Insights into protein folding using physical techniques: studies of lysozyme and alpha-lactalbumin.
暂无分享,去创建一个
[1] D. F. Koenig,et al. Structure of Hen Egg-White Lysozyme: A Three-dimensional Fourier Synthesis at 2 Å Resolution , 1965, Nature.
[2] C. Levinthal. Are there pathways for protein folding , 1968 .
[3] Charles Tanford,et al. The hydrophobic effect , 1980 .
[4] Terrence G. Oas,et al. A peptide model of a protein folding intermediate , 1988, Nature.
[5] Robert L. Baldwin,et al. NMR evidence for an early framework intermediate on the folding pathway of ribonuclease A , 1988, Nature.
[6] S. Walter Englander,et al. Structural characterization of folding intermediates in cytochrome c by H-exchange labelling and proton NMR , 1988, Nature.
[7] C M Dobson,et al. Characterization of a partly folded protein by NMR methods: studies on the molten globule state of guinea pig alpha-lactalbumin. , 1989, Biochemistry.
[8] K. Kuwajima,et al. The molten globule state as a clue for understanding the folding and cooperativity of globular‐protein structure , 1989, Proteins.
[9] P E Wright,et al. Structural characterization of a partly folded apomyoglobin intermediate. , 1990, Science.
[10] T. Creighton,et al. The 5–55 single‐disulphide intermediate in folding of bovine pancreatic trypsin inhibitor , 1991, FEBS letters.
[11] P. Kraulis. A program to produce both detailed and schematic plots of protein structures , 1991 .
[12] F. Hartl,et al. Chaperonin-mediated protein folding at the surface of groEL through a 'molten globule'-like intermediate , 1991, Nature.
[13] C. Dobson,et al. Hydrophobic clustering in nonnative states of a protein: Interpretation of chemical shifts in NMR spectra of denatured states of lysozyme , 1991, Proteins.
[14] A. Doig,et al. Is the hydrophobic effect stabilizing or destabilizing in proteins? The contribution of disulphide bonds to protein stability. , 1991, Journal of molecular biology.
[15] C. Dobson,et al. A photochemically induced dynamic nuclear polarization study of denatured states of lysozyme. , 1991, Biochemistry.
[16] A. Fersht,et al. Folding of chymotrypsin inhibitor 2. 1. Evidence for a two-state transition. , 1991, Biochemistry.
[17] C. Dobson,et al. Thermodynamic consequences of the removal of a disulphide bridge from hen lysozyme. , 1992, Journal of molecular biology.
[18] C. Dobson,et al. The folding of hen lysozyme involves partially structured intermediates and multiple pathways , 1992, Nature.
[19] H. Roder,et al. Early hydrogen-bonding events in the folding reaction of ubiquitin. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[20] W. Baumeister,et al. Chaperonin‐mediated protein folding: GroES binds to one end of the GroEL cylinder, which accommodates the protein substrate within its central cavity. , 1992, The EMBO journal.
[21] P E Wright,et al. Folding of peptide fragments comprising the complete sequence of proteins. Models for initiation of protein folding. I. Myohemerythrin. , 1992, Journal of molecular biology.
[22] A. Chaffotte,et al. Kinetic resolution of peptide bond and side chain far-UV circular dichroism during the folding of hen egg white lysozyme. , 1992, Biochemistry.
[23] Janet M. Thornton,et al. Protein fold recognition , 1993, J. Comput. Aided Mol. Des..
[24] C. Dobson,et al. Partially folded states of equine lysozyme. Structural characterization and significance for protein folding. , 1993, Biochemistry.
[25] A. Fersht,et al. Refolding of barnase in the presence of GroE. , 1993, Journal of molecular biology.
[26] H. Roder,et al. A noncovalent peptide complex as a model for an early folding intermediate of cytochrome c. , 1993, Biochemistry.
[27] C. Dobson,et al. A partially folded state of hen egg white lysozyme in trifluoroethanol: structural characterization and implications for protein folding. , 1993, Biochemistry.
[28] H. Dyson,et al. Characterization of a folding intermediate of apoplastocyanin trapped by proline isomerization. , 1993, Biochemistry.
[29] C M Dobson,et al. Structure and stability of the molten globule state of guinea-pig alpha-lactalbumin: a hydrogen exchange study. , 1993, Biochemistry.
[30] T. Atkinson,et al. Binding and hydrolysis of nucleotides in the chaperonin catalytic cycle: implications for the mechanism of assisted protein folding. , 1993, Biochemistry.
[31] C Redfield,et al. Structure of hen lysozyme in solution. , 1993, Journal of molecular biology.
