Protein Folding-How and Why: By Hydrogen Exchange, Fragment Separation, and Mass Spectrometry.
暂无分享,去创建一个
S Walter Englander | Leland Mayne | L. Mayne | S. Englander | Zhong-Yuan Kan | Zhong-Yuan Kan | Wenbing Hu | Wenbing Hu
[1] S. Englander,et al. Protein dynamics viewed by hydrogen exchange , 2012, Protein science : a publication of the Protein Society.
[2] S. Walter Englander,et al. Structural characterization of folding intermediates in cytochrome c by H-exchange labelling and proton NMR , 1988, Nature.
[3] S Walter Englander,et al. Protein folding: the stepwise assembly of foldon units. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[4] D. LeMaster,et al. NMR analysis of native-state protein conformational flexibility by hydrogen exchange. , 2009, Methods in molecular biology.
[5] R. L. Baldwin,et al. Early folding intermediate of ribonuclease A. , 1990, Proceedings of the National Academy of Sciences of the United States of America.
[6] R. L. Baldwin. Early days of protein hydrogen exchange: 1954–1972 , 2011, Proteins.
[7] J. Onuchic,et al. Protein folding funnels: a kinetic approach to the sequence-structure relationship. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[8] R. Molday,et al. Substituent effects on amide hydrogen exchange rates in aqueous solution , 1972 .
[9] S. Englander,et al. Cooperative omega loops in cytochrome c: role in folding and function. , 2003, Journal of molecular biology.
[10] J. R. Rogero,et al. Individual breathing reactions measured in hemoglobin by hydrogen exchange methods. , 1980, Biophysical journal.
[11] Leland Mayne,et al. ExMS: Data Analysis for HX-MS Experiments , 2011, Journal of the American Society for Mass Spectrometry.
[12] Nature of the early folding intermediate of ribonuclease A. , 1995 .
[13] Yawen Bai,et al. A protein folding pathway with multiple folding intermediates at atomic resolution. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[14] Englander Sw,et al. Protein Folding Intermediates and Pathways Studied by Hydrogen Exchange , 2000 .
[15] L Mayne,et al. Primary structure effects on peptide group hydrogen exchange. , 1972, Proteins.
[16] C. Perrin,et al. Mechanisms of NH proton exchange in amides and proteins: solvent effects and solvent accessibility , 1984 .
[17] John R. Engen,et al. Applications of Hydrogen/Deuterium Exchange MS from 2012 to 2014 , 2014, Analytical chemistry.
[18] S. Marqusee,et al. Stepwise protein folding at near amino acid resolution by hydrogen exchange and mass spectrometry , 2013, Proceedings of the National Academy of Sciences.
[19] R. L. Baldwin,et al. The search for folding intermediates and the mechanism of protein folding. , 2008, Annual review of biophysics.
[20] J. J. Rosa,et al. An experimental procedure for increasing the structural resolution of chemical hydrogen-exchange measurements on proteins: application to ribonuclease S peptide. , 1979, Journal of molecular biology.
[21] S. Kennedy,et al. Thermodynamic and kinetic exploration of the energy landscape of Borrelia burgdorferi OspA by native-state hydrogen exchange. , 2002, Journal of molecular biology.
[22] Englander Sw. A HYDROGEN EXCHANGE METHOD USING TRITIUM AND SEPHADEX: ITS APPLICATION TO RIBONUCLEASE. , 1963 .
[23] C. Pace,et al. Protein conformational stabilities can be determined from hydrogen exchange rates , 1999, Nature Structural Biology.
[24] A. Rosenberg,et al. Studies of hydrogen exchange in proteins. I. The exchange kinetics of bovine carbonic anhydrase. , 1968, The Journal of biological chemistry.
[25] S. Englander. A HYDROGEN EXCHANGE METHOD USING TRITIUM AND SEPHADEX: ITS APPLICATION TO RIBONUCLEASE. , 1963, Biochemistry.
[26] L. Mayne,et al. Minimizing Back Exchange in the Hydrogen Exchange-Mass Spectrometry Experiment , 2012, Journal of The American Society for Mass Spectrometry.
[27] S Walter Englander,et al. Protein hydrogen exchange: Testing current models , 2012, Protein science : a publication of the Protein Society.
[28] C. V. van Mierlo,et al. The folding energy landscape of apoflavodoxin is rugged: hydrogen exchange reveals nonproductive misfolded intermediates. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[29] Yawen Bai,et al. Protein stability parameters measured by hydrogen exchange , 1994, Proteins.
[30] S. Englander,et al. How cytochrome c folds, and why: submolecular foldon units and their stepwise sequential stabilization. , 2004, Journal of molecular biology.
[31] Tobin R Sosnick,et al. The folding of single domain proteins--have we reached a consensus? , 2011, Current opinion in structural biology.
[32] Leland Mayne,et al. Many Overlapping Peptides for Protein Hydrogen Exchange Experiments by the Fragment Separation-Mass Spectrometry Method , 2011, Journal of the American Society for Mass Spectrometry.
