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一种用于GroEL-多肽识别的结构模型。

A structural model for GroEL-polypeptide recognition.

作者信息

Buckle A M, Zahn R, Fersht A R

机构信息

Cambridge University Chemical Laboratory, Medical Research Council Centre, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 1997 Apr 15;94(8):3571-5. doi: 10.1073/pnas.94.8.3571.

Abstract

A monomeric peptide fragment of GroEL, consisting of residues 191-376, is a mini-chaperone with a functional chaperoning activity. We have solved the crystal structure at 1.7 A resolution of GroEL(191-376) with a 17-residue N-terminal tag. The N-terminal tag of one molecule binds in the active site of a neighboring molecule in the crystal. This appears to mimic the binding of a peptide substrate molecule. Seven substrate residues are bound in a relatively extended conformation. Interactions between the substrate and the active site are predominantly hydrophobic, but there are also four hydrogen bonds between the main chain of the substrate and side chains of the active site. Although the preferred conformation of a bound substrate is essentially extended, the flexibility of the active site may allow it to accommodate the binding of exposed hydrophobic surfaces in general, such as molten globule-type structures. GroEL can therefore help unfold proteins by binding to a hydrophobic region and exert a binding pressure toward the fully unfolded state, thus acting as an "unfoldase." The structure of the mini-chaperone is very similar to that of residues 191-376 in intact GroEL, so we can build it into GroEL and reconstruct how a peptide can bind to the tetradecamer. A ring of connected binding sites is noted that can explain many aspects of substrate binding and activity.

摘要

GroEL的一个单体肽片段,由191 - 376位残基组成,是一种具有功能性伴侣活性的小型伴侣蛋白。我们已经解析了带有17个残基N端标签的GroEL(191 - 376)在1.7埃分辨率下的晶体结构。晶体中一个分子的N端标签结合在相邻分子的活性位点上。这似乎模拟了肽底物分子的结合。七个底物残基以相对伸展的构象结合。底物与活性位点之间的相互作用主要是疏水的,但底物主链与活性位点侧链之间也有四个氢键。尽管结合底物的优选构象基本上是伸展的,但活性位点的灵活性可能使其一般能够容纳暴露的疏水表面的结合,如熔球型结构。因此,GroEL可以通过结合疏水区域来帮助蛋白质解折叠,并向完全解折叠状态施加结合压力,从而起到“解折叠酶”的作用。小型伴侣蛋白的结构与完整GroEL中191 - 376位残基的结构非常相似,所以我们可以将其构建到GroEL中,并重建肽如何与十四聚体结合。我们注意到有一圈相连的结合位点,这可以解释底物结合和活性的许多方面。

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