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Solvation in protein folding analysis: Combination of theoretical and experimental approaches
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Title: Solvation in protein folding analysis: Combination of theoretical and experimental approaches |
Authors: Fernández-Escamilla, Ana Mª Cheung, M. S. Vega, M. C. Wilmanns, M. Onuchic, J. N. Serrano, L. |
Editor: PNAS |
Department: Departamentos de la UMH::Bioquímica y Biología Molecular |
Issue Date: 2003 |
URI: https://hdl.handle.net/11000/39309 |
Abstract:
An effort to combine theoretical analyses and protein engineering
methods has been made to probe the folding mechanism of SH3 by
using Energy Landscape Theory and a -value analysis. Particular
emphasis was given to core residues and the effect of desolvation
during the folding event by replacing the core valines with isosteric
threonines. These mutations have the advantage of keeping the
core structurally invariant while affecting core stability relative to
the unfolded state. Although the valines that form the core appear
spatially invariant, the folding kinetics of their threonine mutants
varies, indicating their different extent of solvation in the transition-
state ensemble. Theoretical studies predicted the distribution
of folding kinetics of threonine mutants without previous knowledge
of the measured rates. This initial success encourages further
investigations of the molecular details behind these macroscopic
phenomena and of the role of solvation in the folding mechanism.
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Keywords/Subjects: protein folding analysis theoretical approaches experimental approaches |
Knowledge area: CDU: Ciencias puras y naturales: Biología: Bioquímica. Biología molecular. Biofísica |
Type of document: info:eu-repo/semantics/article |
Access rights: info:eu-repo/semantics/closedAccess |
DOI: https://doi.org/10.1073/pnas.0304180101 |
Published in: Biophysics and Computational Biology, Vol. 101, Nº 9 (2004) pp. 2834-2839 |
Appears in Collections: Artículos - Bioquímica y Biología Molecular
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