitochondrial membranes from Arabidopsis cell suspensions. , 2004, Phytochemistry.

[31]  L. Mets,et al.  Mendelian and Uniparental Alterations in Erythromycin Binding by Plastid Ribosomes , 1971, Science.

[32]  M. Ishikawa,et al.  Expression of bacterial chloramphenicol acetyltransferase gene in tobacco plants mediated by TMV‐RNA , 1987, The EMBO journal.

[33]  W. Blackstock,et al.  A proteomic approach for the study of Saccharomyces cerevisiae cell wall biogenesis , 2000, Electrophoresis.

[34]  K. V. van Wijk,et al.  Protein Profiling of Plastoglobules in Chloroplasts and Chromoplasts. A Surprising Site for Differential Accumulation of Metabolic Enzymes1[W] , 2006, Plant Physiology.

[35]  F. Cremer,et al.  Method for extraction of proteins from green plant tissues for two-dimensional polyacrylamide gel electrophoresis. , 1985, Analytical biochemistry.

[36]  K. V. van Wijk Plastid proteomics. , 2004, Plant physiology and biochemistry : PPB.

[37]  A. Kurosky,et al.  Functional analysis of the nuclear proteome of human A549 alveolar epithelial cells by HPLC‐high resolution 2‐D gel electrophoresis , 2006, Proteomics.

[38]  P. Bork,et al.  Prediction of potential GPI-modification sites in proprotein sequences. , 1999, Journal of molecular biology.

[39]  W. Faulk,et al.  Communication to the editors: An immunocolloid method for the electron microscope , 1971 .

[40]  Q. Hu,et al.  Cell wall proteomics of the green alga Haematococcus pluvialis (Chlorophyceae) , 2004, Proteomics.

[41]  W. Gruissem,et al.  The chloroplast kinase network: new insights from large-scale phosphoproteome profiling. , 2009, Molecular plant.

[42]  S. Lukyanov,et al.  Fluorescent proteins from nonbioluminescent Anthozoa species , 1999, Nature Biotechnology.

[43]  C. Huber,et al.  Proteomics of Light-Harvesting Proteins in Different Plant Species. Analysis and Comparison by Liquid Chromatography-Electrospray Ionization Mass Spectrometry. Photosystem II1 , 2002, Plant Physiology.

[44]  Albert J R Heck,et al.  Quantitative Phosphoproteomics of Early Elicitor Signaling in Arabidopsis*S , 2007, Molecular & Cellular Proteomics.

[45]  S. Chivasa,et al.  Proteomic analysis of the Arabidopsis cell wall reveals unexpected proteins with new cellular locations. , 2004, Biochemical Society transactions.

[46]  Sebastian Y Bednarek,et al.  Membrane trafficking in plants: new discoveries and approaches. , 2004, Current opinion in plant biology.

[47]  J. Tzen,et al.  Two distinct steroleosins are present in seed oil bodies. , 2004, Plant physiology and biochemistry : PPB.

[48]  Catherine Rabouille,et al.  Mechanisms of regulated unconventional protein secretion , 2009, Nature Reviews Molecular Cell Biology.

[49]  Kazumasa Murata,et al.  A large-scale collection of phenotypic data describing an insertional mutant population to facilitate functional analysis of rice genes , 2006, Plant Molecular Biology.

[50]  M. Chalfie,et al.  Green fluorescent protein as a marker for gene expression. , 1994, Science.

[51]  A. Görg,et al.  2‐DE with IPGs , 2009, Electrophoresis.

[52]  S. Huber,et al.  Coupling oxidative signals to protein phosphorylation via methionine oxidation in Arabidopsis , 2009, The Biochemical journal.

[53]  Iris Meier,et al.  A proteomic study of the arabidopsis nuclear matrix , 2003, Journal of cellular biochemistry.

[54]  Richard D. Thompson,et al.  Exploring the nuclear proteome of Medicago truncatula at the switch towards seed filling. , 2008, The Plant journal : for cell and molecular biology.

[55]  L. Zolla,et al.  Coupling of native liquid phase isoelectrofocusing and blue native polyacrylamide gel electrophoresis: a potent tool for native membrane multiprotein complex separation. , 2008, Journal of proteome research.

[56]  R. Trethewey,et al.  Metabolic profiling: a Rosetta Stone for genomics? , 1999, Current opinion in plant biology.

[57]  J. Riechmann,et al.  Transcriptional Regulation: a Genomic Overview , 2002, The arabidopsis book.

[58]  P. Pevzner,et al.  Sequence similarity‐driven proteomics in organisms with unknown genomes by LC‐MS/MS and automated de novo sequencing , 2007, Proteomics.

[59]  R. Aebersold,et al.  Mass spectrometry in proteomics. , 2001, Chemical reviews.

[60]  C. Larré,et al.  Selective one-step extraction of Arabidopsis thaliana seed oleosins using organic solvents. , 2007, Journal of agricultural and food chemistry.

[61]  P. Roepstorff,et al.  Proteomic analysis of S‐nitrosylated proteins in Arabidopsis thaliana undergoing hypersensitive response , 2008, Proteomics.

[62]  István Simon,et al.  The HMMTOP transmembrane topology prediction server , 2001, Bioinform..

[63]  M. Hayashi,et al.  Proteomic analysis of highly purified peroxisomes from etiolated soybean cotyledons. , 2008, Plant & cell physiology.

[64]  G. Palade,et al.  The Golgi apparatus: 100 years of progress and controversy , 1998, Trends in Cell Biology.

[65]  Colin Brownlee,et al.  Role of the extracellular matrix in cell-cell signalling: paracrine paradigms. , 2002, Current opinion in plant biology.

[66]  W. Brandt,et al.  Protein structure modeling indicates hexahistidine‐tag interference with enzyme activity , 2008, Proteins.

[67]  P. Lu,et al.  Efficient disruption of a polyketide synthase gene (pks1) required for melanin synthesis through Agrobacterium-mediated transformation of Glarea lozoyensis , 2003, Molecular Genetics and Genomics.

[68]  H. Nielsen,et al.  Caleosins: Ca2+-binding proteins associated with lipid bodies , 2000, Plant Molecular Biology.

[69]  K. Sjölander,et al.  The Arabidopsis thaliana Chloroplast Proteome Reveals Pathway Abundance and Novel Protein Functions , 2004, Current Biology.

[70]  J. Doonan,et al.  In vivo interaction between CDKA and eIF4A: a possible mechanism linking translation and cell proliferation , 2004, FEBS letters.

[71]  Zhixiang Chen,et al.  Effects of mutations and constitutive overexpression of EDS1 and PAD4 on plant resistance to different types of microbial pathogens , 2006 .

[72]  S. Somerville,et al.  Mutations in PMR5 result in powdery mildew resistance and altered cell wall composition. , 2004, The Plant journal : for cell and molecular biology.

[73]  H. Braun,et al.  Analysis of the chloroplast protein complexes by blue-native polyacrylamide gel electrophoresis (BN-PAGE) , 1997, Photosynthesis Research.

[74]  G. Martin,et al.  Applications and advantages of virus-induced gene silencing for gene function studies in plants. , 2004, The Plant journal : for cell and molecular biology.

[75]  Y. Sang,et al.  From The Cover: A role for Arabidopsis cryptochromes and COP1 in the regulation of stomatal opening. , 2005, Proceedings of the National Academy of Sciences of the United States of America.

[76]  T. Kieselbach,et al.  The chloroplast lumen and stromal proteomes of Arabidopsis thaliana show differential sensitivity to short- and long-term exposure to low temperature. , 2006, The Plant journal : for cell and molecular biology.

[77]  S. Cutler,et al.  Random GFP::cDNA fusions enable visualization of subcellular structures in cells of Arabidopsis at a high frequency. , 2000, Proceedings of the National Academy of Sciences of the United States of America.

[78]  Alexandra M. E. Jones,et al.  Identification of novel proteins and phosphorylation sites in a tonoplast enriched membrane fraction of Arabidopsis thaliana , 2008, Proteomics.

[79]  C. Koncz,et al.  A simple method to transfer, integrate and study expression of foreign genes, such as chicken ovalbumin and alpha‐actin in plant tumors. , 1984, The EMBO journal.

[80]  B. Monsarrat,et al.  Proteomics of loosely bound cell wall proteins of Arabidopsis thaliana cell suspension cultures: A critical analysis , 2003, Electrophoresis.

[81]  A. Nebenführ Vesicle traffic in the endomembrane system: a tale of COPs, Rabs and SNAREs. , 2002, Current opinion in plant biology.

[82]  Lukas N. Mueller,et al.  An assessment of software solutions for the analysis of mass spectrometry based quantitative proteomics data. , 2008, Journal of proteome research.

[83]  J. Garin,et al.  A versatile method for deciphering plant membrane proteomes. , 2006, Journal of experimental botany.

[84]  W. Plaxton,et al.  Proteomic analysis of alterations in the secretome of Arabidopsis thaliana suspension cells subjected to nutritional phosphate deficiency , 2008, Proteomics.

[85]  P. O’Farrell High resolution two-dimensional electrophoresis of proteins. , 1975, The Journal of biological chemistry.

[86]  Aaron J Mackey,et al.  Getting More from Less , 2002, Molecular & Cellular Proteomics.

[87]  S. Theg,et al.  Evidence for an ER to Golgi to chloroplast protein transport pathway. , 2006, Trends in cell biology.

[88]  S. Clough,et al.  Floral dip: a simplified method for Agrobacterium-mediated transformation of Arabidopsis thaliana. , 1998, The Plant journal : for cell and molecular biology.

[89]  L. Staehelin The plant ER: a dynamic organelle composed of a large number of discrete functional domains. , 1997, The Plant journal : for cell and molecular biology.

[90]  J. Walton,et al.  Copyright © 1998, American Society for Microbiology Targeted Mutants of Cochliobolus carbonum Lacking the Two , 1997 .

[91]  M. Block,et al.  Chloroplast envelope membranes: a dynamic interface between plastids and the cytosol , 2007, Photosynthesis Research.

[92]  D. Rouquié,et al.  Towards the recovery of hydrophobic proteins on two‐dimensional electrophoresis gels , 1999, Electrophoresis.

[93]  Shoshi Kikuchi,et al.  Integrated transcriptomics, proteomics, and metabolomics analyses to survey ozone responses in the leaves of rice seedling. , 2008, Journal of proteome research.

[94]  C. Price Plant cell fractionation. , 1974, Methods in enzymology.

[95]  A. Busch,et al.  Comparative quantitative proteomics to investigate the remodeling of bioenergetic pathways under iron deficiency in Chlamydomonas reinhardtii , 2007, Proteomics.

[96]  R. Herrmann,et al.  Protein assembly of photosystem II and accumulation of subcomplexes in the absence of low molecular mass subunits PsbL and PsbJ. , 2003, European journal of biochemistry.

[97]  M. Jaquinod,et al.  Fatty Acid and Lipoic Acid Biosynthesis in Higher Plant Mitochondria* , 2000, The Journal of Biological Chemistry.

[98]  Alan M. Jones,et al.  The Impact of Arabidopsis on Human Health: Diversifying Our Portfolio , 2008, Cell.

[99]  Peter Roepstorff,et al.  A Presentation for the Esf Workshop 'proteomics: Focus on Protein Interactions' , 2022 .

[100]  T. Kieselbach,et al.  A peroxidase homologue and novel plastocyanin located by proteomics to the Arabidopsis chloroplast thylakoid lumen , 2000, FEBS letters.

[101]  J. Barber,et al.  Primary Structure Characterization of the Photosystem II D1 and D2 Subunits* , 1997, The Journal of Biological Chemistry.

[102]  L. Zieske A perspective on the use of iTRAQ reagent technology for protein complex and profiling studies. , 2006, Journal of experimental botany.

[103]  Makiko Suwa,et al.  Current developments on beta-barrel membrane proteins: sequence and structure analysis, discrimination and prediction. , 2007, Current protein & peptide science.

[104]  A. Millar,et al.  Analysis of the Arabidopsis mitochondrial proteome. , 2001, Plant physiology.

[105]  E. O’Shea,et al.  Global analysis of protein localization in budding yeast , 2003, Nature.

[106]  M. Rossignol,et al.  Cell wall proteins in apoplastic fluids of Arabidopsis thaliana rosettes: Identification by mass spectrometry and bioinformatics , 2005, Proteomics.

[107]  S. Chakraborty,et al.  The nuclear proteome of chickpea (Cicer arietinum L.) reveals predicted and unexpected proteins. , 2006, Journal of proteome research.

[108]  K. Tomizawa,et al.  Isolation of intact vacuoles and proteomic analysis of tonoplast from suspension-cultured cells of Arabidopsis thaliana. , 2004, Plant & cell physiology.

[109]  J. Aitchison,et al.  Proteomics of the peroxisome. , 2006, Biochimica et biophysica acta.

[110]  R. Quatrano,et al.  BRICK1 Is Required for Apical Cell Growth in Filaments of the Moss Physcomitrella patens but Not for Gametophore Morphology[W] , 2008, The Plant Cell Online.

[111]  Murray Grant,et al.  Analysis of the defence phosphoproteome of Arabidopsis thaliana using differential mass tagging , 2006, Proteomics.

[112]  J. Garin,et al.  Proteomics of chloroplast envelope membranes , 2004, Photosynthesis Research.

[113]  W. Hurkman,et al.  Solubilization of plant membrane proteins for analysis by two-dimensional gel electrophoresis. , 1986, Plant physiology.

[114]  S. Mongrand,et al.  Plant Lipid Rafts, Fluctuat nec mergitur , 2007, Plant signaling & behavior.

[115]  Yuexing Yuan,et al.  Proteomic analysis of rice plasma membrane reveals proteins involved in early defense response to bacterial blight , 2007, Proteomics.

[116]  M. Haslbeck,et al.  Identification and Characterization of a Stress-Inducible and a Constitutive Small Heat-Shock Protein Targeted to the Matrix of Plant Peroxisomes1[W] , 2006, Plant Physiology.

[117]  Tsuyoshi Nakagawa,et al.  The Plastid Protein THYLAKOID FORMATION1 and the Plasma Membrane G-Protein GPA1 Interact in a Novel Sugar-Signaling Mechanism in Arabidopsis[W] , 2006, The Plant Cell Online.

[118]  F. Dupont,et al.  Proteome of amyloplasts isolated from developing wheat endosperm presents evidence of broad metabolic capability. , 2006, Journal of experimental botany.

[119]  C. Job,et al.  Proteome-Wide Characterization of Seed Aging in Arabidopsis: A Comparison between Artificial and Natural Aging Protocols[W][OA] , 2008, Plant Physiology.

[120]  T. Inaba,et al.  Protein trafficking to plastids: one theme, many variations. , 2008, The Biochemical journal.

[121]  C. Huber,et al.  Proteomics of Light-Harvesting Proteins in Different Plant Species. Analysis and Comparison by Liquid Chromatography-Electrospray Ionization Mass Spectrometry. Photosystem I1 , 2002, Plant Physiology.

[122]  E. Bayer,et al.  Arabidopsis cell wall proteome defined using multidimensional protein identification technology , 2006, Proteomics.

