New mass-spectrometry-compatible degradable surfactant for tissue proteomics.
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Ying Ge | Ying-Hua Chang | Huseyin Guner | Zachery R Gregorich | Albert J Chen | Deyang Yu | Jianyi(Jay) Zhang | Ying Ge | Jianyi Zhang | Huseyin Guner | Leekyoung Hwang | Zachery R. Gregorich | Deyang Yu | Ying-Hua Chang | Leekyoung Hwang | Albert Chen
[1] J. Lee,et al. Toward the bilayer proteome, electrospray ionization-mass spectrometry of large, intact transmembrane proteins. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[2] Matthew C. Altman,et al. Identification of membrane proteins by tandem mass spectrometry of protein ions , 2007, Proceedings of the National Academy of Sciences.
[3] Carol V Robinson,et al. Mass spectrometry of intact membrane protein complexes , 2013, Nature Protocols.
[4] Marjeta Urh,et al. Mass spectrometry compatible surfactant for optimized in-gel protein digestion. , 2013, Analytical chemistry.
[5] Carol V Robinson,et al. Micelles Protect Membrane Complexes from Solution to Vacuum , 2008, Science.
[6] John P. Overington,et al. How many drug targets are there? , 2006, Nature Reviews Drug Discovery.
[7] Michael S. Bereman,et al. Comparison between procedures using SDS for shotgun proteomic analyses of complex samples , 2011, Proteomics.
[8] Ying Ge,et al. Augmented Phosphorylation of Cardiac Troponin I in Hypertensive Heart Failure* , 2011, The Journal of Biological Chemistry.
[9] J. Yates,et al. The application of mass spectrometry to membrane proteomics , 2003, Nature Biotechnology.
[10] Amy-Joan L Ham,et al. Sample preparation and digestion for proteomic analyses using spin filters , 2005, Proteomics.
[11] John R Yates,et al. Optimization of mass spectrometry-compatible surfactants for shotgun proteomics. , 2007, Journal of proteome research.
[12] Ying Ge,et al. Top-down Proteomics Reveals Concerted Reductions in Myofilament and Z-disc Protein Phosphorylation after Acute Myocardial Infarction* , 2014, Molecular & Cellular Proteomics.
[13] M. D'Angelo,et al. Structure, dynamics and function of nuclear pore complexes. , 2008, Trends in cell biology.
[14] M. Burghammer,et al. Crystal structure of the human β2 adrenergic G-protein-coupled receptor , 2007, Nature.
[15] T. Veenstra,et al. Tissue proteomics and metabolomics: an excellent start and a promising future. , 2009, Journal of proteome research.
[16] E. Kranias,et al. Calcium: Phospholamban: a crucial regulator of cardiac contractility , 2003, Nature Reviews Molecular Cell Biology.
[17] Carol V. Robinson,et al. Mass Spectrometry of Intact V-Type ATPases Reveals Bound Lipids and the Effects of Nucleotide Binding , 2011, Science.
[18] J. Hirst,et al. The mechanism of superoxide production by NADH:ubiquinone oxidoreductase (complex I) from bovine heart mitochondria , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[19] Christine C. Wu,et al. Proteomics of Integral Membrane Proteins — Theory and Application , 2007 .
[20] Shizuo Akira,et al. Toll‐like Receptor and RIG‐1‐like Receptor Signaling , 2008, Annals of the New York Academy of Sciences.
[21] J. Canty,et al. A straightforward and highly efficient precipitation/on-pellet digestion procedure coupled with a long gradient nano-LC separation and Orbitrap mass spectrometry for label-free expression profiling of the swine heart mitochondrial proteome. , 2009, Journal of proteome research.
[22] Hwee Tong Tan,et al. Membrane proteins and membrane proteomics , 2008, Proteomics.
[23] P. Andrews,et al. Surfactant effects on protein structure examined by electrospray ionization mass spectrometry , 1994, Protein science : a publication of the Protein Society.
[24] Carol V Robinson,et al. Advances in the mass spectrometry of membrane proteins: from individual proteins to intact complexes. , 2011, Annual review of biochemistry.
[25] Gary D Bader,et al. A draft map of the human proteome , 2014, Nature.
[26] Damian Szklarczyk,et al. STRING v9.1: protein-protein interaction networks, with increased coverage and integration , 2012, Nucleic Acids Res..
[27] D. Bers. Cardiac excitation–contraction coupling , 2002, Nature.
[28] Yinsheng Wang,et al. A Targeted Quantitative Proteomics Strategy for Global Kinome Profiling of Cancer Cells and Tissues* , 2014, Molecular & Cellular Proteomics.
[29] Jun Li,et al. Reproducible Ion-Current-Based Approach for 24-Plex Comparison of the Tissue Proteomes of Hibernating versus Normal Myocardium in Swine Models , 2014, Journal of proteome research.
[30] David A. Cheresh,et al. Role of integrins in cell invasion and migration , 2002, Nature Reviews Cancer.
