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Hypothesis-review - An alternative model of the twin arginine translocation system [Review]

机译:假设审查-双精氨酸易位系统的替代模型[审查]

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摘要

The twin arginine translocation (Tat) system is a machinery which can translocate folded proteins across energy transducing membranes. Currently it is supposed that Tat substrates bind directly to Tat translocon components before a DeltapH-driven translocation occurs. In this review, an alternative model is presented which proposes that membrane integration could precede Tat-dependent translocation. This idea is mainly supported by the recent observations of Tat-independent membrane insertion of Tat substrates in vivo and in vitro. Membrane insertion may allow i) a quality control of the folded state by membrane bound proteases like FtsH, ii) the recognition of the membrane spanning signal peptide by Tat system components, and iii) a pulling mechanism of translocation. In some cases of folded Tat substrates, the membrane targeting process may require ATP-dependent N-terminal unfolding-steps.
机译:双精氨酸易位(Tat)系统是一种可将折叠的蛋白质跨能量转导膜移位的机器。目前认为,在发生DeltapH驱动的转运之前,Tat底物直接结合到Tat转运子组件上。在这篇综述中,提出了一个替代模型,该模型提出膜整合可以先于Tat依赖性易位。最近在体内和体外对Tat底物的Tat非依赖性膜插入的最新观察结果支持了这一想法。膜插入可以允许i)通过膜结合的蛋白酶(例如FtsH)对折叠状态进行质量控制,ii)通过Tat系统组件识别跨膜信号肽,以及iii)转运的拉动机制。在折叠的Tat底物的某些情况下,膜靶向过程可能需要依赖ATP的N端展开步骤。

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