[123]  Hans-Peter Braun,et al.  Biochemical dissection of the mitochondrial proteome from Arabidopsis thaliana by three‐dimensional gel electrophoresis , 2002, Electrophoresis.

[124]  Gerco C. Angenent,et al.  Transcriptional program controlled by the floral homeotic gene AGAMOUS during early organogenesis , 2005, Development.

[125]  J. Yates,et al.  Large-scale analysis of the yeast proteome by multidimensional protein identification technology , 2001, Nature Biotechnology.

[126]  K. V. van Wijk,et al.  The Oligomeric Stromal Proteome of Arabidopsis thaliana Chloroplasts *S , 2006, Molecular & Cellular Proteomics.

[127]  Jens M. Rick,et al.  Quantitative mass spectrometry in proteomics: a critical review , 2007, Analytical and bioanalytical chemistry.

[128]  T. Cavalier-smith,et al.  The Simultaneous Symbiotic Origin of Mitochondria, Chloroplasts, and Microbodies , 1987, Annals of the New York Academy of Sciences.

[129]  E. Martinoia,et al.  Flavone Glucoside Uptake into Barley Mesophyll and Arabidopsis Cell Culture Vacuoles. Energization Occurs by H+-Antiport and ATP-Binding Cassette-Type Mechanisms1 , 2002, Plant Physiology.

[130]  J. Lippincott-Schwartz,et al.  Dual-colour imaging with GFP variants. , 1999, Trends in cell biology.

[131]  A. Millar,et al.  Recent surprises in protein targeting to mitochondria and plastids. , 2006, Current opinion in plant biology.

[132]  J. Minden Comparative proteomics and difference gel electrophoresis. , 2007, BioTechniques.

[133]  Joseph H. Nadeau,et al.  The roads from phenotypic variation to gene discovery: mutagenesis versus QTLs , 2000, Nature Genetics.

[134]  Hans-Peter Braun,et al.  New Insights into the Respiratory Chain of Plant Mitochondria. Supercomplexes and a Unique Composition of Complex II1 , 2003, Plant Physiology.

[135]  J. Vandekerckhove,et al.  The Effect of α-Amanitin on the Arabidopsis Seed Proteome Highlights the Distinct Roles of Stored and Neosynthesized mRNAs during Germination1 , 2004, Plant Physiology.

[136]  T Nakahata,et al.  A method to identify cDNAs based on localization of green fluorescent protein fusion products. , 2000, Proceedings of the National Academy of Sciences of the United States of America.

[137]  Bernd Thiede,et al.  Peptide mass fingerprinting. , 2005, Methods.

[138]  Denis Hochstrasser,et al.  Functional proteomic analysis of human nucleolus. , 2002, Molecular biology of the cell.

[139]  Lennart Martens,et al.  The minimum information about a proteomics experiment (MIAPE) , 2007, Nature Biotechnology.

[140]  M. Rossignol,et al.  Plant proteome analysis: A 2004–2006 update , 2006, Proteomics.

[141]  P. Laurent,et al.  Lipids, Proteins, and Structure of Seed Oil Bodies from Diverse Species , 1993, Plant physiology.

[142]  R. Aebersold,et al.  Quantitative profiling of differentiation-induced microsomal proteins using isotope-coded affinity tags and mass spectrometry , 2001, Nature Biotechnology.

[143]  Chaofu Lu,et al.  An analysis of expressed sequence tags of developing castor endosperm using a full-length cDNA library , 2007, BMC Plant Biology.

[144]  U. Kutay,et al.  Nuclear export of mRNA: from the site of transcription to the cytoplasm. , 2004, Experimental cell research.

[145]  S M Burgess,et al.  beta-Glucuronidase from Escherichia coli as a gene-fusion marker. , 1986, Proceedings of the National Academy of Sciences of the United States of America.

[146]  M. Dundr,et al.  The nucleolus: an old factory with unexpected capabilities. , 2000, Trends in cell biology.

[147]  D. Leister,et al.  An improved prediction of chloroplast proteins reveals diversities and commonalities in the chloroplast proteomes of Arabidopsis and rice. , 2004, Gene.

[148]  Peter Shaw,et al.  High-throughput protein localization in Arabidopsis using Agrobacterium-mediated transient expression of GFP-ORF fusions. , 2004, The Plant journal : for cell and molecular biology.

[149]  R. Douce,et al.  The Plant Biotin Synthase Reaction , 2003, Journal of Biological Chemistry.

[150]  A. Andreeva,et al.  PROTEINS INVOLVED IN MEMBRANE TRANSPORT BETWEEN THE ER AND THE GOLGI APPARATUS: 21 PUTATIVE PLANT HOMOLOGUES REVEALED BY DBEST SEARCHING , 1998, Cell biology international.

[151]  J. Bourguignon,et al.  Interaction between the lipoamide-containing H-protein and the lipoamide dehydrogenase (L-protein) of the glycine decarboxylase multienzyme system. 1. Biochemical studies. , 2000, European journal of biochemistry.

[152]  S. Iida,et al.  A tale of two integrations, transgene and T-DNA: gene targeting by homologous recombination in rice. , 2004, Current opinion in biotechnology.

[153]  H. Daniell,et al.  Chloroplast Vector Systems for Biotechnology Applications1 , 2007, Plant Physiology.

[154]  S. Hunt,et al.  Multiplex proteomic analysis by two‐dimensional differential in‐gel electrophoresis , 2003, Proteomics.

[155]  Nicholas A. Cellar,et al.  Cross species applicability of abundant protein depletion columns for ribulose-1,5-bisphosphate carboxylase/oxygenase. , 2008, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.

[156]  D. Ort,et al.  Increased protein carbonylation in leaves of Arabidopsis and soybean in response to elevated [CO2] , 2008, Photosynthesis Research.

[157]  Kathryn S Lilley,et al.  Methods of quantitative proteomics and their application to plant organelle characterization. , 2006, Journal of experimental botany.

[158]  S. K. Zaidi,et al.  Runx2 (Cbfa1, AML-3) Interacts with Histone Deacetylase 6 and Represses the p21CIP1/WAF1 Promoter , 2002, Molecular and Cellular Biology.

[159]  李佩芳 International Rice Genome Sequencing Project. 2005. The map-based sequence of the rice genome. , 2005 .

[160]  T. Chardot,et al.  Purification and protein composition of oil bodies from Brassica napus seeds , 2006 .

[161]  M. Koornneef,et al.  A fortunate choice: the history of Arabidopsis as a model plant , 2002, Nature Reviews Genetics.

[162]  Kazuo Shinozaki,et al.  Sequencing and Analysis of Approximately 40 000 Soybean cDNA Clones from a Full-Length-Enriched cDNA Library , 2008, DNA research : an international journal for rapid publication of reports on genes and genomes.

[163]  V. Citovsky,et al.  Functional transient genetic transformation of Arabidopsis leaves by biolistic bombardment , 2008, Nature Protocols.

[164]  W. Gruissem,et al.  Proteome analysis of bell pepper (Capsicum annuum L.) chromoplasts. , 2006, Plant & cell physiology.

[165]  Caterina Temporini,et al.  Integrated analytical strategies for the study of phosphorylation and glycosylation in proteins. , 2008, Mass spectrometry reviews (Print).

[166]  S. Chakraborty,et al.  Dehydration-responsive Nuclear Proteome of Rice (Oryza sativa L.) Illustrates Protein Network, Novel Regulators of Cellular Adaptation, and Evolutionary Perspective* , 2009, Molecular & Cellular Proteomics.

[167]  R. Beynon,et al.  Multiplexed absolute quantification for proteomics using concatenated signature peptides encoded by QconCAT genes , 2006, Nature Protocols.

[168]  M. Karas,et al.  Rapid and Sensitive Identification of Major Histocompatibility Complex Class I-associated Tumor Peptides by Nano-LC MALDI MS/MS * , 2005, Molecular & Cellular Proteomics.

[169]  Debashish Bhattacharya,et al.  Cyanobacterial Contribution to Algal Nuclear Genomes Is Primarily Limited to Plastid Functions , 2006, Current Biology.

[170]  C. Hawes,et al.  The Plant ER–Golgi Interface , 2008, Traffic.

[171]  J. Klose Protein mapping by combined isoelectric focusing and electrophoresis of mouse tissues , 1975, Humangenetik.

[172]  G. Agrawal,et al.  Rice proteomics: Ending phase I and the beginning of phase II , 2009, Proteomics.

[173]  W. Majeran,et al.  Cell-type-specific differentiation of chloroplasts in C4 plants. , 2009, Trends in plant science.

[174]  N. Carpita,et al.  Structural models of primary cell walls in flowering plants: consistency of molecular structure with the physical properties of the walls during growth. , 1993, The Plant journal : for cell and molecular biology.

[175]  John Shanklin,et al.  DESATURATION AND RELATED MODIFICATIONS OF FATTY ACIDS1. , 1998, Annual review of plant physiology and plant molecular biology.

[176]  A. Shevchenko,et al.  Salt-induced Changes in the Plasma Membrane Proteome of the Halotolerant Alga Dunaliella salina as Revealed by Blue Native Gel Electrophoresis and Nano-LC-MS/MS Analysis*S , 2007, Molecular & Cellular Proteomics.

[177]  J. Whelan,et al.  Approaches to defining dual-targeted proteins in Arabidopsis. , 2009, The Plant journal : for cell and molecular biology.

[178]  M. Caboche,et al.  A comparison of two-dimensional electrophoresis data with phenotypical traits in Arabidopsis leads to the identification of a mutant (cri1) that accumulates cytokinins , 1997, Planta.

[179]  S. Bauer Mass spectrometry in the Mid-1930’s: Were chemists intrigued? , 2001 .

[180]  Qingming Luo,et al.  Mass spectrometry in systems biology: an overview. , 2008, Mass spectrometry reviews.

[181]  H. Canut,et al.  Free‐flow electrophoresis for fractionation of Arabidopsis thaliana membranes , 1998, Electrophoresis.

[182]  A. Weber,et al.  Low-coverage massively parallel pyrosequencing of cDNAs enables proteomics in non-model species: comparison of a species-specific database generated by pyrosequencing with databases from related species for proteome analysis of pea chloroplast envelopes. , 2008, Journal of biotechnology.

[183]  J. Yates,et al.  Proteomic Characterization of the Small Subunit of Chlamydomonas reinhardtii Chloroplast Ribosome , 2002, The Plant Cell Online.

[184]  D. Murphy,et al.  Seed oil-bodies: Isolation, composition and role of oil-body apolipoproteins , 1989 .

[185]  G. Edelman,et al.  Methods in chloroplast molecular biology , 1982 .

[186]  J. Kawai,et al.  Collection, Mapping, and Annotation of Over 28,000 cDNA Clones from japonica Rice , 2003, Science.

[187]  T. Phillips,et al.  Tonoplast Intrinsic Protein Isoforms as Markers for Vacuolar Functions , 1999, Plant Cell.

[188]  E. Vierling,et al.  The expanding family of Arabidopsis thaliana small heat stress proteins and a new family of proteins containing α-crystallin domains (Acd proteins) , 2001, Cell stress & chaperones.

[189]  M. Nishimura,et al.  A slow maturation of a cysteine protease with a granulin domain in the vacuoles of senescing Arabidopsis leaves. , 2001, Plant physiology.

[190]  D. Naiman,et al.  Quantitative Proteomic Analysis of Bean Plants Infected by a Virulent and Avirulent Obligate Rust Fungus *S , 2009, Molecular & Cellular Proteomics.

[191]  A. Link,et al.  Yeast Asc1p and Mammalian RACK1 Are Functionally Orthologous Core 40S Ribosomal Proteins That Repress Gene Expression , 2004, Molecular and Cellular Biology.

[192]  G. Martin,et al.  Chromosome landing: a paradigm for map-based gene cloning in plants with large genomes. , 1995, Trends in genetics : TIG.

[193]  Rod B. Watson,et al.  Mapping the Arabidopsis organelle proteome. , 2006, Proceedings of the National Academy of Sciences of the United States of America.

[194]  F. Brandizzi,et al.  Redistribution of membrane proteins between the Golgi apparatus and endoplasmic reticulum in plants is reversible and not dependent on cytoskeletal networks. , 2002, The Plant journal : for cell and molecular biology.

[195]  M. Ünlü,et al.  Difference gel electrophoresis. A single gel method for detecting changes in protein extracts , 1997, Electrophoresis.

[196]  Chris F. Taylor,et al.  Guidelines for reporting the use of mass spectrometry informatics in proteomics , 2008, Nature Biotechnology.

[197]  U. Vothknecht,et al.  A vesicle transport system inside chloroplasts , 2001, FEBS letters.

[198]  P Vincens,et al.  Computational method to predict mitochondrially imported proteins and their targeting sequences. , 1996, European journal of biochemistry.

[199]  F. Vandenesch,et al.  Isotope-labeled Protein Standards , 2007, Molecular & Cellular Proteomics.

[200]  M. Nishimura,et al.  Plant peroxisomes. , 2005, Vitamins and hormones.

[201]  Joachim Klose,et al.  Proteome analysis of Arabidopsis thaliana by two‐dimensional gel electrophoresis and matrix‐assisted laser desorption/ionisation‐time of flight mass spectrometry , 2005, Proteomics.

[202]  J. Garin,et al.  Chlamydomonas proteomics. , 2009, Current opinion in microbiology.

[203]  R. E. Sharp,et al.  Cell Wall Proteome in the Maize Primary Root Elongation Zone. II. Region-Specific Changes in Water Soluble and Lightly Ionically Bound Proteins under Water Deficit1[W][OA] , 2007, Plant Physiology.

[204]  M. Gerstein,et al.  Subcellular localization of the yeast proteome. , 2002, Genes & development.

[205]  J. Chan,et al.  Isolation of microtubule-associated proteins from carrot cytoskeletons: a 120 kDa map decorates all four microtubule arrays and the nucleus. , 1996, The Plant journal : for cell and molecular biology.

[206]  D. Inzé,et al.  The DNA replication checkpoint aids survival of plants deficient in the novel replisome factor ETG1 , 2008, The EMBO journal.

[207]  David Tollervey,et al.  Making ribosomes. , 2002, Current opinion in cell biology.

[208]  J. Sheen,et al.  Molecular identification of phenylalanine ammonia‐lyase as a substrate of a specific constitutively active Arabidopsis CDPK expressed in maize protoplasts , 2001, FEBS letters.

[209]  W. Faulk,et al.  An immunocolloid method for the electron microscope. , 1971, Immunochemistry.

[210]  Detlef Weigel,et al.  Modes of intercellular transcription factor movement in the Arabidopsis apex , 2003, Development.

[211]  H. Rogniaux,et al.  Protein composition of oil bodies from mature Brassica napus seeds , 2009, Proteomics.

[212]  Richard J. Cyr,et al.  Microtubule reorganization in tobacco BY-2 cells stably expressing GFP-MBD , 2000, Planta.

[213]  R. Evans,et al.  Hormonal regulation of the nuclear localization signals of the human glucocorticosteroid receptor. , 1992, Experimental cell research.

