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线粒体热休克蛋白90(Trap1)的结构不对称性决定功能动力学的精细调节。

The Structural Asymmetry of Mitochondrial Hsp90 (Trap1) Determines Fine Tuning of Functional Dynamics.

作者信息

Moroni Elisabetta, Agard David A, Colombo Giorgio

机构信息

IRCCS Multimedica , via Fantoli 16/15, 20138 Milano, Italy.

Howard Hughes Medical Institute and Department of Biochemistry & Biophysics, University of California , 600 16th Street, San Francisco, California 94158, United States.

出版信息

J Chem Theory Comput. 2018 Feb 13;14(2):1033-1044. doi: 10.1021/acs.jctc.7b00766. Epub 2018 Jan 26.

Abstract

The Hsp90 family of molecular chaperones oversees the folding of a wide range of client proteins. Hsp90 is a homodimer, whose conformational states and functions are regulated by ATP-binding and hydrolysis. The crystal structure of mitochondrial Hsp90 (Trap1) showed that one of the two protomers in the active state is buckled, resulting in an asymmetric conformation. The asymmetry between the two protomers corresponds to the broadly conserved region responsible for client binding. Moreover, asymmetry determines differential hydrolysis for each protomer, with the buckled conformation favoring ATP processing. Experimental results show that after the first hydrolysis the dimer flips to a different asymmetric state while remaining in a closed conformation for the second hydrolysis. In this model, asymmetry plays a key role in the mechanism that drives chaperone function. Herein, we investigate the nucleotide-dependent internal dynamics of Trap1 with computational approaches. Our results shed light on the relationship between the nucleotide state in the N-terminal domain and the asymmetric modulation of the dynamic and structural properties of the client-binding region in the Middle domain. According to our analysis, this is the region that undergoes the most intense dynamic modulation upon nucleotide exchange. This result provides molecular insights into the roles of structural asymmetry in the regulation of Trap1 and suggests that this substructure is a promising target to modulate the functionally oriented aspects of Trap1 dynamics, therefore opening fresh opportunities for the design of selective therapeutics for Trap1-dependent diseases.

摘要

热休克蛋白90(Hsp90)分子伴侣家族负责监督多种客户蛋白的折叠。Hsp90是一种同型二聚体,其构象状态和功能受ATP结合和水解调节。线粒体Hsp90(Trap1)的晶体结构表明,处于活性状态的两个原体之一发生弯曲,导致构象不对称。两个原体之间的不对称对应于负责客户蛋白结合的广泛保守区域。此外,不对称决定了每个原体的差异水解,弯曲构象有利于ATP处理。实验结果表明,第一次水解后,二聚体翻转到不同的不对称状态,同时在第二次水解时保持封闭构象。在这个模型中,不对称在驱动伴侣功能的机制中起关键作用。在此,我们用计算方法研究了Trap1的核苷酸依赖性内部动力学。我们的结果揭示了N端结构域中的核苷酸状态与中间结构域中客户蛋白结合区域的动态和结构特性的不对称调节之间的关系。根据我们的分析,这是核苷酸交换时动态调节最强烈的区域。这一结果为结构不对称在Trap1调节中的作用提供了分子见解,并表明这种亚结构是调节Trap1动力学功能导向方面的一个有前景的靶点,因此为设计针对Trap1依赖性疾病的选择性疗法开辟了新机会。

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