Proteome-wide lysine acetylation identification in developing rice (Oryza sativa) seeds and protein co-modification by acetylation, succinylation, ubiquitination, and phosphorylation.
暂无分享,去创建一个
Yuanda Lv | Zhaohua Peng | Xiaoxi Meng | Zhaohua Peng | Hana Mujahid | Xiaojun Peng | Mariola J. Edelmann | Yuanda Lv | Han Zhao | Hana Mujahid | Xiaoxi Meng | Xiaojun Peng | Han Zhao | Mariola J Edelmann
[1] M. Bar-Peled,et al. Biosynthesis of UDP‐glucuronic acid and UDP‐galacturonic acid in Bacillus cereus subsp. cytotoxis NVH 391‐98 , 2012, The FEBS journal.
[2] J. Denu,et al. Site-Specific Reactivity of Nonenzymatic Lysine Acetylation , 2015, ACS chemical biology.
[3] Yu Zhao,et al. Rice histone deacetylase genes display specific expression patterns and developmental functions. , 2009, Biochemical and biophysical research communications.
[4] D. Hincha,et al. LEA (Late Embryogenesis Abundant) proteins and their encoding genes in Arabidopsis thaliana , 2008, BMC Genomics.
[5] N. Grishin,et al. Substrate and functional diversity of lysine acetylation revealed by a proteomics survey. , 2006, Molecular cell.
[6] Jie Sun,et al. Acyl-CoA N-acyltransferase influences fertility by regulating lipid metabolism and jasmonic acid biogenesis in cotton , 2015, Scientific Reports.
[7] Yixue Li,et al. Regulation of Cellular Metabolism by Protein Lysine Acetylation , 2010, Science.
[8] Chunaram Choudhary,et al. Acetylation dynamics and stoichiometry in Saccharomyces cerevisiae , 2014, Molecular systems biology.
[9] B. Ye,et al. Lysine acetylproteome analysis suggests its roles in primary and secondary metabolism in Saccharopolyspora erythraea , 2014, Applied Microbiology and Biotechnology.
[10] Starch biosynthetic genes and enzymes are expressed and active in the absence of starch accumulation in sugar beet tap-root , 2014, BMC Plant Biology.
[11] Jun You,et al. ROS Regulation During Abiotic Stress Responses in Crop Plants , 2015, Front. Plant Sci..
[12] Jingrong Chen,et al. Cohesin Acetylation Promotes Sister Chromatid Cohesion Only in Association with the Replication Machinery* , 2012, The Journal of Biological Chemistry.
[13] F. Tan,et al. Global Analysis of Lysine Acetylation Suggests the Involvement of Protein Acetylation in Diverse Biological Processes in Rice (Oryza sativa) , 2014, PloS one.
[14] Yu Zhao,et al. OsSRT1 is involved in rice seed development through regulation of starch metabolism gene expression. , 2016, Plant science : an international journal of experimental plant biology.
[15] Kumaran Kandasamy,et al. Identification of Novel Phosphorylation Motifs Through an Integrative Computational and Experimental Analysis of the Human Phosphoproteome. , 2011, Journal of proteomics & bioinformatics.
[16] Zhihong Zhang,et al. Identification of lysine succinylation as a new post-translational modification. , 2011, Nature chemical biology.
[17] Mayandi Sivaguru,et al. Lysine Acetylation Is a Widespread Protein Modification for Diverse Proteins in Arabidopsis1[C][W][OA] , 2011, Plant Physiology.
[18] C. Benelli,et al. The pyruvate dehydrogenase complex in cancer: An old metabolic gatekeeper regulated by new pathways and pharmacological agents , 2016, International journal of cancer.
[19] Uwe Sauer,et al. Protein acetylation affects acetate metabolism, motility and acid stress response in Escherichia coli , 2014, Molecular systems biology.
[20] Yu Xue,et al. CPLA 1.0: an integrated database of protein lysine acetylation , 2010, Nucleic Acids Res..
[21] H. Trick,et al. Rapid method for high-quality RNA isolation from seed endosperm containing high levels of starch. , 2005, BioTechniques.
[22] Jerry Workman,et al. Persistent Interactions of Core Histone Tails with Nucleosomal DNA following Acetylation and Transcription Factor Binding , 1998, Molecular and Cellular Biology.