[214]  Edurne Baroja-Fernández,et al.  Rice Plastidial N-Glycosylated Nucleotide Pyrophosphatase/Phosphodiesterase Is Transported from the ER-Golgi to the Chloroplast through the Secretory Pathway[W] , 2006, The Plant Cell Online.

[215]  M. Hajduch,et al.  Protein and lipid composition analysis of oil bodies from two Brassica napus cultivars , 2006, Proteomics.

[216]  C. Hawes,et al.  A Rab1 GTPase Is Required for Transport between the Endoplasmic Reticulum and Golgi Apparatus and for Normal Golgi Movement in Plants , 2000, Plant Cell.

[217]  N. Raikhel,et al.  A unique mechanism for protein processing and degradation in Arabidopsis thaliana , 2003, Proceedings of the National Academy of Sciences of the United States of America.

[218]  T. Kieselbach,et al.  The proteome of the chloroplast lumen of higher plants , 2004, Photosynthesis Research.

[219]  J. Ellis,et al.  In planta Agrobacterium mediated gene transfer by infiltration of adult Arabidopsis thaliana plants , 1993 .

[220]  A. Harvey Millar,et al.  A Predicted Interactome for Arabidopsis1[C][W][OA] , 2007, Plant Physiology.

[221]  J. Lukeš,et al.  Evolution of the apicoplast and its hosts: from heterotrophy to autotrophy and back again. , 2009, International journal for parasitology.

[222]  Barbara Sitek,et al.  Study of Early Leaf Senescence in Arabidopsis thaliana by Quantitative Proteomics Using Reciprocal 14N/15N Labeling and Difference Gel Electrophoresis*S , 2008, Molecular & Cellular Proteomics.

[223]  Two-dimensional electrophoresis for plant proteomics. , 2007, Methods in molecular biology.

[224]  R. S. Marsh,et al.  Starch Biosynthetic Enzymes from Developing Maize Endosperm Associate in Multisubunit Complexes1[OA] , 2008, Plant Physiology.

[225]  M. Przybylski,et al.  Structure and dynamics of photosystem II light-harvesting complex revealed by high-resolution FTICR mass spectrometric proteome analysis , 2008, Journal of the American Society for Mass Spectrometry.

[226]  A. Murphy,et al.  Surface plasmon resonance characterization of calspermin-calmodulin binding kinetics. , 2008, Analytical biochemistry.

[227]  J. Sheen Signal transduction in maize and Arabidopsis mesophyll protoplasts. , 2001, Plant physiology.

[228]  Roman A Zubarev,et al.  Electron-capture dissociation tandem mass spectrometry. , 2004, Current opinion in biotechnology.

[229]  J. D. Weber,et al.  The ARF/p53 pathway. , 2000, Current opinion in genetics & development.

[230]  Daniel J. Maltman,et al.  Differential proteomic analysis of the endoplasmic reticulum from developing and germinating seeds of castor (Ricinus communis) identifies seed protein precursors as significant components of the endoplasmic reticulum , 2007, Proteomics.

[231]  Stephen W. Michnick,et al.  Direct visualization of protein interactions in plant cells , 2001, Nature Biotechnology.

[232]  A. J. Williams,et al.  Regulated Phosphorylation of 40S Ribosomal Protein S6 in Root Tips of Maize1 , 2003, Plant Physiology.

[233]  S. Baginsky,et al.  Novel Tonoplast Transporters Identified Using a Proteomic Approach with Vacuoles Isolated from Cauliflower Buds1[W][OA] , 2007, Plant Physiology.

[234]  C. Robinson,et al.  Chemical cross‐linking of the chloroplast localized small heat‐shock protein, Hsp21, and the model substrate citrate synthase , 2007, Protein science : a publication of the Protein Society.

[235]  J. A. Taylor,et al.  Sequence database searches via de novo peptide sequencing by tandem mass spectrometry. , 1997, Rapid communications in mass spectrometry : RCM.

[236]  K. V. van Wijk,et al.  Plastoglobules: versatile lipoprotein particles in plastids. , 2007, Trends in plant science.

[237]  M. Tyers,et al.  From genomics to proteomics , 2003, Nature.

[238]  D. Leister,et al.  A prediction of the size and evolutionary origin of the proteome of chloroplasts of Arabidopsis. , 2000, Trends in plant science.

[239]  Qi Sun,et al.  PPDB, the Plant Proteomics Database at Cornell , 2008, Nucleic Acids Res..

[240]  Steven Henikoff,et al.  Large-scale discovery of induced point mutations with high-throughput TILLING. , 2003, Genome research.

[241]  J. Garin,et al.  A Proteomics Dissection of Arabidopsis thaliana Vacuoles Isolated from Cell Culture*S , 2007, Molecular & Cellular Proteomics.

[242]  P. Eastmond Cloning and Characterization of the Acid Lipase from Castor Beans* , 2004, Journal of Biological Chemistry.

[243]  D A Day,et al.  The impact of oxidative stress on Arabidopsis mitochondria. , 2002, The Plant journal : for cell and molecular biology.

[244]  A. Millar,et al.  Blue-native PAGE in plants: a tool in analysis of protein-protein interactions , 2005, Plant Methods.

[245]  I. Stagljar,et al.  Yeast Genetic Methods for the Detection of Membrane Protein Interactions , 2012, BioDrugs.

[246]  S. Clemens,et al.  Proteome changes in Arabidopsis thaliana roots upon exposure to Cd2+. , 2006, Journal of experimental botany.

[247]  J. Whitelegge,et al.  Electrospray‐ionization mass spectrometry of intact intrinsic membrane proteins , 1998, Protein science : a publication of the Protein Society.

[248]  S. Chakraborty,et al.  Proteomics Approach to Identify Dehydration Responsive Nuclear Proteins from Chickpea (Cicer arietinum L.)*S , 2008, Molecular & Cellular Proteomics.

[249]  A. Slabas,et al.  Tandem affinity purification tagging of fatty acid biosynthetic enzymes in Synechocystis sp. PCC6803 and Arabidopsis thaliana. , 2006, Journal of experimental botany.

[250]  J. Thelen,et al.  Purification and proteomic characterization of plastids from Brassica napus developing embryos , 2008, Proteomics.

[251]  G. Agrawal,et al.  Plant proteomics : technologies, strategies, and applications , 2008 .

[252]  E. Chen,et al.  A new method for seed oil body purification and examination of oil body integrity following germination. , 1997, Journal of biochemistry.

[253]  X. Morin,et al.  A protein trap strategy to detect GFP-tagged proteins expressed from their endogenous loci in Drosophila , 2001, Proceedings of the National Academy of Sciences of the United States of America.

[254]  David J Studholme,et al.  Phosphoproteomic analysis of nuclei-enriched fractions from Arabidopsis thaliana. , 2009, Journal of proteomics.

[255]  J. Barber,et al.  Environmentally Modulated Phosphoproteome of Photosynthetic Membranes in the Green Alga Chlamydomonas reinhardtii*S , 2006, Molecular & Cellular Proteomics.

[256]  T. Kleine,et al.  DNA transfer from organelles to the nucleus: the idiosyncratic genetics of endosymbiosis. , 2009, Annual review of plant biology.

[257]  Huanming Yang,et al.  A Draft Sequence of the Rice Genome (Oryza sativa L. ssp. indica) , 2002, Science.

[258]  Joshua L. Heazlewood,et al.  SUBA: the Arabidopsis Subcellular Database , 2006, Nucleic Acids Res..

[259]  L. Ornstein,et al.  DISC ELECTROPHORESIS. I. BACKGROUND AND THEORY. , 1964, Annals of the New York Academy of Sciences.

[260]  F. Halgand,et al.  Top-down mass spectrometry of integral membrane proteins , 2006, Expert review of proteomics.

[261]  J. Yates,et al.  The functional proteomics toolbox: methods and applications. , 2002, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.

[262]  J Vandekerckhove,et al.  A Plant Plasma Membrane H+-ATPase Expressed in Yeast Is Activated by Phosphorylation at Its Penultimate Residue and Binding of 14-3-3 Regulatory Proteins in the Absence of Fusicoccin* , 2000, The Journal of Biological Chemistry.

[263]  M. Van Montagu,et al.  Small heat shock proteins and stress tolerance in plants. , 2002, Biochimica et biophysica acta.

[264]  M. Mann,et al.  Directed Proteomic Analysis of the Human Nucleolus , 2002, Current Biology.

[265]  Alexey I Nesvizhskii,et al.  Empirical statistical model to estimate the accuracy of peptide identifications made by MS/MS and database search. , 2002, Analytical chemistry.

[266]  S. Baginsky Plant proteomics: concepts, applications, and novel strategies for data interpretation. , 2009, Mass spectrometry reviews.

[267]  G. Heijne,et al.  ChloroP, a neural network‐based method for predicting chloroplast transit peptides and their cleavage sites , 1999, Protein science : a publication of the Protein Society.

[268]  R. Cyr,et al.  Use of abnormal preprophase bands to decipher division plane determination. , 2001, Journal of cell science.

[269]  G. Agrawal,et al.  System, trends and perspectives of proteomics in dicot plants. Part III: Unraveling the proteomes influenced by the environment, and at the levels of function and genetic relationships. , 2005, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.

[270]  John R Yates,et al.  Top down proteomics. , 2013, Analytical chemistry.

[271]  W. Martin,et al.  A proteomic survey of Chlamydomonas reinhardtii mitochondria sheds new light on the metabolic plasticity of the organelle and on the nature of the alpha-proteobacterial mitochondrial ancestor. , 2009, Molecular biology and evolution.

[272]  J. Garin,et al.  A High Content in Lipid-modified Peripheral Proteins and Integral Receptor Kinases Features in the Arabidopsis Plasma Membrane Proteome*S , 2007, Molecular & Cellular Proteomics.

[273]  Jean-Pierre Jacquot,et al.  Redox-sensitive GFP in Arabidopsis thaliana is a quantitative biosensor for the redox potential of the cellular glutathione redox buffer. , 2007, The Plant journal : for cell and molecular biology.

[274]  Joshua L. Heazlewood,et al.  Mitochondrial cytochrome c oxidase and succinate dehydrogenase complexes contain plant specific subunits , 2004, Plant Molecular Biology.

[275]  K. Lilley,et al.  Proteomic complex detection using sedimentation. , 2007, Analytical chemistry.

[276]  B. Haas,et al.  Proteome Map of the Chloroplast Lumen of Arabidopsis thaliana * , 2002, The Journal of Biological Chemistry.

[277]  N. Karp,et al.  Design and Analysis Issues in Quantitative Proteomics Studies , 2007, Proteomics.

[278]  S. Singer,et al.  Preparation of an Electron-dense Antibody Conjugate , 1959, Nature.

[279]  Magnus Palmblad,et al.  Hydroponic isotope labelling of entire plants (HILEP) for quantitative plant proteomics; an oxidative stress case study. , 2008, Phytochemistry.

[280]  S. Gygi,et al.  Correlation between Protein and mRNA Abundance in Yeast , 1999, Molecular and Cellular Biology.

[281]  P. Liao,et al.  Determination and analyses of the N-termini of oil-body proteins, steroleosin, caleosin and oleosin. , 2005, Plant physiology and biochemistry : PPB.

[282]  Jian-Kang Zhu,et al.  SOS2 Promotes Salt Tolerance in Part by Interacting with the Vacuolar H+-ATPase and Upregulating Its Transport Activity , 2007, Molecular and Cellular Biology.

[283]  T. Chardot,et al.  Protein composition of oil bodies in Arabidopsis thaliana ecotype WS. , 2004, Plant physiology and biochemistry : PPB.

[284]  David Tollervey,et al.  The function and synthesis of ribosomes , 2001, Nature Reviews Molecular Cell Biology.

[285]  G. Tai,et al.  Arabidopsis Sec21p and Sec23p homologs. Probable coat proteins of plant COP-coated vesicles. , 1999, Plant physiology.

[286]  K L Williams,et al.  What place for polyacrylamide in proteomics? , 2001, Trends in biotechnology.

[287]  T. Kleine,et al.  Towards a comprehensive catalog of chloroplast proteins and their interactions , 2008, Cell Research.

[288]  W. Frommer,et al.  ARAMEMNON, a Novel Database for Arabidopsis Integral Membrane Proteins1 , 2003, Plant Physiology.

[289]  David Jackson,et al.  Intercellular trafficking of a KNOTTED1 green fluorescent protein fusion in the leaf and shoot meristem of Arabidopsis , 2002, Proceedings of the National Academy of Sciences of the United States of America.

[290]  Kenta Nakai,et al.  Computational prediction of subcellular localization. , 2007, Methods in molecular biology.

[291]  C. Job,et al.  High-level expression of active human alpha1-antitrypsin in transgenic tobacco chloroplasts , 2009, Transgenic Research.

[292]  W. Gruissem,et al.  plprot: a comprehensive proteome database for different plastid types. , 2006, Plant & cell physiology.

[293]  L. Bogorad Evolution of early eukaryotic cells: genomes, proteomes, and compartments , 2007, Photosynthesis Research.

[294]  W. Souza,et al.  Cell fractionation of parasitic protozoa: a review. , 2003 .

[295]  Alexandra ME Jones,et al.  Quantitative phosphoproteomic analysis of plasma membrane proteins reveals regulatory mechanisms of plant innate immune responses , 2007, The Plant journal : for cell and molecular biology.

[296]  Paul Horton,et al.  Nucleic Acids Research Advance Access published May 21, 2007 WoLF PSORT: protein localization predictor , 2007 .

[297]  S. Lukyanov,et al.  GFP‐like chromoproteins as a source of far‐red fluorescent proteins , 2001, FEBS letters.

[298]  Harry Svensson,et al.  Isoelectric Fractionation, Analysis, and Characterization of Ampholytes in Natural pH Gradients. I. The Differential Equation of Solute Concentrations at a Steady State and its Solution for Simple Cases. , 1961 .

[299]  Rod B. Watson,et al.  The use of isotope-coded affinity tags (ICAT) to study organelle proteomes in Arabidopsis thaliana. , 2004, Biochemical Society transactions.

[300]  G. S. Ali,et al.  Analyses of In Vivo Interaction and Mobility of Two Spliceosomal Proteins Using FRAP and BiFC , 2008, PloS one.

[301]  G. Agrawal,et al.  Gel‐based proteomics reveals potential novel protein markers of ozone stress in leaves of cultivated bean and maize species of Panama , 2007, Electrophoresis.

[302]  G. Agrawal,et al.  Rejuvenating rice proteomics: Facts, challenges, and visions , 2006, Proteomics.

[303]  S. Hasezawa,et al.  Dynamic changes and the role of the cytoskeleton during the cell cycle in higher plant cells. , 2002, International review of cytology.

[304]  M. Mann,et al.  Analysis of Tyrosine Phosphorylation Sites in Signaling Molecules by a Phosphotyrosine-Specific Immonium Ion Scanning Method , 2002, Science's STKE.

[305]  I. Furusawa,et al.  The Colletotrichum lagenarium MAP kinase gene CMK1 regulates diverse aspects of fungal pathogenesis. , 2000, Molecular plant-microbe interactions : MPMI.

