Studying protein–protein affinity and immobilized ligand–protein affinity interactions using MS-based methods
暂无分享,去创建一个
Jeroen Kool | N. Jonker | J. Kool | H. Irth | W. Niessen | Hubertus Irth | Niels Jonker | Wilfried M. A. Niessen
[1] Jeroen Kool,et al. Recent developments in protein–ligand affinity mass spectrometry , 2010, Analytical and bioanalytical chemistry.
[2] Jeffrey N. Anker,et al. Detection and Identification of Bioanalytes with High Resolution LSPR Spectroscopy and MALDI Mass Spectrometry. , 2009, The journal of physical chemistry. C, Nanomaterials and interfaces.
[3] T. Haystead,et al. A functional proteomics approach to signal transduction. , 2003, Recent progress in hormone research.
[4] J. Paulo,et al. Proteomic analysis of an alpha7 nicotinic acetylcholine receptor interactome. , 2009, Journal of proteome research.
[5] Andreas Persidis,et al. Novel biological networks modulated by complement. , 2005, Clinical immunology.
[6] F. He,et al. Tandem affinity purification and identification of the human TSC1 protein complex. , 2010, Acta biochimica et biophysica Sinica.
[7] B. Chait,et al. Observation of the heme-globin complex in native myoglobin by electrospray-ionization mass spectrometry , 1991 .
[8] Anna K. Schrey,et al. Capture compound mass spectrometry sheds light on the molecular mechanisms of liver toxicity of two Parkinson drugs. , 2010, Toxicological sciences : an official journal of the Society of Toxicology.
[9] S. Oeljeklaus,et al. New dimensions in the study of protein complexes using quantitative mass spectrometry , 2009, FEBS letters.
[10] Tom Alber,et al. Purification and characterization of HIV–human protein complexes , 2010, Methods.
[11] K. Pritchard,et al. Identification of proteins interacting with GTP cyclohydrolase I , 2008, Biochemical and biophysical research communications.
[12] Carol V Robinson,et al. When proteomics meets structural biology. , 2010, Trends in biochemical sciences.
[13] T. Letzel,et al. Mass spectrometric real-time monitoring of enzymatic glycosidic hydrolysis, enzymatic inhibition and enzyme complexes , 2006, Analytical and bioanalytical chemistry.
[14] G. Lee,et al. A proteomic approach for identifying cellular proteins interacting with erythropoietin in recombinant Chinese hamster ovary cells , 2009, Biotechnology progress.
[15] M. Mann,et al. Stable Isotope Labeling by Amino Acids in Cell Culture, SILAC, as a Simple and Accurate Approach to Expression Proteomics* , 2002, Molecular & Cellular Proteomics.
[16] P. Roepstorff,et al. SPR/MS: recovery from sensorchips for protein identification by MALDI-TOF mass spectrometry. , 2010, Methods in molecular biology.
[17] F. Young. Biochemistry , 1955, The Indian Medical Gazette.
[18] Ronald Wetzel,et al. Hydrogen/deuterium exchange mass spectrometry analysis of protein aggregates. , 2006, Methods in enzymology.
[19] C. Maier,et al. Hydrogen/deuterium exchange mass spectrometry. , 2009, Methods in molecular biology.
[20] Brian T. Chait,et al. Probing conformational changes in proteins by mass spectrometry , 1990 .
[21] Renato Zenobi,et al. Label‐free determination of protein–ligand binding constants using mass spectrometry and validation using surface plasmon resonance and isothermal titration calorimetry , 2009, Journal of molecular recognition : JMR.
[22] B. Garcia,et al. Proteomics , 2011, Journal of biomedicine & biotechnology.
[23] Anna K. Schrey,et al. Comprehensive identification of staurosporine-binding kinases in the hepatocyte cell line HepG2 using Capture Compound Mass Spectrometry (CCMS). , 2010, Journal of proteome research.
[24] A. Sinz. Investigation of protein–protein interactions in living cells by chemical crosslinking and mass spectrometry , 2010, Analytical and bioanalytical chemistry.
[25] A. Scholten,et al. Surface‐Plasmon‐Resonance‐Based Chemical Proteomics: Efficient Specific Extraction and Semiquantitative Identification of Cyclic Nucleotide‐Binding Proteins from Cellular Lysates by Using a Combination of Surface Plasmon Resonance, Sequential Elution and Liquid Chromatography–Tandem Mass Spectrometr , 2007, Chembiochem : a European journal of chemical biology.
