Repulsive interparticle interactions in a denatured protein solution revealed by small angle neutron scattering
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M. Desmadril | P. Calmettes | D. Durand | V. Receveur | V Receveur | M Desmadril | P Calmettes | D Durand
[1] Bruno H. Zimm,et al. The Scattering of Light and the Radial Distribution Function of High Polymer Solutions , 1948 .
[2] C. Tanford,et al. Proteins as random coils. IV. Osmotic pressures, second virial coefficients, and unperturbed dimensions in 6 M guanidine hydrochloride. , 1967, Journal of the American Chemical Society.
[3] Masao Kakudo,et al. Small Angle Scattering of X-Rays , 1968 .
[4] B. Jacrot,et al. REVIEW ARTICLE: The study of biological structures by neutron scattering from solution , 1976 .
[5] T. Steitz,et al. Substrate binding closes the cleft between the domains of yeast phosphoglycerate kinase. , 1979, The Journal of biological chemistry.
[6] J. D. Cloizeaux. Polymers in solutions : principles and applications of a direct renormalization method , 1981 .
[7] K. Freed,et al. Static-coherent-scattering function for a single polymer chain: Conformational space renormalization of polymers. V , 1982 .
[8] G. Zaccaı̈,et al. small angle neutron scattering , 2020, Catalysis from A to Z.
[9] K. Freed,et al. Penetration function and second virial coefficient for linear and regular star polymers , 1984 .
[10] K. Freed,et al. Renormalization and the two-parameter theory. 2. Comparison with experiment and other two-parameter theories , 1985 .
[11] M. Desmadril,et al. Kinetic studies of the unfolding-refolding of horse muscle phosphoglycerate kinase induced by guanidine hydrochloride. , 1985, Biochemistry.
[12] R. Duplessix,et al. Scattering function of polystyrene , 1987 .
[13] L. Mouawad,et al. Study of the fast-reacting cysteines in phosphoglycerate kinase using chemical modification and site-directed mutagenesis. , 1989, European journal of biochemistry.
[14] C. Gernat,et al. Acid denatured apo-cytochrome c is a random coil: evidence from small-angle X-ray scattering and dynamic light scattering. , 1991, Biochimica et biophysica acta.
[15] W. Pfeil,et al. Cold denaturation-induced conformational changes in phosphoglycerate kinase from yeast. , 1993, Biochemistry.
[16] Configurational distribution of denatured phosphoglycerate kinase. , 1993, Journal of molecular biology.
[17] A. Minton,et al. Macromolecular crowding: biochemical, biophysical, and physiological consequences. , 1993, Annual review of biophysics and biomolecular structure.
[18] E. Serpersu,et al. Conformational changes in yeast phosphoglycerate kinase upon substrate binding. , 1994, Biophysical chemistry.
[19] J. Smith,et al. How random is a highly denatured protein? , 1994, Biophysical chemistry.
[20] M. Desmadril,et al. Evidence for residual structures in an unfolded form of yeast phosphoglycerate kinase. , 1995, Biochemistry.
[21] M. Desmadril,et al. Structures of phosphoglycerate kinase and β-casein denatured in guanidinium chloride , 1995 .
[22] E. Guittet,et al. Role of the C-terminal helix in the folding and stability of yeast phosphoglycerate kinase. , 1995, Biochemistry.
[23] S Doniach,et al. A lysozyme folding intermediate revealed by solution X-ray scattering. , 1996, Journal of molecular biology.
[24] Y. Amemiya,et al. Protein globularization during folding. A study by synchrotron small-angle X-ray scattering. , 1996, Journal of Molecular Biology.
[25] M. Kataoka,et al. The methanol-induced globular and expanded denatured states of cytochrome c: a study by CD fluorescence, NMR and small-angle X-ray scattering. , 1996, Journal of molecular biology.
[26] J. Trewhella. Insights into biomolecular function from small-angle scattering. , 1997, Current opinion in structural biology.
[27] B. Roux,et al. Small-angle neutron scattering by a strongly denatured protein: analysis using random polymer theory. , 1997, Biophysical journal.
[28] Jeremy C. Smith,et al. Picosecond dynamical changes on denaturation of yeast phosphoglycerate kinase revealed by quasielastic neutron scattering , 1997, Proteins.
[29] F. Hartl,et al. The effect of macromolecular crowding on chaperonin-mediated protein folding. , 1997, Proceedings of the National Academy of Sciences of the United States of America.