[33] K. Wüthrich,et al. Amide protein exchange and surface conformation of the basic pancreatic trypsin inhibitor in solution. Studies with two-dimensional nuclear magnetic resonance. , 1982, Journal of molecular biology.
[34] T. Sosnick,et al. Protein folding intermediates: native-state hydrogen exchange. , 1995, Science.
[35] N. Kallenbach,et al. Hydrogen exchange and structural dynamics of proteins and nucleic acids , 1983, Quarterly Reviews of Biophysics.
[36] S Walter Englander,et al. Protein hydrogen exchange at residue resolution by proteolytic fragmentation mass spectrometry analysis , 2013, Proceedings of the National Academy of Sciences.
[37] A. Hvidt,et al. Hydrogen exchange in proteins. , 1966, Advances in protein chemistry.
[38] J. R. Rogero,et al. Individual breathing reactions measured by functional labeling and hydrogen exchange methods. , 1986, Methods in enzymology.
[39] C. Levinthal. Are there pathways for protein folding , 1968 .
[40] Zhongqi Zhang,et al. Determination of amide hydrogen exchange by mass spectrometry: A new tool for protein structure elucidation , 1993, Protein science : a publication of the Protein Society.
[41] C. Anfinsen,et al. The kinetics of formation of native ribonuclease during oxidation of the reduced polypeptide chain. , 1961, Proceedings of the National Academy of Sciences of the United States of America.
[42] S W Englander,et al. Protein folding intermediates and pathways studied by hydrogen exchange. , 2000, Annual review of biophysics and biomolecular structure.
[43] A R Panchenko,et al. Foldons, protein structural modules, and exons. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[44] T. Kiefhaber,et al. A salt-induced kinetic intermediate is on a new parallel pathway of lysozyme folding. , 1999, Biochemistry.
[45] Manfred Eigen,et al. Proton Transfer, Acid-Base Catalysis, and Enzymatic Hydrolysis. Part I: ELEMENTARY PROCESSES†‡ , 1964 .
[46] G. Rose,et al. Do all backbone polar groups in proteins form hydrogen bonds? , 2005, Protein science : a publication of the Protein Society.
[47] K. Dill,et al. From Levinthal to pathways to funnels , 1997, Nature Structural Biology.
[48] J. Onuchic,et al. Navigating the folding routes , 1995, Science.
[49] S Walter Englander,et al. Protein hydrogen exchange mechanism: Local fluctuations , 2003, Protein science : a publication of the Protein Society.
[50] C. Woodward,et al. Hydrogen exchange and the dynamic structure of proteins , 1982, Molecular and Cellular Biochemistry.
[51] J. R. Rogero,et al. Protein hydrogen exchange studied by the fragment separation method. , 1985, Analytical biochemistry.
[52] Jane Clarke,et al. Take home lessons from studies of related proteins , 2013, Current opinion in structural biology.
[53] S W Englander,et al. Future directions in folding: The multi‐state nature of protein structure , 1996, Proteins.
[54] J. Enberg,et al. Studies of hydrogen exchange in proteins. II. The reversible thermal unfolding of chymotrypsinogen A as studied by exchange kinetics. , 1969, The Journal of biological chemistry.
[55] P. Harbury,et al. The equilibrium unfolding pathway of a (β/α)8 barrel , 2002 .
[56] H. Vogel,et al. A peptide analog of the calmodulin‐binding domain of myosin light chain kinase adopts an aL‐helical structure in aqueous trifluoroethanol , 1993, Protein science : a publication of the Protein Society.
[57] S. Englander. Hydrogen exchange and mass spectrometry: A historical perspective , 2006, Journal of the American Society for Mass Spectrometry.
[58] S W Englander,et al. Isotope effects in peptide group hydrogen exchange , 1993, Proteins.
[59] A. R. Tammar,et al. Protein Structure and Enzyme Activity , 1985 .
[60] Tobin R Sosnick,et al. Folding of a large protein at high structural resolution , 2013, Proceedings of the National Academy of Sciences.
[61] L Mayne,et al. Determinants of protein hydrogen exchange studied in equine cytochrome c , 1998, Protein science : a publication of the Protein Society.
[62] P. Wolynes,et al. A funneled energy landscape for cytochrome c directly predicts the sequential folding route inferred from hydrogen exchange experiments. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[63] C. Levinthal. How to fold graciously , 1969 .
[64] M. Mann,et al. Electrospray Ionization for Mass Spectrometry of Large Biomolecules , 1990 .
[65] S. Marqusee,et al. Comparison of equilibrium and kinetic approaches for determining protein folding mechanisms. , 2000, Advances in protein chemistry.
[66] A J Wand,et al. Local stability and dynamics of apocytochrome b562 examined by the dependence of hydrogen exchange on hydrostatic pressure. , 1998, Biochemistry.
[67] L. Mayne,et al. The nature of protein folding pathways , 2014, Proceedings of the National Academy of Sciences.