[26] S. Baek,et al. Chemical affinity matrix-based identification of prohibitin as a binding protein to anti-resorptive sulfonyl amidine compounds. , 2011, Bioorganic & medicinal chemistry letters.
[27] Malcolm Buckle,et al. Rapid coupling of Surface Plasmon Resonance (SPR and SPRi) and ProteinChip™ based mass spectrometry for the identification of proteins in nucleoprotein interactions , 2007, Nucleic acids research.
[28] E. W. Meijer,et al. Ligand-induced monomerization of Allochromatium vinosum cytochrome c′ studied using native mass spectrometry and fluorescence resonance energy transfer , 2007, JBIC Journal of Biological Inorganic Chemistry.
[29] G. Siuzdak,et al. Electrospray Ionization of a Whole Virus: Analyzing Mass, Structure, and Viability , 2004, Chembiochem : a European journal of chemical biology.
[30] Anna Dulneva,et al. Affinity peptidomics: Peptide selection and affinity capture on hydrogels and microarrays. , 2010, Methods in molecular biology.
[31] Brett R. Murphy,et al. Chemical proteomics identifies Nampt as the target of CB30865, an orphan cytotoxic compound. , 2010, Chemistry & biology.
[32] Albert J R Heck,et al. Revealing promiscuous drug-target interactions by chemical proteomics. , 2009, Drug discovery today.
[33] P. Stockley,et al. Determining the topology of virus assembly intermediates using ion mobility spectrometry-mass spectrometry. , 2010, Rapid communications in mass spectrometry : RCM.
[34] J. Yoo,et al. Mass spectrometric analysis of affinity-captured proteins on a dendrimer-based immunosensing surface: investigation of on-chip proteolytic digestion. , 2005, Analytical biochemistry.
[35] A. Beck‐Sickinger,et al. Proteome analysis to study signal transduction of G protein-coupled receptors. , 2006, Pharmacology & therapeutics.
[36] Albert J R Heck,et al. Ion mobility mass spectrometry of proteins and protein assemblies. , 2010, Chemical Society reviews.
[37] Eric D. Dodds,et al. Revealing the quaternary structure of a heterogeneous noncovalent protein complex through surface-induced dissociation. , 2011, Analytical chemistry.
[38] L. Kay,et al. The proteasome antechamber maintains substrates in an unfolded state , 2010, Nature.
[39] C. Robinson,et al. Mass Spectrometry Defines the Stoichiometry of Ribosomal Stalk Complexes across the Phylogenetic Tree* , 2010, Molecular & Cellular Proteomics.
[40] G. Superti-Furga,et al. Target profiling of small molecules by chemical proteomics. , 2009, Nature chemical biology.
[41] R. Rosenfeld. Nature , 2009, Otolaryngology--head and neck surgery : official journal of American Academy of Otolaryngology-Head and Neck Surgery.
[42] Anna K. Schrey,et al. GDP-capture compound--a novel tool for the profiling of GTPases in pro- and eukaryotes by capture compound mass spectrometry (CCMS). , 2010, Journal of proteomics.
[43] K. Fuxe,et al. Muscarinic receptor family interacting proteins: Role in receptor function , 2011, Journal of Neuroscience Methods.
[44] C. Robinson,et al. Evidence for Macromolecular Protein Rings in the Absence of Bulk Water , 2005, Science.
[45] M. Oyama,et al. Genetic incorporation of a photo-crosslinkable amino acid reveals novel protein complexes with GRB2 in mammalian cells. , 2011, Journal of molecular biology.
[46] S. Rahlfs,et al. Identification of Proteins Targeted by the Thioredoxin Superfamily in Plasmodium falciparum , 2009, PLoS pathogens.
[47] H. Irth,et al. Development of an automated on-line pepsin digestion-liquid chromatography-tandem mass spectrometry configuration for the rapid analysis of protein adducts of chemical warfare agents. , 2008, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.
[48] S. Bellon,et al. Hyphenation of surface plasmon resonance imaging to matrix-assisted laser desorption ionization mass spectrometry by on-chip mass spectrometry and tandem mass spectrometry analysis. , 2009, Analytical chemistry.
