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变性态系综的扰动:模拟它们对蛋白质稳定性和折叠动力学的影响。

Perturbations of the denatured state ensemble: modeling their effects on protein stability and folding kinetics.

作者信息

Wrabl J O, Shortle D

机构信息

Department of Biological Chemistry, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.

出版信息

Protein Sci. 1996 Nov;5(11):2343-52. doi: 10.1002/pro.5560051121.

Abstract

By considering the denatured state of a protein as an ensemble of conformations with varying numbers of sequence-specific interactions, the effects on stability, folding kinetics, and aggregation of perturbing these interactions can be predicted from changes in the molecular partition function. From general considerations, the following conclusions are drawn: (1) A perturbation that enhances a native interaction in denatured state conformations always increases the stability of the native state. (2) A perturbation that promotes a non-native interaction in the denatured state always decreases the stability of the native state. (3) A change in the denatured state ensemble can alter the kinetics of aggregation and folding. (4) The loss (or increase) in stability accompanying two mutations, each of which lowers (or raises) the free energy of the denatured state, will be less than the sum of the effects of the single mutations, except in cases where both mutations affect the same set of partially folded conformations. By modeling the denatured state as the ensemble of all non-native conformations of hydrophobic-polar (HP) chains configured on a square lattice, it can be shown that the stabilization obtained from enhancement of native interactions derives in large measure from the avoidance of non-native interactions in the D state. In addition, the kinetic effects of fixing single native contacts in the denatured state or imposing linear gradients in the HH contact probabilities are found, for some sequences, to significantly enhance the efficiency of folding by a simple hydrophobic zippering algorithm. Again, the dominant mechanism appears to be avoidance of non-native interactions. These results suggest stabilization of native interactions and imposition of gradients in the stability of local structure are two plausible mechanisms involving the denatured state that could play a role in the evolution of protein folding and stability.

摘要

通过将蛋白质的变性状态视为具有不同数量序列特异性相互作用的构象集合,可以根据分子分配函数的变化预测干扰这些相互作用对稳定性、折叠动力学和聚集的影响。基于一般考虑,得出以下结论:(1) 增强变性状态构象中天然相互作用的扰动总是会增加天然状态的稳定性。(2) 在变性状态下促进非天然相互作用的扰动总是会降低天然状态的稳定性。(3) 变性状态集合的变化可以改变聚集和折叠的动力学。(4) 两个突变(每个突变都会降低(或提高)变性状态的自由能)伴随的稳定性损失(或增加)将小于单个突变效应的总和,除非两个突变影响同一组部分折叠的构象。通过将变性状态建模为配置在正方形晶格上的疏水 - 极性 (HP) 链的所有非天然构象的集合,可以表明,通过增强天然相互作用获得的稳定性在很大程度上源于避免 D 状态中的非天然相互作用。此外,对于某些序列,发现在变性状态下固定单个天然接触或在 HH 接触概率中施加线性梯度的动力学效应,通过简单的疏水拉链算法可显著提高折叠效率。同样,主要机制似乎是避免非天然相互作用。这些结果表明,天然相互作用的稳定以及局部结构稳定性梯度的施加是涉及变性状态的两种合理机制,它们可能在蛋白质折叠和稳定性的进化中发挥作用。

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本文引用的文献

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Structural and genetic analysis of protein stability.蛋白质稳定性的结构与遗传分析
Annu Rev Biochem. 1993;62:139-60. doi: 10.1146/annurev.bi.62.070193.001035.
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Cooperativity in protein-folding kinetics.蛋白质折叠动力学中的协同性。
Proc Natl Acad Sci U S A. 1993 Mar 1;90(5):1942-6. doi: 10.1073/pnas.90.5.1942.
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Denatured states of proteins.蛋白质的变性状态
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