[23] B. Garcia,et al. Tyr phosphorylation of PDP1 toggles recruitment between ACAT1 and SIRT3 to regulate the pyruvate dehydrogenase complex. , 2014, Molecular cell.
[24] Zhongyi Cheng,et al. Systematic analysis of the lysine acetylome in Vibrio parahemolyticus. , 2014, Journal of proteome research.
[25] Fang Chen,et al. The rice 14-3-3 gene family and its involvement in responses to biotic and abiotic stress. , 2006, DNA research : an international journal for rapid publication of reports on genes and genomes.
[26] P. Ronald,et al. Protein phosphorylation in plant immunity: insights into the regulation of pattern recognition receptor-mediated signaling , 2012, Front. Plant Sci..
[27] Xiaoxi Meng,et al. Proteome Profile of Starch Granules Purified from Rice (Oryza sativa) Endosperm , 2016, PloS one.
[28] Lenwood S Heath,et al. Role of superoxide dismutases (SODs) in controlling oxidative stress in plants. , 2002, Journal of experimental botany.
[29] Jan C. Refsgaard,et al. Avoiding abundance bias in the functional annotation of posttranslationally modified proteins , 2015, Nature Methods.
[30] D R Mani,et al. Refined Preparation and Use of Anti-diglycine Remnant (K-ε-GG) Antibody Enables Routine Quantification of 10,000s of Ubiquitination Sites in Single Proteomics Experiments* , 2012, Molecular & Cellular Proteomics.
[31] Zhaohua Peng,et al. Malonylome analysis in developing rice (Oryza sativa) seeds suggesting that protein lysine malonylation is well-conserved and overlaps with acetylation and succinylation substantially. , 2018, Journal of proteomics.
[32] J. Thelen,et al. Initial description of the developing soybean seed protein Lys-N(ε)-acetylome. , 2014, Journal of proteomics.
[33] M. Tomita,et al. Large-Scale Comparative Phosphoproteomics Identifies Conserved Phosphorylation Sites in Plants1[W][OA] , 2010, Plant Physiology.
[34] S. Robatzek,et al. 14-3-3 proteins in plant-pathogen interactions. , 2015, Molecular plant-microbe interactions : MPMI.
[35] F. Tan,et al. Differential histone modification and protein expression associated with cell wall removal and regeneration in rice (Oryza sativa). , 2011, Journal of proteome research.
[36] H. Yasuda,et al. Reducing Rice Seed Storage Protein Accumulation Leads to Changes in Nutrient Quality and Storage Organelle Formation1[W][OA] , 2010, Plant Physiology.
[37] M. Mann,et al. Lysine Acetylation Targets Protein Complexes and Co-Regulates Major Cellular Functions , 2009, Science.
[38] B. Ranty,et al. Plant Calmodulins and Calmodulin-Related Proteins , 2006, Plant signaling & behavior.
[39] Jay J Thelen,et al. Modulation of Protein Phosphorylation, N-Glycosylation and Lys-Acetylation in Grape (Vitis vinifera) Mesocarp and Exocarp Owing to Lobesia botrana Infection* , 2012, Molecular & Cellular Proteomics.
[40] Guo-Ping Zhao,et al. Acetylation of Metabolic Enzymes Coordinates Carbon Source Utilization and Metabolic Flux , 2010, Science.
[41] L. Rasmussen,et al. 14-3-3 checkpoint regulatory proteins interact specifically with DNA repair protein human exonuclease 1 (hEXO1) via a semi-conserved motif. , 2012, DNA repair.
[42] Jiansheng Liang,et al. Effects of the activities of key enzymes involved in starch biosynthesis on the fine structure of amylopectin in developing rice (Oryza sativa L.) endosperms , 2008, Science in China Series C: Life Sciences.
[43] Dorte B. Bekker-Jensen,et al. Proteomic Analysis of Lysine Acetylation Sites in Rat Tissues Reveals Organ Specificity and Subcellular Patterns , 2012, Cell reports.
[44] Stuart Helliwell,et al. Composition and functional properties of rice , 2002 .
[45] A. Patanothai,et al. Extractions of High Quality RNA from the Seeds of Jerusalem Artichoke and Other Plant Species with High Levels of Starch and Lipid , 2013, Plants.
[46] D. Gang,et al. The Potato Tuber Mitochondrial Proteome1[W][OPEN] , 2013, Plant Physiology.