[306]  C. Koncz,et al.  Gene identification with sequenced T-DNA tags generated by transformation of Arabidopsis cell suspension. , 1998, The Plant journal : for cell and molecular biology.

[307]  A. Lamond,et al.  Structure and function in the nucleus. , 1998, Science.

[308]  P. Roepstorff,et al.  A proteomic approach for investigation of photosynthetic apparatus in plants. , 2005, Proteomics.

[309]  N. C. Tedford,et al.  Quantitative analysis of cell signaling and drug action via mass spectrometry‐based systems level phosphoproteomics , 2009, Proteomics.

[310]  M. Hayashi,et al.  Entering a new era of research on plant peroxisomes. , 2003, Current opinion in plant biology.

[311]  Lan Huang,et al.  Comprehensive Analysis of a Multidimensional Liquid Chromatography Mass Spectrometry Dataset Acquired on a Quadrupole Selecting, Quadrupole Collision Cell, Time-of-flight Mass Spectrometer , 2005, Molecular & Cellular Proteomics.

[312]  Daniel J. Maltman,et al.  Isolation and fractionation of the endoplasmic reticulum from castor bean (Ricinus communis) endosperm for proteomic analyses. , 2008, Methods in molecular biology.

[313]  J. Garin,et al.  Chloroplast proteomics and the compartmentation of plastidial isoprenoid biosynthetic pathways. , 2009, Molecular plant.

[314]  A. Millar,et al.  Free-flow electrophoresis for purification of plant mitochondria by surface charge. , 2007, The Plant journal : for cell and molecular biology.

[315]  J. Garin,et al.  AT_CHLORO, a Comprehensive Chloroplast Proteome Database with Subplastidial Localization and Curated Information on Envelope Proteins* , 2010, Molecular & Cellular Proteomics.

[316]  N. Kurata,et al.  Identification, characterization and interaction of HAP family genes in rice , 2008, Molecular Genetics and Genomics.

[317]  J. Buhmann,et al.  A workflow to increase the detection rate of proteins from unsequenced organisms in high‐throughput proteomics experiments , 2007, Proteomics.

[318]  B. Gunning The identity of mystery organelles in Arabidopsis plants expressing GFP , 1998 .

[319]  Finbarr Hayes,et al.  Transposon-based strategies for microbial functional genomics and proteomics. , 2003, Annual review of genetics.

[320]  M. Sauter,et al.  The plant Spc98p homologue colocalizes with gamma-tubulin at microtubule nucleation sites and is required for microtubule nucleation. , 2002, Journal of cell science.

[321]  S. Lukyanov,et al.  Natural Animal Coloration Can Be Determined by a Nonfluorescent Green Fluorescent Protein Homolog* , 2000, The Journal of Biological Chemistry.

[322]  L. Huber,et al.  Organelle Proteomics Implications for Subcellular Fractionation in Proteomics , 2003 .

[323]  K. Sjölander,et al.  Proteome Analysis of the Rice Etioplast , 2005, Molecular & Cellular Proteomics.

[324]  A. Görg,et al.  Horizontal two‐dimensional electrophoresis with immobilized pH gradients using PhastSystem , 1988, Electrophoresis.

[325]  R. Reski,et al.  An improved and highly standardised transformation procedure allows efficient production of single and multiple targeted gene-knockouts in a moss, Physcomitrella patens , 2003, Current Genetics.

[326]  M. Fromm,et al.  Improved tandem affinity purification tag and methods for isolation of protein heterocomplexes from plants. , 2004, The Plant journal : for cell and molecular biology.

[327]  K. Nakai,et al.  PSORT: a program for detecting sorting signals in proteins and predicting their subcellular localization. , 1999, Trends in biochemical sciences.

[328]  Ricardo Almeida,et al.  RNA silencing and genome regulation. , 2005, Trends in cell biology.

[329]  J. García,et al.  Functional and quantitative proteomics using SILAC in cancer research , 2008 .

[330]  A. Görg,et al.  Two-dimensional electrophoresis , 1991, Nature.

[331]  C. Adessi,et al.  Two‐dimensional electrophoresis of membrane proteins: A current challenge for immobilized pH gradients , 1997, Electrophoresis.

[332]  A. Müller,et al.  Regulation of polar auxin transport by AtPIN1 in Arabidopsis vascular tissue. , 1998, Science.

[333]  Adrian D Hegeman,et al.  A Quantitative Analysis of Arabidopsis Plasma Membrane Using Trypsin-catalyzed 18O Labeling * S , 2006, Molecular & Cellular Proteomics.

[334]  R. Bock Plastid biotechnology: prospects for herbicide and insect resistance, metabolic engineering and molecular farming. , 2007, Current opinion in biotechnology.

[335]  B. Gontero,et al.  Emergence of new regulatory mechanisms in the Benson-Calvin pathway via protein-protein interactions: a glyceraldehyde-3-phosphate dehydrogenase/CP12/phosphoribulokinase complex. , 2004, Journal of experimental botany.

[336]  J. Garin,et al.  Proteomics of the Chloroplast Envelope Membranes from Arabidopsis thaliana*S , 2003, Molecular & Cellular Proteomics.

[337]  A. Fernandez,et al.  Microinjection strategies for the study of mitogenic signaling in mammalian cells. , 1996, Frontiers in bioscience : a journal and virtual library.

[338]  A. Millar,et al.  Changes in the Mitochondrial Proteome during the Anoxia to Air Transition in Rice Focus around Cytochrome-containing Respiratory Complexes* , 2004, Journal of Biological Chemistry.

[339]  M. Karas,et al.  Laser desorption ionization of proteins with molecular masses exceeding 10,000 daltons. , 1988, Analytical chemistry.

[340]  M. Olson,et al.  Sensing Cellular Stress: Another New Function for the Nucleolus? , 2004, Science's STKE.

[341]  H. Lehrach,et al.  Extraction of proteins from plant tissues for two‐dimensional electrophoresis analysis , 2003, Electrophoresis.

[342]  M. Nishimura,et al.  A proteinase-storing body that prepares for cell death or stresses in the epidermal cells of Arabidopsis. , 2001, Plant & cell physiology.

[343]  Michael Gribskov,et al.  Protein-protein interactions of tandem affinity purification-tagged protein kinases in rice. , 2006, The Plant journal : for cell and molecular biology.

[344]  B. Andersson,et al.  The Mobile Thylakoid Phosphoprotein TSP9 Interacts with the Light-harvesting Complex II and the Peripheries of Both Photosystems* , 2007, Journal of Biological Chemistry.

[345]  W. Filipowicz,et al.  Biogenesis of small nucleolar ribonucleoproteins. , 2002, Current opinion in cell biology.

[346]  A. Rasmusson,et al.  Alternative NAD(P)H dehydrogenases of plant mitochondria. , 2004, Annual review of plant biology.

[347]  P. Lipovová,et al.  Structural properties of caleosin: a MS and CD study. , 2007, Archives of biochemistry and biophysics.

[348]  D. Macherel,et al.  Regulation of the Expression of the Glycine Decarboxylase Complex during Pea Leaf Development , 1996, Plant physiology.

[349]  P. Jarvis Organellar Proteomics: Chloroplasts in the Spotlight , 2004, Current Biology.

[350]  Y. Lai,et al.  Oleosin isoforms of high and low molecular weights are present in the oil bodies of diverse seed species. , 1990, Plant physiology.

[351]  M. Kanehisa,et al.  A knowledge base for predicting protein localization sites in eukaryotic cells , 1992, Genomics.

[352]  Abdelali Barakat,et al.  The organization of cytoplasmic ribosomal protein genes in the Arabidopsis genome. , 2001, Plant physiology.

[353]  P. Jarvis Targeting of nucleus-encoded proteins to chloroplasts in plants. , 2008, The New phytologist.

[354]  J. Yates,et al.  A model for random sampling and estimation of relative protein abundance in shotgun proteomics. , 2004, Analytical chemistry.

[355]  J. Whitelegge,et al.  The Chloroplast Grana Proteome Defined by Intact Mass Measurements from Liquid Chromatography Mass Spectrometry* , 2002, Molecular & Cellular Proteomics.

[356]  M. Wilm,et al.  Error-tolerant identification of peptides in sequence databases by peptide sequence tags. , 1994, Analytical chemistry.

[357]  H. Schägger,et al.  Blue native electrophoresis for isolation of membrane protein complexes in enzymatically active form. , 1991, Analytical biochemistry.

[358]  William D. Richardson,et al.  A short amino acid sequence able to specify nuclear location , 1984, Cell.

[359]  L. Agrawal,et al.  Comparative proteomics of tuber induction, development and maturation reveal the complexity of tuberization process in potato (Solanum tuberosum L.). , 2008, Journal of proteome research.

[360]  K. Spindler,et al.  Cracks in the beta-can: fluorescent proteins from Anemonia sulcata (Anthozoa, Actinaria). , 2000, Proceedings of the National Academy of Sciences of the United States of America.

[361]  Dirk Inzé,et al.  Mitochondrial type-I prohibitins of Arabidopsis thaliana are required for supporting proficient meristem development. , 2007, The Plant journal : for cell and molecular biology.

[362]  K. Feldmann T‐DNA insertion mutagenesis in Arabidopsis: mutational spectrum , 1991 .

[363]  Robert E. Kearney,et al.  Quantitative Proteomics Analysis of the Secretory Pathway , 2006, Cell.

[364]  E. Calvo,et al.  A study of the Candida albicans cell wall proteome , 2008, Proteomics.

[365]  T. Rabilloud,et al.  Fully denaturing two‐dimensional electrophoresis of membrane proteins: A critical update , 2008, Proteomics.

[366]  P. Dupree,et al.  A proteomic analysis of organelles from Arabidopsis thaliana , 2000, Electrophoresis.

[367]  K. Irrgang,et al.  Close vicinity of Lhc b1 and Lhc b4 in Photosystem II--membrane fragments as verified by chemical cross-linking. , 1998, European journal of biochemistry.

[368]  D. Schriemer,et al.  Plant Defense Responses in Opium Poppy Cell Cultures Revealed by Liquid Chromatography-Tandem Mass Spectrometry Proteomics*S , 2009, Molecular & Cellular Proteomics.

[369]  L. Staehelin,et al.  Stop-and-go movements of plant Golgi stacks are mediated by the acto-myosin system. , 1999, Plant physiology.

[370]  M. Mann,et al.  Proteomic characterization of the human centrosome by protein correlation profiling , 2003, Nature.

[371]  F. Kessler,et al.  Chloroplast biogenesis: diversity and regulation of the protein import apparatus. , 2009, Current opinion in cell biology.

[372]  W. Gruissem,et al.  Chloroplast proteomics: potentials and challenges. , 2004, Journal of experimental botany.

[373]  Robert H Singer,et al.  Dynamics of transcription and mRNA export. , 2005, Current opinion in cell biology.

[374]  Joseph E. Varner,et al.  Cell Wall Proteins , 1988 .

[375]  J. Doonan,et al.  EB1 reveals mobile microtubule nucleation sites in Arabidopsis , 2003, Nature Cell Biology.

[376]  Caiying Zhang,et al.  Activation tagging, an efficient tool for functional analysis of the rice genome , 2008, Plant Molecular Biology.

[377]  T. Kieselbach,et al.  The Thylakoid Lumen of Chloroplasts , 1998, The Journal of Biological Chemistry.

[378]  T. Kieselbach,et al.  Disulphide proteomes and interactions with thioredoxin on the track towards understanding redox regulation in chloroplasts and cyanobacteria. , 2009, Journal of proteomics.

[379]  E. Maréchal,et al.  The biochemical machinery of plastid envelope membranes , 1998, Plant physiology.

[380]  Thomas Cremer,et al.  Higher order chromatin architecture in the cell nucleus: on the way from structure to function , 2004, Biology of the cell.

[381]  L. Mcintosh,et al.  ALTERNATIVE OXIDASE: From Gene to Function. , 1997, Annual review of plant physiology and plant molecular biology.

[382]  R. Marouga,et al.  The development of the DIGE system: 2D fluorescence difference gel analysis technology , 2005, Analytical and bioanalytical chemistry.

[383]  L. Staehelin,et al.  High pressure freezing of intact plant tissues. Evaluation and characterization of novel features of the endoplasmic reticulum and associated membrane systems. , 1988, European journal of cell biology.

[384]  S. Chakraborty,et al.  Comparative Proteomics Analysis of Differentially Expressed Proteins in Chickpea Extracellular Matrix during Dehydration Stress*S , 2007, Molecular & Cellular Proteomics.

[385]  P. Genschik,et al.  Sub-cellular localisation of GFP-tagged tobacco mitotic cyclins during the cell cycle and after spindle checkpoint activation. , 2001, The Plant journal : for cell and molecular biology.

[386]  P. Silver,et al.  Protein and RNA export from the nucleus. , 2002, Developmental cell.

[387]  L. Kunst Preparation of physiologically active chloroplasts from Arabidopsis. , 1998, Methods in molecular biology.

[388]  S. Brunak,et al.  Locating proteins in the cell using TargetP, SignalP and related tools , 2007, Nature Protocols.

[389]  Lloyd M. Smith,et al.  Tripeptidyl Peptidase II. An Oligomeric Protease Complex from Arabidopsis1 , 2005, Plant Physiology.

[390]  A. Millar,et al.  The products of the mitochondrial orf25 and orfB genes are FO components in the plant F1FO ATP synthase , 2003, FEBS letters.

[391]  J. Garin,et al.  Metabolomic, proteomic and biophysical analyses of Arabidopsis thaliana cells exposed to a caesium stress. Influence of potassium supply. , 2006, Biochimie.

[392]  Rune Matthiesen,et al.  Stable Isotope Labeling of Arabidopsis thaliana Cells and Quantitative Proteomics by Mass Spectrometry*S , 2005, Molecular & Cellular Proteomics.

[393]  F. Maathuis,et al.  A proteomic and phosphoproteomic analysis of Oryza sativa plasma membrane and vacuolar membrane. , 2008, The Plant journal : for cell and molecular biology.

[394]  L. Guarente,et al.  Link between aging and the nucleolus. , 1997, Genes & development.

[395]  K. Patel,et al.  The Brassica napus calcium-binding protein, caleosin, has distinct endoplasmic reticulum- and lipid body-associated isoforms , 2001 .

[396]  P. Pevzner,et al.  Spectral probabilities and generating functions of tandem mass spectra: a strike against decoy databases. , 2008, Journal of proteome research.

[397]  C. Junot,et al.  The early responses of Arabidopsis thaliana cells to cadmium exposure explored by protein and metabolite profiling analyses , 2006, Proteomics.

[398]  W. Majeran,et al.  Functional Differentiation of Bundle Sheath and Mesophyll Maize Chloroplasts Determined by Comparative Proteomicsw⃞ , 2005, The Plant Cell Online.

[399]  J. Klose From 2‐D electrophoresis to proteomics , 2009, Electrophoresis.

[400]  K. Turksen,et al.  Isolation and characterization , 2006 .

[401]  M. Chrispeels,et al.  Tonoplast and Soluble Vacuolar Proteins Are Targeted by Different Mechanisms. , 1993, The Plant cell.