[32] C M Dobson,et al. Structure and dynamics of the acid-denatured molten globule state of alpha-lactalbumin: a two-dimensional NMR study. , 1993, Biochemistry.
[33] P E Wright,et al. Peptide models of protein folding initiation sites. 1. Secondary structure formation by peptides corresponding to the G- and H-helices of myoglobin. , 1993, Biochemistry.
[34] C. Dobson,et al. Detection of transient protein folding populations by mass spectrometry. , 1993, Science.
[35] R. Jaenicke. Role of accessory proteins in protein folding , 1993 .
[36] T. Creighton,et al. Local conformations of peptides representing the entire sequence of bovine pancreatic trypsin inhibitor and their roles in folding. , 1993, Journal of molecular biology.
[37] K. Dill,et al. Cooperativity in protein-folding kinetics. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[38] T. Creighton,et al. Structural characterization of the disulfide folding intermediates of bovine alpha-lactalbumin. , 1993, Biochemistry.
[39] P. S. Kim,et al. A protein dissection study of a molten globule. , 1994, Biochemistry.
[40] Yechezkel Kashi,et al. GroEL-mediated protein folding proceeds by multiple rounds of binding and release of nonnative forms , 1994, Cell.
[41] C. Dobson,et al. Tertiary interactions in the folding pathway of hen lysozyme: kinetic studies using fluorescent probes. , 1994, Biochemistry.
[42] R. Ellis,et al. Roles of molecular chaperones in protein folding , 1994 .
[43] M. Karplus,et al. How does a protein fold? , 1994, Nature.
[44] R Hlodan,et al. Molecular chaperones in protein folding: the art of avoiding sticky situations. , 1994, Trends in biochemical sciences.
[45] C. Dobson,et al. Amide hydrogen exchange in a highly denatured state. Hen egg-white lysozyme in urea. , 1994, Journal of molecular biology.
[46] T. Creighton,et al. Conformational specificity of the chaperonin GroEL for the compact folding intermediates of alpha‐lactalbumin. , 1994, The EMBO journal.
[47] C M Dobson,et al. Kinetic consequences of the removal of a disulfide bridge on the folding of hen lysozyme. , 1994, Biochemistry.
[48] Zbyszek Otwinowski,et al. The crystal structure of the bacterial chaperonln GroEL at 2.8 Å , 1994, Nature.
[49] C. Dobson,et al. The refolding of human lysozyme: a comparison with the structurally homologous hen lysozyme. , 1994, Biochemistry.
[50] L. Gierasch,et al. Polypeptide interactions with molecular chaperones and their relationship to in vivo protein folding. , 1994, Annual review of biophysics and biomolecular structure.
[51] M. Tuite,et al. Protein disulphide isomerase: building bridges in protein folding. , 1994, Trends in biochemical sciences.
[52] Neil A. Ranson,et al. Location of a folding protein and shape changes in GroELGroES complexes imaged by cryo-electron microscopy , 1994, Nature.
[53] Judith Frydman,et al. Folding of nascent polypeptide chains in a high molecular mass assembly with molecular chaperones , 1994, Nature.
[54] C M Dobson,et al. Understanding how proteins fold: the lysozyme story so far. , 1994, Trends in biochemical sciences.
[55] Christopher M. Dobson,et al. Structural characterization of a highly–ordered ‘molten globule’ at low pH , 1994, Nature Structural Biology.
[56] A. Joshua Wand,et al. Solution structure of apocytochrome b562 , 1994, Nature Structural Biology.
[57] C. Dobson,et al. Conformation of GroEL-bound α-lactalbumin probed by mass spectrometry , 1994, Nature.
[58] H. Scheraga,et al. Kinetics of folding of guanidine-denatured hen egg white lysozyme and carboxymethyl(Cys6,Cys127)-lysozyme: a stopped-flow absorbance and fluorescence study. , 1994, Biochemistry.
[59] F. McLafferty,et al. Mass spectrometry of macromolecules: has its time now come? , 1994, Annual review of biophysics and biomolecular structure.
[60] S. Radford,et al. Probing the structure of folding intermediates , 1994 .
[61] S. Radford,et al. Far-UV circular dichroism reveals a conformational switch in a peptide fragment from the beta-sheet of hen lysozyme. , 1994, Biochemistry.
[62] C. Dobson,et al. Comparison of the refolding of hen lysozyme from dimethyl sulfoxide and guanidinium chloride. , 1995, Biochemistry.
[63] Zhuyan Guo,et al. Nucleation mechanism for protein folding and theoretical predictions for hydrogen‐exchange labeling experiments , 1995 .