MODELING THE ROLE OF DISULFIDE BONDS IN PROTEIN-FOLDING - ENTROPIC BARRIERS AND PATHWAYS

被引:68
|
作者
CAMACHO, CJ [1 ]
THIRUMALAI, D [1 ]
机构
[1] UNIV MARYLAND,INST PHYS SCI & TECHNOL,COLLEGE PK,MD 20742
来源
PROTEINS-STRUCTURE FUNCTION AND GENETICS | 1995年 / 22卷 / 01期
关键词
PROTEIN FOLDING; DISULFIDE BONDS; 3-STAGE MULTIPLE PATHWAYS; KINETICS; ENTROPIC BARRIERS;
D O I
10.1002/prot.340220105
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The role of disulfide bonds in directing protein folding is studied using lattice models. We find that the stability and the specificity of the disulfide bond interactions play quite different roles in the folding process: Under some conditions, the stability decreases the overall rate of folding; the specificity, however, by yielding a simpler connectivity of intermediates, always increases the rate of folding. This conclusion is intimately related to the selection mechanism entailed by entropic driving forces, such as the loop formation probability, and entropic barriers separating the native and the many native-like metastable states. The folding time is found to be a minimum for a certain range of the effective disulfide bond interaction. Examination of a model, which allows for the formation of disulfide bonded intermediates, suggests that folding proceeds via a three-stage multiple pathways kinetics. We show that there are pathways to the native state involving only native-like intermediates, as well as those that are mediated by nonnative intermediates. These findings are interpreted in terms of the appropriate energy landscape describing the barriers connecting low energy conformations. The consistency of our conclusions with several experimental studies is also discussed. (C) 1995 Wiley-Liss, Inc.
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页码:27 / 40
页数:14
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