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革兰氏阴性菌内膜蛋白转运:Sec 和 Tat 依赖的蛋白转运途径。

Protein translocation across the inner membrane of Gram-negative bacteria: the Sec and Tat dependent protein transport pathways.

机构信息

Institut für Biochemie und Molekularbiologie, Germany.

出版信息

Res Microbiol. 2013 Jul-Aug;164(6):505-34. doi: 10.1016/j.resmic.2013.03.016. Epub 2013 Apr 6.

Abstract

Gram negative bacteria possess a large variety of protein transport systems, by which proteins that are synthesised in the cytosol are exported to destinations in the cell envelope or entirely secreted into the extracellular environment. The inner membrane (IM) contains three major transport systems for the translocation and insertion of signal sequence containing proteins: the Sec translocon, the YidC insertase, and the Tat system. The heterotrimeric SecYEG translocon forms a narrow channel in the membrane that serves a dual function; it allows the translocation of unfolded proteins across the pore and the integration of α-helical proteins into the IM. The YidC insertase is a multi-spanning membrane protein that cooperates with the SecYEG translocon during the integration of membrane proteins but also functions as an independent insertase. Depending upon the type of protein cargo that needs to be transported, the Signal Recognition Particle (SRP), the SRP receptor, SecA and chaperones are required to coordinate translation with transport and to target and energise the different transport systems. The Tat system consists of three membrane proteins (TatA, TatB and TatC) which in a still unknown manner accomplish the transmembrane passage of completely folded proteins and protein complexes.

摘要

革兰氏阴性菌拥有多种蛋白质运输系统,通过这些系统,在细胞质中合成的蛋白质被输出到细胞包膜中的目的地或完全分泌到细胞外环境中。内膜(IM)包含三个主要的信号序列含有蛋白质转运和插入的运输系统:Sec 转运体、YidC 插入酶和 Tat 系统。异源三聚体 SecYEG 转运体在膜中形成一个狭窄的通道,具有双重功能;它允许未折叠的蛋白质穿过孔转运,并将α-螺旋蛋白质整合到 IM 中。YidC 插入酶是一种多跨膜蛋白,在膜蛋白的整合过程中与 SecYEG 转运体合作,但也作为独立的插入酶发挥作用。根据需要运输的蛋白质货物的类型,信号识别颗粒(SRP)、SRP 受体、SecA 和伴侣蛋白需要协调翻译与运输,并靶向和激活不同的运输系统。Tat 系统由三个膜蛋白(TatA、TatB 和 TatC)组成,它们以一种未知的方式完成完全折叠蛋白质和蛋白质复合物的跨膜传递。

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