[31] Chengjian Tu,et al. Ion-current-based Proteomic Profiling of the Retina in a Rat Model of Smith-Lemli-Opitz Syndrome* , 2013, Molecular & Cellular Proteomics.
[32] D. Swandulla,et al. Comparative proteomic analysis of the contractile-protein-depleted fraction from normal versus dystrophic skeletal muscle. , 2014, Analytical biochemistry.
[33] Ying Ge,et al. Top‐down proteomics in health and disease: Challenges and opportunities , 2014, Proteomics.
[34] Peter J Mohler,et al. Cardiac ankyrins: Essential components for development and maintenance of excitable membrane domains in heart. , 2006, Cardiovascular research.
[35] Julian P Whitelegge,et al. Integral membrane proteins and bilayer proteomics. , 2013, Analytical chemistry.
[36] A. Krogh,et al. Predicting transmembrane protein topology with a hidden Markov model: application to complete genomes. , 2001, Journal of molecular biology.
[37] Ping Chen,et al. Analysis of integral membrane proteins by heat gel‐embedment combined with improved in‐gel digestions , 2009, Electrophoresis.
[38] Ying Ge,et al. Top-down quantitative proteomics identified phosphorylation of cardiac troponin I as a candidate biomarker for chronic heart failure. , 2011, Journal of proteome research.
[39] Samuel P. Wein,et al. Stable-isotope-labeled Histone Peptide Library for Histone Post-translational Modification and Variant Quantification by Mass Spectrometry * , 2014, Molecular & Cellular Proteomics.
[40] Masaru Tomita,et al. Phase transfer surfactant-aided trypsin digestion for membrane proteome analysis. , 2008, Journal of proteome research.
[41] Fredrik Elinder,et al. Structure, Function, and Modification of the Voltage Sensor in Voltage-Gated Ion Channels , 2008, Cell Biochemistry and Biophysics.
[42] Martin Gilar,et al. Enzyme-friendly, mass spectrometry-compatible surfactant for in-solution enzymatic digestion of proteins. , 2003, Analytical chemistry.
[43] A. Doucette,et al. Top-down and bottom-up proteomics of SDS-containing solutions following mass-based separation. , 2010, Journal of proteome research.
[44] Gerhard Christofori,et al. Cell adhesion and signalling by cadherins and Ig-CAMs in cancer , 2004, Nature Reviews Cancer.
[45] Rolf Apweiler,et al. Evaluation of methods for the prediction of membrane spanning regions , 2001, Bioinform..
[46] Neil L Kelleher,et al. Pervasive combinatorial modification of histone H3 in human cells , 2007, Nature Methods.
[47] K. Ishibashi,et al. Aquaporin water channels in mammals , 1997, Clinical and Experimental Nephrology.
[48] A. Doucette,et al. Protein concentration and enzyme digestion on microbeads for MALDI-TOF peptides mass mapping of proteins from dilute solutions. , 2000, Analytical chemistry.
[49] Liang Li,et al. Comparison of surfactant-assisted shotgun methods using acid-labile surfactants and sodium dodecyl sulfate for membrane proteome analysis. , 2011, Analytica chimica acta.
[50] Juan Astorga-Wells,et al. Rapid and Deep Human Proteome Analysis by Single-dimension Shotgun Proteomics* , 2013, Molecular & Cellular Proteomics.
[51] G. Barton,et al. Quantitative proteomics in resected renal cancer tissue for biomarker discovery and profiling , 2014, British Journal of Cancer.
[52] G. Gibson,et al. Response of Porcine Intestinal In Vitro Organ Culture Tissues following Exposure to Lactobacillus plantarum JC1 and Salmonella enterica Serovar Typhimurium SL1344 , 2010, Applied and Environmental Microbiology.
[53] Manuel Mayr,et al. Method for protein subfractionation of cardiovascular tissues before DIGE analysis. , 2012, Methods in molecular biology.
[54] Philip W. Anderson,et al. From the top down , 1996, Nature.
[55] Solubilization, isolation, and immunochemical characterization of the major outer membrane protein from Rhodopseudomonas sphaeroides. , 1983, The Journal of biological chemistry.
[56] C. Allis,et al. Extraction, purification and analysis of histones , 2007, Nature Protocols.
[57] Rolf Apweiler,et al. Altered proteome biology of cardiac mitochondria under stress conditions. , 2008, Journal of proteome research.
[58] M. Mann,et al. Universal sample preparation method for proteome analysis , 2009, Nature Methods.
[59] N. Inagaki,et al. Acid-labile surfactant improves in-sodium dodecyl sulfate polyacrylamide gel protein digestion for matrix-assisted laser desorption/ionization mass spectrometric peptide mapping. , 2004, Journal of mass spectrometry : JMS.
[60] J. Yates,et al. A method for the comprehensive proteomic analysis of membrane proteins , 2003, Nature Biotechnology.
[61] Daniel B. McClatchy,et al. Comparisons of mass spectrometry compatible surfactants for global analysis of the mammalian brain proteome. , 2008, Analytical chemistry.