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蛋白酶体ATP酶亚基识别多聚泛素降解信号。

A proteasomal ATPase subunit recognizes the polyubiquitin degradation signal.

作者信息

Lam Y Amy, Lawson T Glen, Velayutham Murugesan, Zweier Jay L, Pickart Cecile M

机构信息

Department of Biochemistry and Molecular Biology, School of Public Health, Johns Hopkins University, Baltimore, Maryland, USA.

出版信息

Nature. 2002 Apr 18;416(6882):763-7. doi: 10.1038/416763a.

Abstract

The 26S proteasome is the chief site of regulatory protein turnover in eukaryotic cells. It comprises one 20S catalytic complex (composed of four stacked rings of seven members) and two axially positioned 19S regulatory complexes (each containing about 18 subunits) that control substrate access to the catalytic chamber. In most cases, targeting to the 26S proteasome depends on tagging of the substrate with a specific type of polyubiquitin chain. Recognition of this signal is followed by substrate unfolding and translocation, which are presumably catalysed by one or more of six distinct AAA ATPases located in the base-a ring-like 19S subdomain that abuts the axial pore of the 20S complex and exhibits chaperone activity in vitro. Despite the importance of polyubiquitin chain recognition in proteasome function, the site of this signal's interaction with the 19S complex has not been identified previously. Here we use crosslinking to a reactive polyubiquitin chain to show that a specific ATPase subunit, S6' (also known as Rpt5), contacts the bound chain. The interaction of this signal with 26S proteasomes is modulated by ATP hydrolysis. Our results suggest that productive recognition of the proteolytic signal, as well as proteasome assembly and substrate unfolding, are ATP-dependent events.

摘要

26S蛋白酶体是真核细胞中调节蛋白周转的主要场所。它由一个20S催化复合体(由四个由七个成员组成的堆叠环组成)和两个轴向定位的19S调节复合体(每个复合体包含约18个亚基)组成,这两个调节复合体控制底物进入催化腔。在大多数情况下,靶向26S蛋白酶体取决于用特定类型的多聚泛素链标记底物。识别该信号后,底物会发生去折叠和易位,这可能由位于与20S复合体轴向孔相邻的基部——一个环状19S亚结构域中的六种不同的AAA ATP酶中的一种或多种催化,该亚结构域在体外具有伴侣活性。尽管多聚泛素链识别在蛋白酶体功能中很重要,但该信号与19S复合体相互作用的位点此前尚未确定。在这里,我们使用与反应性多聚泛素链交联的方法来表明,一个特定的ATP酶亚基S6'(也称为Rpt5)与结合的链接触。该信号与26S蛋白酶体的相互作用受ATP水解调节。我们的结果表明,对蛋白水解信号的有效识别以及蛋白酶体组装和底物去折叠都是依赖ATP的事件。

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