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第二个三聚体复合物包含Sec61p复合物的同源物,其在蛋白质跨酿酒酵母内质网膜的转运中发挥作用。

A second trimeric complex containing homologs of the Sec61p complex functions in protein transport across the ER membrane of S. cerevisiae.

作者信息

Finke K, Plath K, Panzner S, Prehn S, Rapoport T A, Hartmann E, Sommer T

机构信息

Max-Delbrück Centre for Molecular Medicine, Berlin-Buch, Germany.

出版信息

EMBO J. 1996 Apr 1;15(7):1482-94.

Abstract

Yeast microsomes contain a heptameric Sec complex involved in post-translational protein transport that is composed of a heterotrimeric Sec61p complex and a tetrameric Sec62-Sec63 complex. The trimeric Sec61p complex also exists as a separate entity that probably functions in co-translational protein transport, like its homolog in mammals. We have now discovered in the yeast endoplasmic reticulum membrane a second, structurally related trimeric complex, named Ssh1p complex. It consists of Ssh1p1 (Sec sixty-one homolog 1), a rather distant relative of Sec61p, of Sbh2p, a homolog of the Sbh1p subunit of the Sec61p complex, and of Sss1p, a component common to both trimeric complexes. In contrast to Sec61p, Ssh1p is not essential for cell viability but it is required for normal growth rates. Sbh1p and Sbh2p individually are also not essential, but cells lacking both proteins are impaired in their growth at elevated temperatures and accumulate precursors of secretory proteins; microsomes isolated from these cells also exhibit a reduced rate of post-translational protein transport. Like the Sec61p complex, the Ssh1p complex interacts with membrane-bound ribosomes, but it does not associate with the Sec62-Sec63p complex to form a heptameric Sec complex. We therefore propose that it functions exclusively in the co-translational pathway of protein transport.

摘要

酵母微粒体含有一种参与翻译后蛋白质转运的七聚体Sec复合物,它由一个异源三聚体Sec61p复合物和一个四聚体Sec62 - Sec63复合物组成。三聚体Sec61p复合物也作为一个独立的实体存在,可能在共翻译蛋白质转运中发挥作用,就像它在哺乳动物中的同源物一样。我们现在在酵母内质网膜中发现了第二种结构相关的三聚体复合物,名为Ssh1p复合物。它由Ssh1p1(Sec61同源物1,Sec61p的一个较远的亲属)、Sbh2p(Sec61p复合物Sbh1p亚基的同源物)和Sss1p(两种三聚体复合物共有的一个组分)组成。与Sec61p不同,Ssh1p对细胞活力不是必需的,但它是正常生长速率所必需的。Sbh1p和Sbh2p单独也不是必需的,但缺乏这两种蛋白质的细胞在高温下生长受损,并积累分泌蛋白的前体;从这些细胞中分离出的微粒体也表现出翻译后蛋白质转运速率降低。与Sec61p复合物一样,Ssh1p复合物与膜结合核糖体相互作用,但它不与Sec62 - Sec63p复合物结合形成七聚体Sec复合物。因此,我们提出它仅在蛋白质转运的共翻译途径中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bcaa/450055/a7af39d9e7e6/emboj00007-0017-a.jpg

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