[49] I. Alves,et al. Plasmon resonance methods in GPCR signaling and other membrane events. , 2005, Current protein & peptide science.
[50] T. Misteli,et al. Identification of differential protein interactors of lamin A and progerin , 2010, Nucleus.
[51] D. Nedelkov. Integration of SPR biosensors with mass spectrometry (SPR-MS). , 2010, Methods in molecular biology.
[52] G. Superti-Furga,et al. A comprehensive target selectivity survey of the BCR-ABL kinase inhibitor INNO-406 by kinase profiling and chemical proteomics in chronic myeloid leukemia cells , 2010, Leukemia.
[53] A. Scholten,et al. A chemical proteomics based enrichment technique targeting the interactome of the PDE5 inhibitor PF-4540124. , 2009, Molecular bioSystems.
[54] F. Halgand,et al. Top-down mass spectrometry of integral membrane proteins , 2006, Expert review of proteomics.
[55] M. Beato,et al. Erk signaling and chromatin remodeling in MMTV promoter activation by progestins , 2009, Nuclear receptor signaling.
[56] J. Cox,et al. Proteomics strategy for quantitative protein interaction profiling in cell extracts , 2009, Nature Methods.
[57] F. Farzaneh,et al. Immobilized metal affinity chromatography of histidine-tagged lentiviral vectors using monolithic adsorbents. , 2009, Journal of chromatography. A.
[58] T. V. van Veen,et al. Sphingosine Kinase Interacting Protein is an A‐Kinase Anchoring Protein Specific for Type I cAMP‐Dependent Protein Kinase , 2010, Chembiochem : a European journal of chemical biology.
[59] N. Declerck,et al. Combination of noncovalent mass spectrometry and traveling wave ion mobility spectrometry reveals sugar-induced conformational changes of central glycolytic genes repressor/DNA complex. , 2010, Analytical chemistry.
[60] M. Nielen,et al. Nanoscale affinity chip interface for coupling inhibition SPR immunosensor screening with Nano-LC TOF MS. , 2008, Analytical chemistry.
[61] R. Karlsson,et al. Biomolecular interaction analysis: affinity biosensor technologies for functional analysis of proteins. , 1997, Current opinion in chemical biology.
[62] M. Baumann,et al. Identification of proteins associated with ligand‐activated estrogen receptor α in human breast cancer cell nuclei by tandem affinity purification and nano LC‐MS/MS , 2011, Proteomics.
[63] C. Robinson,et al. Ion mobility-mass spectrometry reveals the influence of subunit packing and charge on the dissociation of multiprotein complexes. , 2010, Analytical chemistry.
[64] D. Nedelkov,et al. Development of surface plasmon resonance mass spectrometry array platform. , 2007, Analytical chemistry.
[65] B. Snel,et al. In-depth Qualitative and Quantitative Profiling of Tyrosine Phosphorylation Using a Combination of Phosphopeptide Immunoaffinity Purification and Stable Isotope Dimethyl Labeling* , 2009, Molecular & Cellular Proteomics.
[66] Bernhard Kuster,et al. Quantitative chemical proteomics reveals mechanisms of action of clinical ABL kinase inhibitors , 2007, Nature Biotechnology.
[67] K. Parker,et al. Multiplexed Protein Quantitation in Saccharomyces cerevisiae Using Amine-reactive Isobaric Tagging Reagents*S , 2004, Molecular & Cellular Proteomics.
[68] B. Gerrits,et al. Estrogen receptor–ligand complexes measured by chip‐based nanoelectrospray mass spectrometry: An approach for the screening of endocrine disruptors , 2007, Protein science : a publication of the Protein Society.
[69] R. Bischoff,et al. An integrated high-performance liquid chromatography-mass spectrometry system for the activity-dependent analysis of matrix metalloproteases. , 2008, Journal of chromatography. A.
[70] Michael Gribskov,et al. Protein-Protein Interactions of Tandem Affinity Purified Protein Kinases from Rice , 2009, PloS one.
[71] R. Bischoff,et al. Activity-based enrichment of matrix metalloproteinases using reversible inhibitors as affinity ligands. , 2003, Journal of chromatography. A.
[72] R. Ferl,et al. Comparative interactomics: analysis of arabidopsis 14-3-3 complexes reveals highly conserved 14-3-3 interactions between humans and plants. , 2009, Journal of proteome research.