[402]  Lothar Jänsch,et al.  Proteomic approach to characterize the supramolecular organization of photosystems in higher plants. , 2004, Phytochemistry.

[403]  Stephen O. David,et al.  A novel experimental design for comparative two‐dimensional gel analysis: Two‐dimensional difference gel electrophoresis incorporating a pooled internal standard , 2003, Proteomics.

[404]  Visintin,et al.  The nucleolus: the magician's hat for cell cycle tricks , 2000, Current opinion in cell biology.

[405]  W. de Souza,et al.  Cell fractionation of parasitic protozoa: a review. , 2003, Memorias do Instituto Oswaldo Cruz.

[406]  Sandra Pelletier,et al.  An Arabidopsis Endo-1,4-β-d-Glucanase Involved in Cellulose Synthesis Undergoes Regulated Intracellular Cycling[W] , 2005, The Plant Cell Online.

[407]  J. Jorrín-Novo,et al.  Evaluation of three different protocols of protein extraction for Arabidopsis thaliana leaf proteome analysis by two-dimensional electrophoresis. , 2008, Journal of proteomics.

[408]  R. Douce,et al.  A Low Molecular Mass Heat-Shock Protein Is Localized to Higher Plant Mitochondria , 1994, Plant physiology.

[409]  M. Uschold,et al.  Methods and applications , 1953 .

[410]  J. David,et al.  Dynamic Recruitment of Cdc2 to Specific Microtubule Structures during Mitosis , 2001, The Plant Cell Online.

[411]  R. Wait,et al.  Proteomic analysis of the endoplasmic reticulum from developing and germinating seed of castor (Ricinus communis) , 2002 .

[412]  L. Huber,et al.  Subcellular fractionation of polarized epithelial cells and identification of organelle‐specific proteins by two‐dimensional gel electrophoresis , 1997, Electrophoresis.

[413]  Q. Lin,et al.  Proteomic analysis of rice endosperm cells in response to expression of hGM-CSF. , 2009, Journal of proteome research.

[414]  W. Weckwerth,et al.  If the antibody fails – a mass Western approach , 2008, The Plant journal : for cell and molecular biology.

[415]  F. Lottspeich,et al.  The ricinosomes of senescing plant tissue bud from the endoplasmic reticulum , 2001, Proceedings of the National Academy of Sciences of the United States of America.

[416]  R. Bhat,et al.  The visible touch: in planta visualization of protein-protein interactions by fluorophore-based methods , 2006, Plant Methods.

[417]  John R Yates,et al.  Proteomic characterization of wheat amyloplasts using identification of proteins by tandem mass spectrometry , 2002, Proteomics.

[418]  F. Legeai,et al.  Predotar: A tool for rapidly screening proteomes for N‐terminal targeting sequences , 2004, Proteomics.

[419]  A. Tsugita,et al.  Separation and characterization of Arabidopsis thaliana proteins by two‐dimensional gel electrophoresis , 1995, Electrophoresis.

[420]  J. Brown,et al.  The organization of spliceosomal components in the nuclei of higher plants. , 1995, Journal of cell science.

[421]  A. Shevchenko,et al.  MultiTag: multiple error-tolerant sequence tag search for the sequence-similarity identification of proteins by mass spectrometry. , 2003, Analytical chemistry.

[422]  U. Scheer,et al.  The nucleolus. , 1994, Current opinion in cell biology.

[423]  The Arabidopsis Genome Initiative Analysis of the genome sequence of the flowering plant Arabidopsis thaliana , 2000, Nature.

[424]  J. Bourguignon,et al.  Interaction between the Component Enzymes of the Glycine Decarboxylase Multienzyme Complex. , 1990, Plant physiology.

[425]  H. Braun,et al.  New insights into the composition, molecular mass and stoichiometry of the protein complexes of plant mitochondria. , 1996, The Plant journal : for cell and molecular biology.

[426]  David W. Galbraith,et al.  Immunopurification of Polyribosomal Complexes of Arabidopsis for Global Analysis of Gene Expression1[w] , 2005, Plant Physiology.

[427]  H. Leung,et al.  Rice Mutant Resources for Gene Discovery , 2004, Plant Molecular Biology.

[428]  J. Garin,et al.  PepLine: a software pipeline for high-throughput direct mapping of tandem mass spectrometry data on genomic sequences. , 2008, Journal of proteome research.

[429]  K. Resing,et al.  Proteomics strategies for protein identification , 2005, FEBS letters.

[430]  Kazuo Shinozaki,et al.  Phenome analysis in plant species using loss-of-function and gain-of-function mutants. , 2009, Plant & cell physiology.

[431]  Alisdair R Fernie,et al.  Enzymes of Glycolysis Are Functionally Associated with the Mitochondrion in Arabidopsis Cells Article, publication date, and citation information can be found at www.plantcell.org/cgi/doi/10.1105/tpc.012500. , 2003, The Plant Cell Online.

[432]  D. Baulcombe,et al.  Potato virus X as a vector for gene expression in plants. , 1992, The Plant journal : for cell and molecular biology.

[433]  S. Yokoi,et al.  Identification of dynamin as an interactor of rice GIGANTEA by tandem affinity purification (TAP). , 2008, Plant & cell physiology.

[434]  L. Zolla,et al.  Proteomic analysis of photosystem I components from different plant species , 2007, Proteomics.

[435]  R. H. Berg,et al.  Fluorescent protein applications in plants. , 2008, Methods in cell biology.

[436]  P. Hussey,et al.  The plant cytoskeleton: recent advances in the study of the plant microtubule-associated proteins MAP-65, MAP-190 and the Xenopus MAP215-like protein, MOR1 , 2002, Plant Molecular Biology.

[437]  Myriam Ferro,et al.  Identification of New Intrinsic Proteins in Arabidopsis Plasma Membrane Proteome*S , 2004, Molecular & Cellular Proteomics.

[438]  Eric Bonnet,et al.  A Tandem Affinity Purification-based Technology Platform to Study the Cell Cycle Interactome in Arabidopsis thaliana*S , 2007, Molecular & Cellular Proteomics.

[439]  I. Meier,et al.  Two Distinct Interacting Classes of Nuclear Envelope–Associated Coiled-Coil Proteins Are Required for the Tissue-Specific Nuclear Envelope Targeting of Arabidopsis RanGAP[W] , 2008, The Plant Cell Online.

[440]  Benno Schwikowski,et al.  Alignment of LC‐MS images, with applications to biomarker discovery and protein identification , 2008, Proteomics.

[441]  K. Nito,et al.  Functional differentiation of peroxisomes revealed by expression profiles of peroxisomal genes in Arabidopsis thaliana. , 2003, Plant & cell physiology.

[442]  G. Agrawal,et al.  Rice proteomics: a cornerstone for cereal food crop proteomes. , 2006, Mass spectrometry reviews.

[443]  M. Schmid,et al.  Genome-Wide Insertional Mutagenesis of Arabidopsis thaliana , 2003, Science.

[444]  V. Rubio,et al.  An alternative tandem affinity purification strategy applied to Arabidopsis protein complex isolation. , 2005, The Plant journal : for cell and molecular biology.

[445]  H. Leung,et al.  Mutant Resources in Rice for Functional Genomics of the Grasses[W] , 2009, Plant Physiology.

[446]  C. Job,et al.  Both the stroma and thylakoid lumen of tobacco chloroplasts are competent for the formation of disulphide bonds in recombinant proteins. , 2007, Plant biotechnology journal.

[447]  Paul A Haynes,et al.  Subcellular shotgun proteomics in plants: Looking beyond the usual suspects , 2007, Proteomics.

[448]  Devin Oglesbee,et al.  Investigating Mitochondrial Redox Potential with Redox-sensitive Green Fluorescent Protein Indicators* , 2004, Journal of Biological Chemistry.

[449]  H. Braun,et al.  Two-dimensional blue native/blue native polyacrylamide gel electrophoresis for the characterization of mitochondrial protein complexes and supercomplexes. , 2007, Methods in molecular biology.

[450]  Ganesh Kumar Agrawal,et al.  System, trends and perspectives of proteomics in dicot plants Part I: Technologies in proteome establishment. , 2005, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.

[451]  G. Scheele,et al.  Two-dimensional gel analysis of soluble proteins. Charaterization of guinea pig exocrine pancreatic proteins. , 1975, The Journal of biological chemistry.

[452]  J. Doonan,et al.  ENDOSPERM DEFECTIVE1 Is a Novel Microtubule-Associated Protein Essential for Seed Development in Arabidopsis[W] , 2009, The Plant Cell Online.

[453]  D. Grunwald,et al.  Non-canonical Transit Peptide for Import into the Chloroplast* 210 , 2002, The Journal of Biological Chemistry.

[454]  A. Leitner,et al.  Chemical tagging strategies for mass spectrometry-based phospho-proteomics. , 2009, Methods in molecular biology.

[455]  Peter Roepstorff,et al.  Central Functions of the Lumenal and Peripheral Thylakoid Proteome of Arabidopsis Determined by Experimentation and Genome-Wide Prediction Article, publication date, and citation information can be found at www.plantcell.org/cgi/doi/10.1105/tpc.010304. , 2002, The Plant Cell Online.

[456]  F. Dupont,et al.  Metabolic pathways of the wheat (Triticum aestivum) endosperm amyloplast revealed by proteomics , 2008, BMC Plant Biology.

[457]  C. Price [52] Plant cell fractionation , 1974 .

[458]  I. Granlund,et al.  Light Induced Changes in Protein Expression and Uniform Regulation of Transcription in the Thylakoid Lumen of Arabidopsis thaliana , 2009, PloS one.

[459]  Heribert Hirt,et al.  Site-specific phosphorylation profiling of Arabidopsis proteins by mass spectrometry and peptide chip analysis. , 2008, Journal of proteome research.

[460]  G. Sandberg,et al.  Proteomic Analysis of Different Mutant Genotypes of Arabidopsis Led to the Identification of 11 Proteins Correlating with Adventitious Root Development1[W] , 2005, Plant Physiology.

[461]  J. Kast,et al.  Utility of formaldehyde cross-linking and mass spectrometry in the study of protein-protein interactions. , 2008, Journal of mass spectrometry : JMS.

[462]  G. Friso,et al.  Quantitative Proteomics of a Chloroplast SRP54 Sorting Mutant and Its Genetic Interactions with CLPC1 in Arabidopsis1[C][W][OA] , 2008, Plant Physiology.

[463]  G. Friso,et al.  In-Depth Analysis of the Thylakoid Membrane Proteome of Arabidopsis thaliana Chloroplasts: New Proteins, New Functions, and a Plastid Proteome Database On-line version contains Web-only data. , 2004, The Plant Cell Online.

[464]  K. Lukyanov,et al.  Diversity and evolution of the green fluorescent protein family , 2002, Proceedings of the National Academy of Sciences of the United States of America.

[465]  Nicolas L Taylor,et al.  Differential Impact of Environmental Stresses on the Pea Mitochondrial Proteome*S , 2005, Molecular & Cellular Proteomics.

[466]  Takuji Sasaki,et al.  The map-based sequence of the rice genome , 2005, Nature.

[467]  U. K. Laemmli,et al.  Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4 , 1970, Nature.

[468]  J. Blein,et al.  Proteomics of Plant Detergent-resistant Membranes * S , 2006, Molecular & Cellular Proteomics.

[469]  W. Majeran,et al.  Consequences of C4 Differentiation for Chloroplast Membrane Proteomes in Maize Mesophyll and Bundle Sheath Cells *S , 2008, Molecular & Cellular Proteomics.

[470]  K. Weber,et al.  The reliability of molecular weight determinations by dodecyl sulfate-polyacrylamide gel electrophoresis. , 1969, The Journal of biological chemistry.

[471]  B. Gerrits,et al.  In vivo phosphorylation sites of barley tonoplast proteins identified by a phosphoproteomic approach , 2009, Proteomics.

[472]  K. V. van Wijk,et al.  High Light Response of the Thylakoid Proteome in Arabidopsis Wild Type and the Ascorbate-Deficient Mutant vtc2-2. A Comparative Proteomics Study1[W] , 2006, Plant Physiology.

[473]  D. Leister,et al.  Chloroplast proteins without cleavable transit peptides: rare exceptions or a major constituent of the chloroplast proteome? , 2009, Molecular plant.

[474]  Chris Hawes,et al.  Membrane protein transport between the endoplasmic reticulum and the Golgi in tobacco leaves is energy dependent but cytoskeleton independent: evidence from selective photobleaching. , 2002, The Plant cell.

[475]  J. Bailey-Serres,et al.  Proteomic Characterization of Evolutionarily Conserved and Variable Proteins of Arabidopsis Cytosolic Ribosomes1[w] , 2005, Plant Physiology.

[476]  Edward L Huttlin,et al.  Implications of 15N‐metabolic labeling for automated peptide identification in Arabidopsis thaliana , 2007, Proteomics.

[477]  G. Csucs,et al.  Tocopherol Cyclase (VTE1) Localization and Vitamin E Accumulation in Chloroplast Plastoglobule Lipoprotein Particles* , 2006, Journal of Biological Chemistry.

[478]  H. Braun,et al.  Proteomic approach to identify novel mitochondrial proteins in Arabidopsis. , 2001, Plant physiology.

[479]  K. Lilley,et al.  Plant organelle proteomics. , 2007, Current opinion in plant biology.

[480]  Garin,et al.  Technical Advance: Differential extraction of hydrophobic proteins from chloroplast envelope membranes: a subcellular-specific proteomic approach to identify rare intrinsic membrane proteins. , 1999, The Plant journal : for cell and molecular biology.

[481]  R. Bhat,et al.  Interaction between SGT1 and Cytosolic/Nuclear HSC70 Chaperones Regulates Arabidopsis Immune Responses[W] , 2007, The Plant Cell Online.

[482]  J. Garin,et al.  15N‐Metabolic labeling for comparative plasma membrane proteomics in Arabidopsis cells , 2007, Proteomics.

[483]  K. Feldmann,et al.  Agrobacterium-mediated transformation of germinating seeds of Arabidopsis thaliana: A non-tissue culture approach , 1987, Molecular and General Genetics MGG.

[484]  Daniel N. Wilson,et al.  High heterogeneity within the ribosomal proteins of the Arabidopsis thaliana 80S ribosome , 2005, Plant Molecular Biology.

[485]  R. E. Sharp,et al.  Cell Wall Proteome in the Maize Primary Root Elongation Zone. I. Extraction and Identification of Water-Soluble and Lightly Ionically Bound Proteins1 , 2005, Plant Physiology.

[486]  J. Soll,et al.  The chloroplast protein import machinery: a review. , 2007, Methods in molecular biology.

[487]  P. Christou Chapter 27 Particle Bombardment , 1995 .

[488]  R. Aebersold,et al.  Mass spectrometry-based proteomics , 2003, Nature.

[489]  D. de Vienne,et al.  Analysis of Leaf Proteins by Two-Dimensional Gel Electrophoresis: Protease Action as Exemplified by Ribulose Bisphosphate Carboxylase/ Oxygenase Degradation and Procedure to Avoid Proteolysis during Extraction. , 1985, Plant physiology.