[47] Nick V Grishin,et al. Lysine Acetylation Is a Highly Abundant and Evolutionarily Conserved Modification in Escherichia Coli*S , 2009, Molecular & Cellular Proteomics.
[48] Pu Wang,et al. Histone Acetylation is Involved in Gibberellin-Regulated sodCp Gene Expression in Maize Aleurone Layers. , 2015, Plant & cell physiology.
[49] Sander M Houten,et al. Mitochondrial protein acetylation is driven by acetyl-CoA from fatty acid oxidation. , 2014, Human molecular genetics.
[50] E. Huitema,et al. Effector-triggered post-translational modifications and their role in suppression of plant immunity , 2012, Front. Plant Sci..
[51] Chunaram Choudhary,et al. Acetyl-phosphate is a critical determinant of lysine acetylation in E. coli. , 2013, Molecular cell.
[52] Houxiang Kang,et al. Comprehensive profiling of the rice ubiquitome reveals the significance of lysine ubiquitination in young leaves. , 2015, Journal of proteome research.
[53] Wilhelm Gruissem,et al. Nutritional enhancement of rice for human health: the contribution of biotechnology. , 2013, Biotechnology advances.
[54] M. Reichelt,et al. Downregulation of N-terminal acetylation triggers ABA-mediated drought responses in Arabidopsis , 2015, Nature Communications.
[55] Keqiang Wu,et al. HISTONE DEACETYLASE19 Is Involved in Jasmonic Acid and Ethylene Signaling of Pathogen Response in Arabidopsis , 2005, The Plant Cell Online.
[56] W. Hurkman,et al. Solubilization of plant membrane proteins for analysis by two-dimensional gel electrophoresis. , 1986, Plant physiology.
[57] Zhike Lu,et al. Quantitative Acetylome Analysis Reveals the Roles of SIRT1 in Regulating Diverse Substrates and Cellular Pathways* , 2012, Molecular & Cellular Proteomics.
[58] P. Singh,et al. Abiotic stress responses in plants: roles of calmodulin-regulated proteins , 2015, Front. Plant Sci..
[59] S. Masiero,et al. Cytoplasmic N-Terminal Protein Acetylation Is Required for Efficient Photosynthesis in Arabidopsis Online version contains Web-only data. Article, publication date, and citation information can be found at www.plantcell.org/cgi/doi/10.1105/tpc.012377. , 2003, The Plant Cell Online.
[60] A. Caverzan,et al. Antioxidant responses of wheat plants under stress , 2016, Genetics and molecular biology.
[61] Colin L. Smith-Hammond,et al. The pea seedling mitochondrial Nε-lysine acetylome. , 2014, Mitochondrion.
[62] Qingyun Li,et al. Involvement of Arabidopsis histone acetyltransferase HAC family genes in the ethylene signaling pathway. , 2014, Plant & cell physiology.
[63] B. Meyers,et al. HDT701, a Histone H4 Deacetylase, Negatively Regulates Plant Innate Immunity by Modulating Histone H4 Acetylation of Defense-Related Genes in Rice[W][OA] , 2012, Plant Cell.
[64] S. Goff,et al. A network of rice genes associated with stress response and seed development , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[65] Keqiang Wu,et al. Histone acetyltransferases in rice (Oryza sativaL.): phylogenetic analysis, subcellular localization and expression , 2012, BMC Plant Biology.
[66] W. Liang,et al. Comprehensive profiling of lysine acetylproteome analysis reveals diverse functions of lysine acetylation in common wheat , 2016, Scientific Reports.
[67] M. Joosten,et al. Post-translational modification of host proteins in pathogen-triggered defence signalling in plants. , 2008, Molecular plant pathology.
[68] Zhongyi Cheng,et al. Global analysis of lysine acetylation in strawberry leaves , 2015, Front. Plant Sci..
[69] Zhongyi Cheng,et al. Global Proteome Analyses of Lysine Acetylation and Succinylation Reveal the Widespread Involvement of both Modification in Metabolism in the Embryo of Germinating Rice Seed. , 2016, Journal of proteome research.
[70] F. Tan,et al. Nuclear proteome response to cell wall removal in rice (Oryza sativa) , 2013, Proteome Science.
[71] H. W. Lee,et al. Nonenzymatic acetylation of histones with acetyl-CoA. , 1970, Biochimica et biophysica acta.
