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热休克蛋白90(Hsp90)和p23的进化表位:对其相互作用的影响

Evolutionary epitopes of Hsp90 and p23: implications for their interaction.

作者信息

Zhu Shunyi, Tytgat Jan

机构信息

Laboratory of Toxicology, University of Leuven, Belgium.

出版信息

FASEB J. 2004 Jun;18(9):940-7. doi: 10.1096/fj.04-1570hyp.

Abstract

The amino-terminal domain (N-domain) of Hsp90 represents the ATP binding site and is important for interaction with its cochaperone, p23. Whereas some evidence suggests that p23 may bind to this domain in an ATP-dependent manner and that this process requires the dimerization of two N-domains, the interaction sites between them and the molecular mechanism of coupling these two events to p23 binding remain unsolved. As a first step toward establishing the interaction mechanism, we used the evolutionary tracing (ET) method [Lichtarge, O., Bourne, H. R., and Cohen, F. E. (1996) J. Mol. Biol. 257, 342-358] to identify the putative functional surfaces of Hsp90 and p23, and combined with protein-protein docking techniques, to predict their binding interface. Both evolutionarily privileged surfaces of Hsp90 and p23 identified by ET appear on this putative interface. An analysis of the complex model produced using the ET results combined with available experimental data highlights a putative conformational pathway in the ATP binding domain of Hsp90, where a series of conformational changes transfer the ATP-induced N-domain dimerization signal for the binding of p23. In this pathway, the closure of "lid" may result in reorientation of the helix alpha1 and the following loop (residues 10-27 in yeast Hsp90), which will expose more hydrophobic surface, and thus triggers the dimerization of N-domain.

摘要

热休克蛋白90(Hsp90)的氨基末端结构域(N结构域)代表ATP结合位点,对其与辅助伴侣蛋白p23的相互作用很重要。尽管一些证据表明p23可能以ATP依赖的方式结合到该结构域,且这一过程需要两个N结构域二聚化,但它们之间的相互作用位点以及将这两个事件与p23结合相偶联的分子机制仍未解决。作为建立相互作用机制的第一步,我们使用进化追踪(ET)方法[Lichtarge, O., Bourne, H. R., and Cohen, F. E. (1996) J. Mol. Biol. 257, 342 - 358]来识别Hsp90和p23的假定功能表面,并结合蛋白质-蛋白质对接技术来预测它们的结合界面。通过ET识别出的Hsp90和p23的进化上特殊的表面都出现在这个假定的界面上。对结合ET结果和现有实验数据产生的复合物模型的分析突出了Hsp90的ATP结合结构域中的一个假定构象途径,其中一系列构象变化传递ATP诱导的N结构域二聚化信号以实现p23的结合。在这个途径中,“盖子”的关闭可能导致α1螺旋和随后的环(酵母Hsp90中的第10 - 27位残基)重新定向,这将暴露出更多疏水表面,从而触发N结构域的二聚化。

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