[490]  Costel C. Darie,et al.  Isolation and structural characterization of the Ndh complex from mesophyll and bundle sheath chloroplasts of Zea mays , 2005, The FEBS journal.

[491]  Kei-Hoi Cheung,et al.  Large-scale analysis of the yeast genome by transposon tagging and gene disruption , 1999, Nature.

[492]  Paul D. Shaw,et al.  Arabidopsis nucleolar protein database (AtNoPDB) , 2004, Nucleic Acids Res..

[493]  J. Nickerson,et al.  Experimental observations of a nuclear matrix. , 2001, Journal of cell science.

[494]  Thomas Girke,et al.  The Vegetative Vacuole Proteome of Arabidopsis thaliana Reveals Predicted and Unexpected Proteinsw⃞ , 2004, The Plant Cell Online.

[495]  Peter R. Baker,et al.  Comprehensive Analysis of a Multidimensional Liquid Chromatography Mass Spectrometry Dataset Acquired on a Quadrupole Selecting, Quadrupole Collision Cell, Time-of-flight Mass Spectrometer , 2005, Molecular & Cellular Proteomics.

[496]  F. Cánovas,et al.  Plant proteome analysis , 2004, Proteomics.

[497]  R. Douce Mitochondria in Higher Plants: Structure, Function, and Biogenesis , 2012 .

[498]  A. Görg,et al.  The current state of two‐dimensional electrophoresis with immobilized pH gradients , 2000, Electrophoresis.

[499]  J. Tzen,et al.  Analysis of the Three Essential Constituents of Oil Bodies in Developing Sesame Seeds , 1998 .

[500]  P. Bork,et al.  Charting the proteomes of organisms with unsequenced genomes by MALDI-quadrupole time-of-flight mass spectrometry and BLAST homology searching. , 2001, Analytical chemistry.

[501]  R. Farràs,et al.  Intron-tagged epitope: a tool for facile detection and purification of proteins expressed in Agrobacterium-transformed plant cells. , 2000, The Plant journal : for cell and molecular biology.

[502]  O. Langella,et al.  A two-dimensional proteome map of maize endosperm. , 2004, Phytochemistry.

[503]  W. Gruissem,et al.  Proteome analysis of tobacco bright yellow-2 (BY-2) cell culture plastids as a model for undifferentiated heterotrophic plastids. , 2004, Journal of proteome research.

[504]  F. McLafferty,et al.  Top‐down MS, a powerful complement to the high capabilities of proteolysis proteomics , 2007, The FEBS journal.

[505]  Neil L. Kelleher,et al.  Peer Reviewed: Top-Down Proteomics , 2004 .

[506]  H. Braun,et al.  Purification and characterization of the preprotein translocase of the outer mitochondrial membrane from Arabidopsis. Identification of multiple forms of TOM20. , 2001, Plant physiology.

[507]  The alc-GR System. A Modified alc Gene Switch Designed for Use in Plant Tissue Culture1[w] , 2005, Plant Physiology.

[508]  C. Wasternack,et al.  The Arabidopsis Mutant cev1 Links Cell Wall Signaling to Jasmonate and Ethylene Responses Article, publication date, and citation information can be found at www.plantcell.org/cgi/doi/10.1105/tpc.002022. , 2002, The Plant Cell Online.

[509]  Michel Zivy,et al.  Extent of N‐terminal modifications in cytosolic proteins from eukaryotes , 2008, Proteomics.

[510]  T. Kirchhausen,et al.  Three ways to make a vesicle , 2000, Nature Reviews Molecular Cell Biology.

[511]  A. Weber,et al.  Comparative Proteomics of Chloroplast Envelopes from C3 and C4 Plants Reveals Specific Adaptations of the Plastid Envelope to C4 Photosynthesis and Candidate Proteins Required for Maintaining C4 Metabolite Fluxes1[W][OA] , 2008, Plant Physiology.

[512]  G. Moorhead,et al.  Large-scale Identification of Tubulin-binding Proteins Provides Insight on Subcellular Trafficking, Metabolic Channeling, and Signaling in Plant Cells*S , 2004, Molecular & Cellular Proteomics.

[513]  Peter J. Shaw,et al.  Small Nucleolar RNAs and Pre-rRNA Processing in Plants , 1998, Plant Cell.

[514]  L. Noël,et al.  Rapid one-step protein purification from plant material using the eight-amino acid StrepII epitope , 2004, Plant Molecular Biology.

[515]  J. Browse,et al.  A role for caleosin in degradation of oil-body storage lipid during seed germination. , 2006, The Plant journal : for cell and molecular biology.

[516]  Andrew R Jones,et al.  Minimum Reporting Guidelines for Proteomics Released by the Proteomics Standards Initiative , 2008, Molecular & Cellular Proteomics.

[517]  Kentaro Inoue The Chloroplast Outer Envelope Membrane: The Edge of Light and Excitement , 2007 .

[518]  F. Loreto,et al.  Proteomics, pigment composition, and organization of thylakoid membranes in iron-deficient spinach leaves. , 2007, Journal of experimental botany.

[519]  G. Payne,et al.  Temperature-dependent regulation of proteins in Aspergillus flavus: whole organism stable isotope labeling by amino acids. , 2008, Journal of proteome research.

[520]  P. Roepstorff,et al.  Combinations of SPR and MS for characterization of native and recombinant proteins in cell lysates , 2006, Molecular biotechnology.

[521]  G. Dreyfuss,et al.  Messenger-RNA-binding proteins and the messages they carry , 2002, Nature Reviews Molecular Cell Biology.

[522]  C. J. Chamberlain The Cell Wall , 1907, Botanical Gazette.

[523]  K. Lilley,et al.  Identification by 2‐D DIGE of apoplastic proteins regulated by oligogalacturonides in Arabidopsis thaliana , 2008, Proteomics.

[524]  H. Michel,et al.  Tandem mass spectrometry reveals that three photosystem II proteins of spinach chloroplasts contain N-acetyl-O-phosphothreonine at their NH2 termini. , 1988, The Journal of biological chemistry.

[525]  G. Agrawal,et al.  Plant secretome: Unlocking secrets of the secreted proteins , 2010, Proteomics.

[526]  Magnus Palmblad,et al.  Heat-shock response in Arabidopsis thaliana explored by multiplexed quantitative proteomics using differential metabolic labeling. , 2008, Journal of proteome research.

[527]  M. Hajduch,et al.  Proteomic Analysis of Seed Filling in Brassica napus. Developmental Characterization of Metabolic Isozymes Using High-Resolution Two-Dimensional Gel Electrophoresis1[W] , 2006, Plant Physiology.

[528]  L. Staehelin,et al.  The Plant Golgi Apparatus: Structure, Functional Organization and Trafficking Mechanisms , 1995 .

[529]  J. Garin,et al.  Influence of mass resolution on species matching in accurate mass and retention time (AMT) tag proteomics experiments. , 2008, Rapid communications in mass spectrometry : RCM.

[530]  F. Drepper,et al.  Identification of Precise Electrostatic Recognition Sites between Cytochrome c6 and the Photosystem I Subunit PsaF Using Mass Spectrometry* , 2006, Journal of Biological Chemistry.

[531]  J. Whitelegge,et al.  Transit Peptide Cleavage Sites of Integral Thylakoid Membrane Proteins* , 2003, Molecular & Cellular Proteomics.

[532]  V. Paakkarinen,et al.  Expression of protein complexes and individual proteins upon transition of etioplasts to chloroplasts in pea (Pisum sativum). , 2008, Plant & cell physiology.

[533]  G. Blobel,et al.  Identification of proteins associated with plastoglobules isolated from pea (Pisum sativum L.) chloroplasts , 1999, Planta.

[534]  S. Chakraborty,et al.  Extracellular matrix proteome of chickpea (Cicer arietinum L.) illustrates pathway abundance, novel protein functions and evolutionary perspect. , 2006, Journal of proteome research.

[535]  M. Hayashi,et al.  Novel glyoxysomal protein kinase, GPK1, identified by proteomic analysis of glyoxysomes in etiolated cotyledons of Arabidopsis thaliana. , 2003, Plant & cell physiology.

[536]  W F Thompson,et al.  Nuclear scaffolds and scaffold-attachment regions in higher plants. , 1991, Proceedings of the National Academy of Sciences of the United States of America.

[537]  B. Tomkinson,et al.  Tripeptidyl-peptidase II , 2013 .

[538]  F. Tan,et al.  Proteome and phosphoproteome analysis of chromatin associated proteins in rice (Oryza sativa) , 2007, Proteomics.

[539]  V. Sundaresan,et al.  Functional genomics in Arabidopsis: large-scale insertional mutagenesis complements the genome sequencing project. , 2000, Current opinion in biotechnology.

[540]  J. Garin,et al.  Folate biosynthesis in higher plants: purification and molecular cloning of a bifunctional 6‐hydroxymethyl‐7,8‐dihydropterin pyrophosphokinase/7,8‐dihydropteroate synthase localized in mitochondria , 1997, The EMBO journal.

[541]  M. Wilm,et al.  Combination of peptide OFFGEL fractionation and label‐free quantitation facilitated proteomics profiling of extraocular muscle , 2007, Proteomics.

[542]  Kazuki Saito,et al.  Metabolomics for functional genomics, systems biology, and biotechnology. , 2010, Annual review of plant biology.

[543]  F. Gao,et al.  Gene duplication, transfer, and evolution in the chloroplast genome. , 2009, Biotechnology advances.

[544]  Richard D. Smith,et al.  Gene expression profiling using advanced mass spectrometric approaches. , 2002, Journal of mass spectrometry : JMS.

[545]  O. Emanuelsson,et al.  Analysis of Curated and Predicted Plastid Subproteomes of Arabidopsis. Subcellular Compartmentalization Leads to Distinctive Proteome Properties1[w] , 2004, Plant Physiology.

[546]  Sixue Chen,et al.  Characterization of the maize xylem sap proteome. , 2006, Journal of proteome research.

[547]  K. Wood,et al.  Transient and Stable Expression of the Firefly Luciferase Gene in Plant Cells and Transgenic Plants , 1986, Science.

[548]  L. Gissot,et al.  Systematic analysis of protein subcellular localization and interaction using high-throughput transient transformation of Arabidopsis seedlings. , 2008, The Plant journal : for cell and molecular biology.

[549]  Z. Galcheva-gargova,et al.  Interaction of ZPR1 with Translation Elongation Factor-1α in Proliferating Cells , 1998, The Journal of cell biology.

[550]  In Situ Localization and in Vitro Induction of Plant COPI-Coated Vesicles , 2000, Plant Cell.

[551]  V. L. Rath,et al.  Structure and Function of the Eukaryotic Ribosome The Next Frontier , 2002, Cell.

[552]  Seung Y. Rhee,et al.  High-Throughput Fluorescent Tagging of Full-Length Arabidopsis Gene Products in Planta1 , 2004, Plant Physiology.

[553]  G. Friso,et al.  Proteomics of the Chloroplast: Systematic Identification and Targeting Analysis of Lumenal and Peripheral Thylakoid Proteins , 2000, Plant Cell.

[554]  D. Hochstrasser,et al.  Progress with proteome projects: why all proteins expressed by a genome should be identified and how to do it. , 1996, Biotechnology & genetic engineering reviews.

[555]  G. Agrawal,et al.  System, trends and perspectives of proteomics in dicot plants Part II: Proteomes of the complex developmental stages. , 2005, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.

[556]  Wolfram Weckwerth,et al.  Proteome Analysis of Arabidopsis Leaf Peroxisomes Reveals Novel Targeting Peptides, Metabolic Pathways, and Defense Mechanisms[W] , 2007, The Plant Cell Online.

[557]  Joshua L. Heazlewood,et al.  AMPDB: the Arabidopsis Mitochondrial Protein Database , 2004, Nucleic Acids Res..

[558]  Chitra Subramanian,et al.  Imaging protein interactions with bioluminescence resonance energy transfer (BRET) in plant and mammalian cells and tissues , 2007, Proceedings of the National Academy of Sciences.

[559]  P. Wojtaszek,et al.  Proteomic analysis reveals a novel set of cell wall proteins in a transformed tobacco cell culture that synthesises secondary walls as determined by biochemical and morphological parameters , 2001, Planta.

[560]  Anne-Dominique Devauchelle,et al.  Proteomic investigation of natural variation between Arabidopsis ecotypes , 2004, Proteomics.

[561]  S. Baginsky,et al.  Identification of a Vacuolar Sucrose Transporter in Barley and Arabidopsis Mesophyll Cells by a Tonoplast Proteomic Approach1 , 2006, Plant Physiology.

[562]  D. Radisky,et al.  Single proteins might have dual but related functions in intracellular and extracellular microenvironments , 2009, Nature Reviews Molecular Cell Biology.

[563]  S. Chivasa,et al.  Proteomic analysis of the Arabidopsis thaliana cell wall , 2002, Electrophoresis.

[564]  A. Reddy,et al.  Kinesins in the Arabidopsis genome: A comparative analysis among eukaryotes , 2001, BMC Genomics.

[565]  T. Rabilloud,et al.  Solubilization of Proteins in Two-Dimensional Electrophoresis , 2000 .

[566]  H. Braun,et al.  Identification and Characterization of Respirasomes in Potato Mitochondria1 , 2004, Plant Physiology.

[567]  A. Nakano,et al.  The Rice α-Amylase Glycoprotein Is Targeted from the Golgi Apparatus through the Secretory Pathway to the Plastids[W][OA] , 2009, The Plant Cell Online.

[568]  K. Jung,et al.  T-DNA insertional mutagenesis for functional genomics in rice. , 2000, The Plant journal : for cell and molecular biology.

[569]  W. Nickel Unconventional Secretory Routes: Direct Protein Export Across the Plasma Membrane of Mammalian Cells , 2005, Traffic.

[570]  S. Ravanel,et al.  The role of plant mitochondria in the biosynthesis of coenzymes , 2007, Photosynthesis Research.

[571]  V. Verkhusha,et al.  The molecular properties and applications of Anthozoa fluorescent proteins and chromoproteins , 2004, Nature Biotechnology.

[572]  A. Millar,et al.  Heterogeneity of the Mitochondrial Proteome for Photosynthetic and Non-photosynthetic Arabidopsis Metabolism*S , 2008, Molecular & Cellular Proteomics.

[573]  H. Schägger,et al.  Analysis of molecular masses and oligomeric states of protein complexes by blue native electrophoresis and isolation of membrane protein complexes by two-dimensional native electrophoresis. , 1994, Analytical biochemistry.

[574]  L. Hoffmann,et al.  A DIGE analysis of developing poplar leaves subjected to ozone reveals major changes in carbon metabolism , 2007, Proteomics.

[575]  R. Douce,et al.  Biochemical dissection of photorespiration. , 1999, Current opinion in plant biology.

[576]  D. Bird,et al.  SILIP: a novel stable isotope labeling method for in planta quantitative proteomic analysis. , 2008, The Plant journal : for cell and molecular biology.

[577]  N. Mrabet,et al.  Purification and cloning of two high molecular mass isoforms of peanut seed oleosin encoded by cDNAs of equal sizes. , 2005, Plant physiology and biochemistry : PPB.

