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小蛋白质通过具有类似天然拓扑结构的过渡态进行折叠。

Small proteins fold through transition states with native-like topologies.

作者信息

Pandit Adarsh D, Jha Abhishek, Freed Karl F, Sosnick Tobin R

机构信息

Department of Biochemistry and Molecular Biology, and the Institute for Biophysical Dynamics, University of Chicago, 929 E. 57th St., Chicago, IL 60637, USA.

出版信息

J Mol Biol. 2006 Aug 25;361(4):755-70. doi: 10.1016/j.jmb.2006.06.041. Epub 2006 Jul 7.

Abstract

The folding pathway of common-type acyl phosphatase (ctAcP) is characterized using psi-analysis, which identifies specific chain-chain contacts using bi-histidine (biHis) metal-ion binding sites. In the transition state ensemble (TSE), the majority of the protein is structured with a near-native topology, only lacking one beta-strand and an alpha-helix. psi-Values are zero or unity for all sites except one at the amino terminus of helix H2. This fractional psi-value remains unchanged when three metal ions of differing coordination geometries are used, indicating this end of the helix experiences microscopic heterogeneity through fraying in the TSE. Ubiquitin, the other globular protein characterized using psi-analysis, also exhibits a single consensus TSE structure. Hence, the TSE of both proteins have converged to a single configuration, albeit one that contains some fraying at the periphery. Models of the TSE of both proteins are created using all-atom Langevin dynamics simulations using distance constraints derived from the experimental psi-values. For both proteins, the relative contact order of the TS models is approximately 80% of the native value. This shared value viewed in the context of the known correlation between contact order and folding rates, suggests that other proteins will have a similarly high fraction of the native contact order. This constraint greatly limits the range of possible configurations at the rate-limiting step.

摘要

利用ψ分析对普通型酰基磷酸酶(ctAcP)的折叠途径进行了表征,该分析通过双组氨酸(biHis)金属离子结合位点识别特定的链间接触。在过渡态系综(TSE)中,大部分蛋白质具有接近天然的拓扑结构,仅缺少一条β链和一个α螺旋。除了螺旋H2氨基末端的一个位点外,所有位点的ψ值均为零或一。当使用三种具有不同配位几何结构的金属离子时,这个分数ψ值保持不变,表明螺旋的这一端在TSE中通过磨损经历微观异质性。泛素是另一种通过ψ分析表征的球状蛋白质,也表现出单一的共有TSE结构。因此,两种蛋白质的TSE都收敛到单一构型,尽管该构型在周边包含一些磨损。使用从实验ψ值导出的距离约束,通过全原子朗之万动力学模拟创建了两种蛋白质的TSE模型。对于这两种蛋白质,TS模型的相对接触序约为天然值的80%。在已知的接触序与折叠速率之间的相关性背景下,这个共享值表明其他蛋白质将具有类似的高比例天然接触序。这种限制极大地限制了限速步骤中可能构型的范围。

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