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大型蛋白质折叠过程中三级相互作用的形成。

The development of tertiary interactions during the folding of a large protein.

作者信息

Parker M J, Sessions R B, Badcoe I G, Clarke A R

机构信息

Molecular Recognition Centre, University of Bristol, School of Medical Sciences, UK.

出版信息

Fold Des. 1996;1(2):145-56. doi: 10.1016/S1359-0278(96)00023-5.

Abstract

BACKGROUND

We have used protein engineering and relaxation kinetics to examine the order in which secondary structure elements assemble during folding. Aliphatic contacts in the core of a large domain within the monomeric protein phosphoglycerate kinase (PGK) were disrupted in order to map the development of interactions between beta-strand and alpha-helix residues, both near and distant in the sequence.

RESULTS

Mutations which break sequence-local alpha-beta contacts destabilize the first identifiable intermediate in folding, showing that these contacts develop early in the folding pathway. In contrast, the removal of sequence-distant alpha-beta interactions has little effect at this stage, but reduces the rate at which the intermediate converts to the native state. Thus, contacts between these remote segments of secondary structure start to form later on in the process, during the rate-limiting transition.

CONCLUSIONS

In the case of this large protein domain, our results support the hypothesis that folding proceeds by a hierarchic pathway. Interactions form rapidly between sequence-local groups to produce microdomains before the establishment of the long-range contacts necessary to define the global fold, which proceeds through a highly hydrated transition state.

摘要

背景

我们利用蛋白质工程和弛豫动力学来研究二级结构元件在折叠过程中组装的顺序。为了描绘β链和α螺旋残基之间相互作用的发展情况,我们破坏了单体蛋白磷酸甘油酸激酶(PGK)中一个大结构域核心的脂肪族接触,这些残基在序列上有近有远。

结果

破坏序列局部α-β接触的突变会使折叠过程中第一个可识别的中间体不稳定,这表明这些接触在折叠途径中很早就形成了。相比之下,去除序列上距离较远的α-β相互作用在这个阶段影响很小,但会降低中间体转化为天然状态的速率。因此,这些二级结构的远程片段之间的接触在稍后的限速转变过程中开始形成。

结论

对于这个大的蛋白质结构域,我们的结果支持了折叠通过分层途径进行的假设。在定义全局折叠所需的远程接触建立之前,序列局部基团之间迅速形成相互作用以产生微结构域,全局折叠通过高度水合的过渡态进行。

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