[578]  J. Bourguignon,et al.  Plant mitochondrial NAD+-dependent malic enzyme. cDNA cloning, deduced primary structure of the 59- and 62-kDa subunits, import, gene complexity and expression analysis. , 1994, The Journal of biological chemistry.

[579]  J. Tzen,et al.  Steroleosin, a sterol-binding dehydrogenase in seed oil bodies. , 2002, Plant physiology.

[580]  N. Blom,et al.  Prediction of post‐translational glycosylation and phosphorylation of proteins from the amino acid sequence , 2004, Proteomics.

[581]  A. Burlingame,et al.  Proteomics Studies of Brassinosteroid Signal Transduction Using Prefractionation and Two-dimensional DIGE* , 2008, Molecular & Cellular Proteomics.

[582]  D. Baulcombe,et al.  Use of a gene expression system based on potato virus X to rapidly identify and characterize a tomato Pto homolog that controls fenthion sensitivity. , 1995, The Plant cell.

[583]  M. Sussman,et al.  Mass Spectrometric Resolution of Reversible Protein Phosphorylation in Photosynthetic Membranes ofArabidopsis thaliana* , 2001, The Journal of Biological Chemistry.

[584]  T Misteli,et al.  Protein dynamics: implications for nuclear architecture and gene expression. , 2001, Science.

[585]  M. Mann,et al.  A practical recipe for stable isotope labeling by amino acids in cell culture (SILAC) , 2006, Nature Protocols.

[586]  P. Hedley,et al.  Characterisation and functional analysis of two barley caleosins expressed during barley caryopsis development , 2005, Planta.

[587]  Rod B. Watson,et al.  Localization of Organelle Proteins by Isotope Tagging (LOPIT)*S , 2004, Molecular & Cellular Proteomics.

[588]  T. Boubekeur,et al.  Remorin, a Solanaceae Protein Resident in Membrane Rafts and Plasmodesmata, Impairs Potato virus X Movement[W] , 2009, The Plant Cell Online.

[589]  T. Gadella,et al.  Alteration of Microtubule Dynamic Instability during Preprophase Band Formation Revealed by Yellow Fluorescent Protein–CLIP170 Microtubule Plus-End Labeling Online version contains Web-only data. Article, publication date, and citation information can be found at www.plantcell.org/cgi/doi/10.1105/tp , 2003, The Plant Cell Online.

[590]  R. Frank,et al.  14-3-3 Proteins Are Constituents of the Insoluble Glycoprotein Framework of the Chlamydomonas Cell Wall Article, publication date, and citation information can be found at www.plantcell.org/cgi/doi/10.1105/tpc.010611. , 2003, The Plant Cell Online.

[591]  Sébastien Baud,et al.  Storage Reserve Accumulation in Arabidopsis: Metabolic and Developmental Control of Seed Filling , 2008, The arabidopsis book.

[592]  Wilhelm Gruissem,et al.  Proteome Dynamics during Plastid Differentiation in Rice1[W] , 2006, Plant Physiology.

[593]  O. Kohlbacher,et al.  Prediction of dual protein targeting to plant organelles. , 2009, The New phytologist.

[594]  Christopher J. Tonkin,et al.  Protein Targeting to the Malaria Parasite Plastid , 2007, Traffic.

[595]  A. Weber,et al.  Solute transporters of the plastid envelope membrane. , 2005, Annual review of plant biology.

[596]  A. Subramanian,et al.  Proteomic identification of all plastid-specific ribosomal proteins in higher plant chloroplast 30S ribosomal subunit. , 2003, European journal of biochemistry.

[597]  G. Bolwell,et al.  Differential Extraction and Protein Sequencing Reveals Major Differences in Patterns of Primary Cell Wall Proteins from Plants* , 1997, The Journal of Biological Chemistry.

[598]  S. Guan,et al.  A Proteomics Study of Brassinosteroid Response in Arabidopsis*S , 2007, Molecular & Cellular Proteomics.

[599]  A. Görg,et al.  Current two‐dimensional electrophoresis technology for proteomics , 2004, Proteomics.

[600]  M. Mann,et al.  Peptide separation with immobilized pI strips is an attractive alternative to in‐gel protein digestion for proteome analysis , 2008, Proteomics.

[601]  R. Dixon,et al.  Proteomics of Medicago sativa cell walls. , 2004, Phytochemistry.

[602]  S. Michelland,et al.  Peptides OFFGEL electrophoresis: a suitable pre-analytical step for complex eukaryotic samples fractionation compatible with quantitative iTRAQ labeling , 2008, Proteome Science.

[603]  J. Garin,et al.  Plant Seed Peroxygenase Is an Original Heme-oxygenase with an EF-hand Calcium Binding Motif* , 2006, Journal of Biological Chemistry.

[604]  J. Paszkowski,et al.  Plant genome modification by homologous recombination. , 2003, Current opinion in plant biology.

[605]  A. Bacic,et al.  Analysis of the Oryza sativa plasma membrane proteome using combined protein and peptide fractionation approaches in conjunction with mass spectrometry. , 2008, Journal of proteome research.

[606]  Bernhard O Palsson,et al.  Building the power house: recent advances in mitochondrial studies through proteomics and systems biology. , 2007, American journal of physiology. Cell physiology.

[607]  A. C. Webb,et al.  Studies on the molecular nature of human interleukin 1. , 1987, Journal of immunology.

[608]  D. Moazed,et al.  Gene regulation: Expression and silencing coupled , 2005, Nature.

[609]  Liwen Jiang,et al.  Organelle identification and proteomics in plant cells. , 2003, Trends in biotechnology.

[610]  A. Poustka,et al.  Systematic subcellular localization of novel proteins identified by large‐scale cDNA sequencing , 2000, EMBO reports.

[611]  S. Haebel,et al.  A two-dimensional map and database of soluble nuclear proteins from HepG2 cells as reference for identification of nutrient-regulated transcription factors , 2001, European journal of nutrition.

[612]  E. Meyerowitz,et al.  Specific and heritable genetic interference by double-stranded RNA in Arabidopsis thaliana. , 2000, Proceedings of the National Academy of Sciences of the United States of America.

[613]  P. Edman,et al.  A method for the determination of amino acid sequence in peptides. , 1949, Archives of biochemistry.

[614]  J. Tzen,et al.  Cloning and secondary structure analysis of caleosin, a unique calcium-binding protein in oil bodies of plant seeds. , 1999, Plant & cell physiology.

[615]  Matthew E Monroe,et al.  AMT tag approach to proteomic characterization of Deinococcus radiodurans and Shewanella oneidensis. , 2005, Methods of biochemical analysis.

[616]  S. Chapman,et al.  High-Throughput Viral Expression of cDNA–Green Fluorescent Protein Fusions Reveals Novel Subcellular Addresses and Identifies Unique Proteins That Interact with Plasmodesmata Article, publication date, and citation information can be found at www.plantcell.org/cgi/doi/10.1105/tpc.013284. , 2003, The Plant Cell Online.

[617]  Kathryn S Lilley,et al.  Sub‐cellular localization of membrane proteins , 2008, Proteomics.

[618]  J. Bourguignon,et al.  [37] Isolation of plant mitochondria: General principles and criteria of integrity , 1987 .

[619]  J. Blenis,et al.  SKAR Links Pre-mRNA Splicing to mTOR/S6K1-Mediated Enhanced Translation Efficiency of Spliced mRNAs , 2008, Cell.

[620]  J. Yates,et al.  GutenTag: high-throughput sequence tagging via an empirically derived fragmentation model. , 2003, Analytical chemistry.

[621]  P. Zimmermann,et al.  Genome-Scale Proteomics Reveals Arabidopsis thaliana Gene Models and Proteome Dynamics , 2008, Science.

[622]  M. Larsen,et al.  Analytical strategies for phosphoproteomics , 2009, Expert review of neurotherapeutics.

[623]  R. Aebersold,et al.  Advances in proteomic workflows for systems biology. , 2007, Current opinion in biotechnology.

[624]  A. Graessmann,et al.  Microinjection and organelle transplantation techniques : methods and applications , 1986 .

[625]  M. Rossignol,et al.  Large‐scale characterization of integral proteins from Arabidopsis vacuolar membrane by two‐dimensional liquid chromatography , 2004, Proteomics.

[626]  C. Huber,et al.  Resolution and identification of the protein components of the photosystem II antenna system of higher plants by reversed-phase liquid chromatography with electrospray-mass spectrometric detection. , 2000, Journal of chromatography. A.

[627]  Y. Ju,et al.  Purification of the Arabidopsis 26 S Proteasome , 2004, Journal of Biological Chemistry.

[628]  N. Dencher,et al.  “Respirasome”-like Supercomplexes in Green Leaf Mitochondria of Spinach* , 2004, Journal of Biological Chemistry.

[629]  G. Phillips,et al.  Identification of transcribed sequences in Arabidopsis thaliana by using high-resolution genome tiling arrays. , 2005, Proceedings of the National Academy of Sciences of the United States of America.

[630]  J. Garin,et al.  A survey of the plant mitochondrial proteome in relation to development , 2002, Proteomics.

[631]  T. Zimmermann,et al.  Simultaneous detection of two GFP spectral mutants during in vivo confocal microscopy of migrating Dictyostelium cells. , 1998, BioTechniques.

[632]  M. Gribskov,et al.  The Genome of Black Cottonwood, Populus trichocarpa (Torr. & Gray) , 2006, Science.

[633]  P. Shewry,et al.  Purification and characterization of oil-bodies (oleosomes) and oil-body boundary proteins (oleosins) from the developing cotyledons of sunflower (Helianthus annuus L.) , 1996, The Biochemical journal.

[634]  S. Gygi,et al.  Absolute quantification of proteins and phosphoproteins from cell lysates by tandem MS , 2003, Proceedings of the National Academy of Sciences of the United States of America.

[635]  M. Hayashi,et al.  Proteomic analysis of leaf peroxisomal proteins in greening cotyledons of Arabidopsis thaliana. , 2002, Plant & cell physiology.

[636]  Kelvin H Lee,et al.  Shotgun proteomics using the iTRAQ isobaric tags. , 2006, Briefings in functional genomics & proteomics.

[637]  R. Ranjeva,et al.  Phosphoproteins analysis in plants: a proteomic approach. , 2006, Phytochemistry.

[638]  B. D. Kohorn WAKs; cell wall associated kinases. , 2001, Current opinion in cell biology.

[639]  W. Gruissem,et al.  Large-Scale Arabidopsis Phosphoproteome Profiling Reveals Novel Chloroplast Kinase Substrates and Phosphorylation Networks1[W] , 2009, Plant Physiology.

[640]  Dirk Walther,et al.  Plant phosphoproteomics: An update , 2009, Proteomics.

[641]  T. Girke,et al.  Expression analysis of Arabidopsis vacuolar sorting receptor 3 reveals a putative function in guard cells. , 2008, Journal of experimental botany.

[642]  S. Dinesh-Kumar,et al.  Virus-induced gene silencing as a tool for delivery of dsRNA into plants. , 2009, Cold Spring Harbor protocols.

[643]  J. Hancock,et al.  Hydrogen peroxide and nitric oxide as signalling molecules in plants. , 2002, Journal of experimental botany.

[644]  Sabine Cornelsen,et al.  Evolutionary analysis of Arabidopsis, cyanobacterial, and chloroplast genomes reveals plastid phylogeny and thousands of cyanobacterial genes in the nucleus , 2002, Proceedings of the National Academy of Sciences of the United States of America.

[645]  Y. Hiraoka,et al.  Large‐scale screening of intracellular protein localization in living fission yeast cells by the use of a GFP‐fusion genomic DNA library , 2000, Genes to cells : devoted to molecular & cellular mechanisms.

[646]  K. V. van Wijk Challenges and prospects of plant proteomics. , 2001, Plant physiology.

[647]  E. Cho,et al.  Analysis of the Arabidopsis nuclear proteome and its response to cold stress. , 2003, The Plant journal : for cell and molecular biology.

[648]  K. V. Wijk Proteomics of the chloroplast: experimentation and prediction. , 2000 .

[649]  R. Bock,et al.  Reconstructing evolution: Gene transfer from plastids to the nucleus , 2008, BioEssays : news and reviews in molecular, cellular and developmental biology.

[650]  S. Brunak,et al.  Predicting subcellular localization of proteins based on their N-terminal amino acid sequence. , 2000, Journal of molecular biology.

[651]  Thierry Vermat,et al.  Integral membrane proteins of the chloroplast envelope: Identification and subcellular localization of new transporters , 2002, Proceedings of the National Academy of Sciences of the United States of America.

[652]  Matthias Mann,et al.  NOPdb: Nucleolar Proteome Database , 2005, Nucleic Acids Res..

[653]  M. Ushio-Fukai Localizing NADPH Oxidase–Derived ROS , 2006, Science's STKE.

[654]  O. Emanuelsson,et al.  Sorting Signals, N-Terminal Modifications and Abundance of the Chloroplast Proteome , 2008, PloS one.

[655]  L. Anderson,et al.  Three Enzymes of Carbon Metabolism or their Antigenic Analogs in Pea Leaf Nuclei , 1995, Plant physiology.

[656]  P. S. Naik,et al.  Small but mighty RNA-mediated interference in plants. , 2005, Indian journal of experimental biology.

[657]  P. Nurse,et al.  Identification of fission yeast nuclear markers using random polypeptide fusions with green fluorescent protein. , 1996, Proceedings of the National Academy of Sciences of the United States of America.

[658]  A. Tiselius Electrophoresis of serum globulin. I. , 1937, The Biochemical journal.

[659]  T. Kiss Small Nucleolar RNAs An Abundant Group of Noncoding RNAs with Diverse Cellular Functions , 2002, Cell.

[660]  R. Beavis,et al.  A method for assessing the statistical significance of mass spectrometry-based protein identifications using general scoring schemes. , 2003, Analytical chemistry.

[661]  M. Jaquinod,et al.  Structure and Function of a Mitochondrial Late Embryogenesis Abundant Protein Are Revealed by Desiccation[W] , 2007, The Plant Cell Online.

[662]  N. Rolland,et al.  Purification and proteomic analysis of chloroplasts and their sub-organellar compartments. , 2008, Methods in molecular biology.

[663]  Sixue Chen,et al.  Advances in plant proteomics , 2006, Proteomics.

[664]  L. Hoffmann,et al.  Quantitative changes in protein expression of cadmium‐exposed poplar plants , 2008, Proteomics.

[665]  S. Turner,et al.  Tracheary element differentiation. , 2007, Annual review of plant biology.

[666]  K. Müntz Protein dynamics and proteolysis in plant vacuoles. , 2007, Journal of experimental botany.

[667]  B. T. Storey,et al.  The respiratory chain of plant mitochondria. II. Oxidative phosphorylation in skunk cabbage mitochondria. , 1969, Plant physiology.

[668]  G. Calder,et al.  Localization of the Microtubule End Binding Protein EB1 Reveals Alternative Pathways of Spindle Development in Arabidopsis Suspension Cellsw⃞ , 2005, The Plant Cell Online.

[669]  P. Christou Particle bombardment. , 1995, Methods in Cell Biology.

