Hidden complexity of free energy surfaces for peptide (protein) folding.
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ABSTRACT: An understanding of the thermodynamics and kinetics of protein folding requires a knowledge of the free energy surface governing the motion of the polypeptide chain. Because of the many degrees of freedom involved, surfaces projected on only one or two progress variables are generally used in descriptions of the folding reaction. Such projections result in relatively smooth surfaces, but they could mask the complexity of the unprojected surface. Here we introduce an approach to determine the actual (unprojected) free energy surface and apply it to the second beta-hairpin of protein G, which has been used as a model system for protein folding. The surface is represented by a disconnectivity graph calculated from a long equilibrium folding-unfolding trajectory. The denatured state is found t
SUBMITTER: Krivov SV
PROVIDER: S-EPMC522040 | biostudies-literature | 2004 Oct
REPOSITORIES: biostudies-literature
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