[73] M. Saraste,et al. FEBS Lett , 2000 .
[74] V. Kickhoefer,et al. Sizing large proteins and protein complexes by electrospray ionization mass spectrometry and ion mobility , 2007, Journal of the American Society for Mass Spectrometry.
[75] N. Vermeulen,et al. Automated detection of covalent adducts to human serum albumin by immunoaffinity chromatography, on-line solution phase digestion and liquid chromatography-mass spectrometry. , 2007, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.
[76] Rune R. Frants,et al. Proteomic Analysis of the Dysferlin Protein Complex Unveils Its Importance for Sarcolemmal Maintenance and Integrity , 2010, PloS one.
[77] M. Mann,et al. Extracting gene function from protein-protein interactions using Quantitative BAC InteraCtomics (QUBIC). , 2011, Methods.
[78] G. Geisslinger,et al. Analysis of NF-κB signaling pathways by proteomic approaches , 2010, Expert review of proteomics.
[79] I. Kaltashov,et al. Highly asymmetric interactions between globin chains during hemoglobin assembly revealed by electrospray ionization mass spectrometry. , 2003, Biochemistry.
[80] L. Kay. Solution NMR spectroscopy of supra-molecular systems, why bother? A methyl-TROSY view. , 2011, Journal of magnetic resonance.
[81] S. Koenig,et al. Surface plasmon resonance/mass spectrometry interface. , 2005, Analytical chemistry.
[82] Albert J R Heck,et al. High-resolution mass spectrometry of viral assemblies: Molecular composition and stability of dimorphic hepatitis B virus capsids , 2008, Proceedings of the National Academy of Sciences.
[83] Richard D. Smith,et al. On-line digestion system for protein characterization and proteome analysis. , 2008, Analytical chemistry.
[84] F. Di Cunto,et al. Identification of DeltaNp63alpha protein interactions by mass spectrometry. , 2010, Journal of proteome research.
[85] W. Roos,et al. Norwalk Virus Assembly and Stability Monitored by Mass Spectrometry* , 2010, Molecular & Cellular Proteomics.
[86] A. Burgess,et al. PI(3,4,5)P3 Interactome. , 2009, Journal of proteome research.
[87] C. Malbon,et al. G-protein-coupled receptor-associated A-kinase anchoring proteins AKAP5 and AKAP12: differential trafficking and distribution. , 2009, Cellular signalling.
[88] M. Michel,et al. Ligand-Directed Signaling: 50 Ways to Find a Lover , 2007, Molecular Pharmacology.
[89] Vasco Filipe,et al. Mass Spectrometric Analysis of Intact Human Monoclonal Antibody Aggregates Fractionated by Size-Exclusion Chromatography , 2010, Pharmaceutical Research.
[90] Derek J. Wilson,et al. A microfluidic reactor for rapid, low-pressure proteolysis with on-chip electrospray ionization. , 2010, Rapid communications in mass spectrometry : RCM.
[91] T. Haystead,et al. Efficient detection of RNA–protein interactions using tethered RNAs , 2011, Nucleic acids research.
[92] D. Moras,et al. Detection of nucleic acid-nuclear hormone receptor complexes with mass spectrometry , 2010, Journal of the American Society for Mass Spectrometry.
[93] Sabine S. Lange,et al. Identification of phosphorylation-dependent interaction partners of the adapter protein ADAP using quantitative mass spectrometry: SILAC vs (18)O-labeling. , 2010, Journal of proteome research.
[94] 大房 健. 基礎講座 電気泳動(Electrophoresis) , 2005 .
[95] On-line multi-enzymatic approach for improved sequence coverage in protein analysis. , 2009, Journal of separation science.
[96] Richard J. Edwards,et al. Protein interactions with the platelet integrin αIIb regulatory motif , 2010, Proteomics.
[97] B. Ganem,et al. Detection of noncovalent receptor-ligand complexes by mass spectrometry , 1991 .
[98] L. Kay,et al. A solution NMR study showing that active site ligands and nucleotides directly perturb the allosteric equilibrium in aspartate transcarbamoylase , 2007, Proceedings of the National Academy of Sciences.
[99] Z. Glatz,et al. Integration of on‐line protein digestion by trypsin in CZE by means of electrophoretically mediated microanalysis , 2009, Electrophoresis.