[72] Jukon Kim,et al. Subcellular localization of rice histone deacetylases in organelles , 2009, FEBS letters.
[73] M. Mann,et al. The mitochondrial lysine acetylome of Arabidopsis. , 2014, Mitochondrion.
[74] L. Tran,et al. Progress studies of drought-responsive genes in rice , 2011, Plant Cell Reports.
[75] Chunaram Choudhary,et al. Proteome-wide Analysis of Lysine Acetylation Suggests its Broad Regulatory Scope in Saccharomyces cerevisiae* , 2012, Molecular & Cellular Proteomics.
[76] Jingyi Yang,et al. Phosphorylation of the 12 S globulin cruciferin in wild-type and abi1-1 mutant Arabidopsis thaliana (thale cress) seeds. , 2007, The Biochemical journal.
[77] G. R. Wagner,et al. Widespread and Enzyme-independent Nϵ-Acetylation and Nϵ-Succinylation of Proteins in the Chemical Conditions of the Mitochondrial Matrix*♦ , 2013, The Journal of Biological Chemistry.
[78] Chunaram Choudhary,et al. Analysis of acetylation stoichiometry suggests that SIRT3 repairs nonenzymatic acetylation lesions , 2015, The EMBO journal.
[79] D. Latrasse,et al. The Arabidopsis ortholog of the YEATS domain containing protein YAF9a regulates flowering by controlling H4 acetylation levels at the FLC locus. , 2012, Plant science : an international journal of experimental plant biology.
[80] Lei Pang,et al. Proteome-wide lysine acetylation profiling of the human pathogen Mycobacterium tuberculosis. , 2015, The international journal of biochemistry & cell biology.
[81] N. Sakthivel,et al. Plant β-1,3-glucanases: their biological functions and transgenic expression against phytopathogenic fungi , 2012, Biotechnology Letters.
[82] Xin Li,et al. Two N-Terminal Acetyltransferases Antagonistically Regulate the Stability of a Nod-Like Receptor in Arabidopsis , 2015, Plant Cell.
[83] P. Butler,et al. Acetylation Stimulates the Epithelial Sodium Channel by Reducing Its Ubiquitination and Degradation* , 2015, The Journal of Biological Chemistry.
[84] Zhongyi Cheng,et al. A comprehensive catalog of the lysine-acetylation targets in rice (Oryza sativa) based on proteomic analyses. , 2016, Journal of proteomics.
[85] O. Puig,et al. Interaction between N-terminal domain of H4 and DNA is regulated by the acetylation degree. , 1998, Biochimica et biophysica acta.
[86] Kazuki Saito,et al. Ky-2, a Histone Deacetylase Inhibitor, Enhances High-Salinity Stress Tolerance in Arabidopsis thaliana. , 2016, Plant & cell physiology.
[87] Wei Gu,et al. Ubiquitination, phosphorylation and acetylation: the molecular basis for p53 regulation. , 2003, Current opinion in cell biology.
[88] L. Miguet,et al. Proteins of Diverse Function and Subcellular Location Are Lysine Acetylated in Arabidopsis1[W][OA] , 2011, Plant Physiology.
[89] Jürgen Cox,et al. A practical guide to the MaxQuant computational platform for SILAC-based quantitative proteomics , 2009, Nature Protocols.
[90] B. Singh,et al. Pathogenesis Related (PR) Proteins in Plant Defense Mechanism , 2011 .
[91] Chunaram Choudhary,et al. The growing landscape of lysine acetylation links metabolism and cell signalling , 2014, Nature Reviews Molecular Cell Biology.
[92] Controlling flowering time by histone methylation and acetylation in arabidopsis and rice , 2015, Journal of Plant Biology.
[93] P. Pellett,et al. Plant proteins in relation to human protein and amino acid nutrition. , 1994, The American journal of clinical nutrition.
[94] Dong Xu,et al. Systematic analysis of human lysine acetylation proteins and accurate prediction of human lysine acetylation through bi-relative adapted binomial score Bayes feature representation. , 2012, Molecular bioSystems.
[95] B. Han,et al. Genome-wide survey and expression profiling of heat shock proteins and heat shock factors revealed overlapped and stress specific response under abiotic stresses in rice. , 2009, Plant science : an international journal of experimental plant biology.
[96] M. Yano,et al. Characterization of a new rice glutelin gene GluD-1 expressed in the starchy endosperm , 2008, Journal of experimental botany.