[670]  Pierre-Alexandre Vidi,et al.  Plastoglobules Are Lipoprotein Subcompartments of the Chloroplast That Are Permanently Coupled to Thylakoid Membranes and Contain Biosynthetic Enzymes , 2006, The Plant Cell Online.

[671]  D. Rouquié,et al.  Large scale characterization of plant plasma membrane proteins. , 1999, Biochimie.

[672]  L. Mets,et al.  Altered chlorplast ribosomal proteins associated with erythromycin-resistant mutants in two genetic systems of Chlamydomonas reinhardi. , 1972, Proceedings of the National Academy of Sciences of the United States of America.

[673]  R Y Tsien,et al.  Understanding, improving and using green fluorescent proteins. , 1995, Trends in biochemical sciences.

[674]  N. Ferté,et al.  Oil-bodies as substrates for lipolytic enzymes. , 2001, Biochimica et biophysica acta.

[675]  N. Blom,et al.  Sequence and structure-based prediction of eukaryotic protein phosphorylation sites. , 1999, Journal of molecular biology.

[676]  C. Wilkerson,et al.  Proteomic study of the Arabidopsis thaliana chloroplastic envelope membrane utilizing alternatives to traditional two-dimensional electrophoresis. , 2003, Journal of proteome research.

[677]  D. Headon,et al.  A Link Between mRNA Turnover and RNA Interference in Arabidopsis , 2004, Science.

[678]  C. Albenne,et al.  Recent advances in plant cell wall proteomics , 2008, Proteomics.

[679]  G von Heijne,et al.  Prediction of organellar targeting signals. , 2001, Biochimica et biophysica acta.

[680]  C. Sundqvist,et al.  Proteomic analysis of the etioplast inner membranes of wheat (Triticum aestivum) by two‐dimensional electrophoresis and mass spectrometry , 2006 .

[681]  B. Buchanan,et al.  Redox regulation: a broadening horizon. , 2005, Annual review of plant biology.

[682]  R. Pennell Cell walls: structures and signals. , 1998, Current opinion in plant biology.

[683]  S. Reumann Specification of the Peroxisome Targeting Signals Type 1 and Type 2 of Plant Peroxisomes by Bioinformatics Analyses1[w] , 2004, Plant Physiology.

[684]  K. V. van Wijk,et al.  New Functions of the Thylakoid Membrane Proteome of Arabidopsis thaliana Revealed by a Simple, Fast, and Versatile Fractionation Strategy* , 2004, Journal of Biological Chemistry.

[685]  Julian Tonti-Filippini,et al.  Experimental Analysis of the Arabidopsis Mitochondrial Proteome Highlights Signaling and Regulatory Components, Provides Assessment of Targeting Prediction Programs, and Indicates Plant-Specific Mitochondrial Proteins Online version contains Web-only data. Article, publication date, and citation inf , 2004, The Plant Cell Online.

[686]  H. Schägger,et al.  Blue native PAGE , 2006, Nature Protocols.

[687]  M. Andersson,et al.  A chloroplast-localized vesicular transport system: a bio-informatics approach , 2004, BMC Genomics.

[688]  M. Rossignol,et al.  Grape berry biochemistry revisited upon proteomic analysis of the mesocarp , 2004, Proteomics.

[689]  A. Millar,et al.  Experimental Analysis of the Rice Mitochondrial Proteome, Its Biogenesis, and Heterogeneity1[W][OA] , 2008, Plant Physiology.

[690]  G. Heijne,et al.  Evidence for a protein transported through the secretory pathway en route to the higher plant chloroplast , 2005, Nature Cell Biology.

[691]  T. Boller,et al.  The Arabidopsis Receptor Kinase FLS2 Binds flg22 and Determines the Specificity of Flagellin Perception[W] , 2005, The Plant Cell Online.

[692]  K. V. Wijk Challenges and Prospects of Plant Proteomics , 2001 .

[693]  J. Kirk,et al.  Chloroplast structure and biogenesis. , 1971, Annual review of biochemistry.

[694]  D. Desclaux,et al.  Membrane proteomics: Use of additive main effects with multiplicative interaction model to classify plasma membrane proteins according to their solubility and electrophoretic properties , 2000, Electrophoresis.

[695]  A. Subramanian,et al.  The Plastid Ribosomal Proteins , 2000, The Journal of Biological Chemistry.

[696]  A. Weber,et al.  Proteomic analysis of the proplastid envelope membrane provides novel insights into small molecule and protein transport across proplastid membranes. , 2009, Molecular plant.

[697]  R. Milligan,et al.  Composition and Structure of the 80 S Ribosome from the Green Alga Chlamydomonas reinhardtii: 80 S Ribosomes are Conserved in Plants and Animals , 2005 .

[698]  C. Alban,et al.  Dual Targeting of Arabidopsis HOLOCARBOXYLASE SYNTHETASE1: A Small Upstream Open Reading Frame Regulates Translation Initiation and Protein Targeting1[W] , 2007, Plant Physiology.

[699]  C. González,et al.  Protein traps: using intracellular localization for cloning. , 2000, Trends in cell biology.

[700]  T. Thomas,et al.  ATS1 and ATS3: two novel embryo-specific genes in Arabidopsis thaliana , 1999, Plant Molecular Biology.

[701]  J. Doonan,et al.  Identification of a novel family of 70 kDa microtubule-associated proteins in Arabidopsis cells. , 2005, The Plant journal : for cell and molecular biology.

[702]  J. Garin,et al.  Dynamics of Arabidopsis thaliana soluble proteome in response to different nutrient culture conditions , 2006, Electrophoresis.

[703]  J. Brown,et al.  The organization of ribosomal RNA processing correlates with the distribution of nucleolar snRNAs. , 1996, Journal of cell science.

[704]  A. Millar,et al.  Mitochondrial complex I from Arabidopsis and rice: orthologs of mammalian and fungal components coupled with plant-specific subunits. , 2003, Biochimica et biophysica acta.

[705]  L. Anderson,et al.  Seven Enzymes of Carbon Metabolism, Including Three Calvin Cycle Isozymes, Are Present in the Secondary Cell Wall Thickenings of the Developing Xylem Tracheary Elements in Pea Leaves , 2004, International Journal of Plant Sciences.

[706]  M. Okuwaki,et al.  [Structure and function of the nucleolus]. , 2006, Tanpakushitsu kakusan koso. Protein, nucleic acid, enzyme.

[707]  A. Kolin,et al.  Erratum: Separation and Concentration of Proteins in a pH Field Combined with an Electric Field , 1954 .

[708]  L. Sieker,et al.  Interaction between the lipoamide-containing H-protein and the lipoamide dehydrogenase (L-protein) of the glycine decarboxylase multienzyme system 2. Crystal structures of H- and L-proteins. , 2000, European journal of biochemistry.

[709]  L. Lepiniec,et al.  At5g50600 encodes a member of the short-chain dehydrogenase reductase superfamily with 11beta- and 17beta-hydroxysteroid dehydrogenase activities associated with Arabidopsis thaliana seed oil bodies. , 2007, Biochimie.

[710]  R. Milligan,et al.  Composition and structure of the 80S ribosome from the green alga Chlamydomonas reinhardtii: 80S ribosomes are conserved in plants and animals. , 2005, Journal of molecular biology.

[711]  D. Stemple TILLING — a high-throughput harvest for functional genomics , 2004, Nature Reviews Genetics.

[712]  J V Maizel,et al.  Molecular weight estimation of polypeptide chains by electrophoresis in SDS-polyacrylamide gels. , 1967, Biochemical and biophysical research communications.

[713]  L. Zolla,et al.  Investigation of the Lateral Light-induced Migration of Photosystem II Light-harvesting Proteins by Nano-high Performance Liquid Chromatography Electrospray Ionization Mass Spectrometry* , 2005, Journal of Biological Chemistry.

[714]  A. Marinas,et al.  Liquid chromatography/triple quadrupole tandem mass spectrometry with multiple reaction monitoring for optimal selection of transitions to evaluate nutraceuticals from olive-tree materials. , 2008, Rapid communications in mass spectrometry : RCM.

[715]  Joachim M. Buhmann,et al.  PepSplice: cache-efficient search algorithms for comprehensive identification of tandem mass spectra , 2007, Bioinform..

[716]  W. Richard McCombie,et al.  Sorghum Genome Sequencing by Methylation Filtration , 2005, PLoS biology.

[717]  G. Pastori,et al.  Ascorbate biosynthesis in mitochondria is linked to the electron transport chain between complexes III and IV. , 2000, Plant physiology.

[718]  M. Uemura,et al.  Mass spectrometric approach for identifying putative plasma membrane proteins of Arabidopsis leaves associated with cold acclimation. , 2003, The Plant journal : for cell and molecular biology.

[719]  J. Echave,et al.  Gamma carbonic anhydrase like complex interact with plant mitochondrial complex I , 2004, Plant Molecular Biology.

[720]  Guang Li,et al.  AtPID: Arabidopsis thaliana protein interactome database—an integrative platform for plant systems biology , 2007, Nucleic Acids Res..

[721]  M. Gertz,et al.  Interactions of rotor subunits in the chloroplast ATP synthase modulated by nucleotides and by Mg2+. , 2007, Biochimica et biophysica acta.

[722]  R. Farràs,et al.  Detection of in vivo protein interactions between Snf1-related kinase subunits with intron-tagged epitope-labelling in plants cells. , 2001, Nucleic acids research.

[723]  E. Herman,et al.  Endoplasmic reticulum-derived compartments function in storage and as mediators of vacuolar remodeling via a new type of organelle, precursor protease vesicles. , 2000, Plant physiology.

[724]  A. Maldonado,et al.  Plant proteome analysis: A 2006 update , 2007, Proteomics.

[725]  F. Rébeillé,et al.  The glycine decarboxylase system: a fascinating complex. , 2001, Trends in plant science.

[726]  J. Garin,et al.  Organic solvent extraction as a versatile procedure to identify hydrophobic chloroplast membrane proteins , 2000, Electrophoresis.

[727]  V. Reisinger,et al.  Cytochrome b6f is a dimeric protochlorophyll a binding complex in etioplasts , 2008, The FEBS journal.

[728]  Huiqin Ma,et al.  Grape berry plasma membrane proteome analysis and its differential expression during ripening. , 2008, Journal of experimental botany.

[729]  J. Bourguignon,et al.  Resolution and characterization of the glycine-cleavage reaction in pea leaf mitochondria. Properties of the forward reaction catalysed by glycine decarboxylase and serine hydroxymethyltransferase. , 1988, The Biochemical journal.

[730]  Martin Gene discovery for crop improvement , 1998, Current opinion in biotechnology.

[731]  J. Voigt Extraction by lithium chloride of hydroxyproline-rich glycoproteins from intact cells of Chlamydomonas reinhardii , 1985, Planta.

[732]  S. Cameron,et al.  Analysis of Protein Complexes in Wheat Amyloplasts Reveals Functional Interactions among Starch Biosynthetic Enzymes1[C][W][OA] , 2008, Plant Physiology.

[733]  O. Vesterberg,et al.  Synthesis and Isoelectric Fractionation of Carrier Ampholytes. , 1969 .

[734]  Yves Meyer,et al.  A yeast two-hybrid knockout strain to explore thioredoxin-interacting proteins in vivo. , 2005, Proceedings of the National Academy of Sciences of the United States of America.

[735]  M. Mann,et al.  Electrospray ionization for mass spectrometry of large biomolecules. , 1989, Science.

[736]  J. Ohlrogge,et al.  The Predicted Candidates of Arabidopsis Plastid Inner Envelope Membrane Proteins and Their Expression Profiles1,212 , 2002, Plant Physiology.

[737]  E. Dumas‐Gaudot,et al.  A mass spectrometric approach to identify arbuscular mycorrhiza‐related proteins in root plasma membrane fractions , 2006, Proteomics.

[738]  J. Davie Histone modifications, chromatin structure, and the nuclear matrix , 1996, Journal of cellular biochemistry.

[739]  K. Roberts,et al.  How the cell wall acquired a cellular context. , 2001, Plant physiology.

[740]  D. Grunwald,et al.  Toc159- and Toc75-independent Import of a Transit Sequence-less Precursor into the Inner Envelope of Chloroplasts* , 2007, Journal of Biological Chemistry.

[741]  V. Paakkarinen,et al.  Dynamics of photosystem II: a proteomic approach to thylakoid protein complexes. , 2004, Journal of experimental botany.

[742]  Bret Cooper,et al.  Shotgun proteomic analysis of Arabidopsis thaliana leaves. , 2007, Journal of separation science.

[743]  T. Becker,et al.  Prediction of the plant β‐barrel proteome: A case study of the chloroplast outer envelope , 2003, Protein science : a publication of the Protein Society.

[744]  V. Thorsson,et al.  Integrated Genomic and Proteomic Analyses of Gene Expression in Mammalian Cells*S , 2004, Molecular & Cellular Proteomics.

[745]  R. Tsien,et al.  Engineering green fluorescent protein for improved brightness, longer wavelengths and fluorescence resonance energy transfer , 1996, Current Biology.

[746]  J. Hegemann,et al.  Green fluorescent protein as a marker for gene expression and subcellular localization in budding yeast , 1996, Yeast.

[747]  J. Vandekerckhove,et al.  Proteomic analysis of arabidopsis seed germination and priming. , 2001, Plant physiology.

[748]  P. Christou Rice transformation: bombardment , 1997, Plant Molecular Biology.

[749]  K. Jan van Wijk Proteomics of the chloroplast: experimentation and prediction. , 2000, Trends in plant science.

[750]  Robert Schmidt,et al.  PhosPhAt: the Arabidopsis thaliana phosphorylation site database. An update , 2009, Nucleic Acids Res..

[751]  Dominique Job,et al.  Proteome-wide characterization of sugarbeet seed vigor and its tissue specific expression , 2008, Proceedings of the National Academy of Sciences.

[752]  L. Sánchez-Pulido,et al.  Microtubule-Associated AIR9 Recognizes the Cortical Division Site at Preprophase and Cell-Plate Insertion , 2006, Current Biology.

[753]  L. Sweetlove,et al.  A proteomic analysis of plant programmed cell death. , 2004, Phytochemistry.

[754]  I. Meier,et al.  Two Distinct Interacting Classes of Nuclear Envelope–Associated Coiled-Coil Proteins Are Required for the Tissue-Specific Nuclear Envelope Targeting of Arabidopsis RanGAP[W] , 2008, The Plant Cell Online.

[755]  Yu‐Min Lin,et al.  Absolute protein quantification by LC/MS(E) for global analysis of salicylic acid-induced plant protein secretion responses. , 2009, Journal of proteome research.

[756]  A. Burlingame,et al.  BSKs Mediate Signal Transduction from the Receptor Kinase BRI1 in Arabidopsis , 2008, Science.

[757]  J. Lunn Compartmentation in plant metabolism. , 2006, Journal of experimental botany.

[758]  Jinyuan Liu,et al.  A proteomic analysis of cold stress responses in rice seedlings , 2005, Proteomics.

[759]  Alexey I Nesvizhskii,et al.  Analysis and validation of proteomic data generated by tandem mass spectrometry , 2007, Nature Methods.