[100] Blagoy Blagoev,et al. A proteomics strategy to elucidate functional protein-protein interactions applied to EGF signaling , 2003, Nature Biotechnology.
[101] J. Klassen,et al. Identifying nonspecific ligand binding in electrospray ionization mass spectrometry using the reporter molecule method , 2009, Journal of the American Society for Mass Spectrometry.
[102] E. Shumay,et al. G-Protein-coupled receptor-associated A-kinase anchoring proteins: AKAP79 and AKAP250 (gravin). , 2006, European journal of cell biology.
[103] C. Robinson,et al. Assembly states of the nucleosome assembly protein 1 (NAP-1) revealed by sedimentation velocity and non-denaturing MS. , 2011, The Biochemical journal.
[104] K. Taskén,et al. Compartmentalized cAMP signalling is important in the regulation of Ca(2+) cycling in the heart. , 2006, Biochemical Society transactions.
[105] J. Veuthey,et al. Trypsin immobilization on three monolithic disks for on-line protein digestion. , 2008, Journal of pharmaceutical and biomedical analysis.
[106] X. Yao,et al. 18O2-labeling in quantitative proteomic strategies: a status report. , 2009, Journal of proteome research.
[107] T. M. Herne,et al. Observation of Hybridization and Dehybridization of Thiol-Tethered DNA Using Two-Color Surface Plasmon Resonance Spectroscopy , 1997 .
[108] C. Robinson,et al. Mass measurements of increased accuracy resolve heterogeneous populations of intact ribosomes. , 2006, Journal of the American Chemical Society.
[109] S. Gygi,et al. Quantitative analysis of complex protein mixtures using isotope-coded affinity tags , 1999, Nature Biotechnology.
[110] A. Heck,et al. Transcriptional Activation by CprK1 Is Regulated by Protein Structural Changes Induced by Effector Binding and Redox State* , 2007, Journal of Biological Chemistry.
[111] P. Mayer,et al. Investigation of the noncovalent interactions between anti-amyloid agents and amyloid β peptides by ESI-MS , 2010, Journal of the American Society for Mass Spectrometry.
[112] S. Chi,et al. Molecular interaction between HAX-1 and XIAP inhibits apoptosis. , 2010, Biochemical and biophysical research communications.
[113] Lihua Zhang,et al. Integrated protein analysis platform based on column switch recycling size exclusion chromatography, microenzymatic reactor and microRPLC-ESI-MS/MS. , 2009, Journal of chromatography. A.
[114] R. Heeren,et al. Monitoring macromolecular complexes involved in the chaperonin-assisted protein folding cycle by mass spectrometry , 2005, Nature Methods.
[115] J. Rucker,et al. Measuring membrane protein interactions using optical biosensors. , 2010, Methods in molecular biology.
[116] G. Butland,et al. In vivo investigation of protein-protein interactions for helicases using tandem affinity purification. , 2010, Methods in molecular biology.
[117] Total on-line analysis of a target protein from plasma by immunoextraction, digestion and liquid chromatography-mass spectrometry. , 2010, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.
[118] G. Massolini,et al. Trypsin-based monolithic bioreactor coupled on-line with LC/MS/MS system for protein digestion and variant identification in standard solutions and serum samples. , 2005, Journal of Proteome Research.
[119] E. M. Martín del Valle,et al. Immobilized Metal‐Ion Affinity Chromatography: Status and Trends , 2007 .
[120] T. Craig,et al. Zinc binding properties of the DNA binding domain of the 1,25-dihydroxyvitamin D3 receptor. , 1997, Biochemistry.
[121] D. O'Shannessy,et al. Immobilization chemistries suitable for use in the BIAcore surface plasmon resonance detector. , 1992, Analytical biochemistry.
[122] Brandon T Ruotolo,et al. Ion mobility–mass spectrometry analysis of large protein complexes , 2008, Nature Protocols.
[123] E. Duijn. Current limitations in native mass spectrometry based structural biology , 2010 .
[124] V. Nesatyy. Mass spectrometry evaluation of the solution and gas-phase binding properties of noncovalent protein complexes , 2002 .
[125] Albert J R Heck,et al. Improving the performance of a quadrupole time-of-flight instrument for macromolecular mass spectrometry. , 2006, Analytical chemistry.