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古菌前折叠酶的结构与功能,一种 II 型分子伴侣的共伴侣。

Structure and function of archaeal prefoldin, a co-chaperone of group II chaperonin.

机构信息

Department of Biotechnology and Life Science, Tokyo University of Agriculture and Technology, 2-24-16 Naka-cho, Koganei, Tokyo 184-8588, Japan.

出版信息

Front Biosci (Landmark Ed). 2010 Jan 1;15(2):708-17. doi: 10.2741/3641.

Abstract

Molecular chaperones are key cellular components involved in the maintenance of protein homeostasis and other unrelated functions. Prefoldin is a chaperone that acts as a co-factor of group II chaperonins in eukaryotes and archaea. It assists proper folding of protein by capturing nonnative proteins and delivering it to the group II chaperonin. Eukaryotic prefoldin is a multiple subunit complex composed of six different polypeptide chains. Archaeal prefoldin, on the other hand, is a heterohexameric complex composed of two alpha and four beta subunits, and forms a double beta barrel assembly with six long coiled coils protruding from it like a jellyfish with six tentacles. Based on the structural information of the archaeal prefoldin, substrate recognition and prefoldin-chaperonin binding mechanisms have been investigated. In this paper, we review a series of studies on the molecular mechanisms of archaeal PFD function. Particular emphasis will be placed on the molecular structures revealed by X-ray crystallography and molecular dynamics induced by binding to nonnative protein substrates.

摘要

分子伴侣是参与维持蛋白质平衡和其他无关功能的关键细胞成分。Prefoldin 是一种伴侣蛋白,作为真核生物和古菌中第二组伴侣蛋白的辅助因子发挥作用。它通过捕获非天然蛋白质并将其递送至第二组伴侣蛋白来协助正确折叠蛋白质。真核 prefoldin 是由六个不同多肽链组成的多亚基复合物。另一方面,古菌 prefoldin 是由两个 alpha 和四个 beta 亚基组成的异六聚体复合物,并形成一个双 β 桶组装,其中六个长卷曲螺旋从其伸出,就像一个有六个触手的水母。基于古菌 prefoldin 的结构信息,已经研究了底物识别和 prefoldin-chaperonin 结合机制。在本文中,我们回顾了一系列关于古菌 PFD 功能的分子机制研究。特别强调了 X 射线晶体学揭示的分子结构和与非天然蛋白质底物结合诱导的分子动力学。

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