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Co-translational protein targeting to the bacterial membrane

机译:共翻译蛋白靶向细菌膜

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摘要

Co-translational protein targeting by the Signal Recognition Particle (SRP) is an essential cellular pathway that couples the synthesis of nascent proteins to their proper cellular localization. The bacterial SRP, which contains the minimal ribonucleoprotein core of this universally conserved targeting machine, has served as a paradigm for understanding the molecular basis of protein localization in all cells. In this review, we highlight recent biochemical and structural insights into the molecular mechanisms by which fundamental challenges faced by protein targeting machineries are met in the SRP pathway. Collectively, these studies elucidate how an essential SRP RNA and two regulatory GTPases in the SRP and SRP receptor (SR) enable this targeting machinery to recognize, sense and respond to its biological effectors, i.e. the cargo protein, the target membrane and the translocation machinery, thus driving efficient and faithful co-translational protein targeting. This article is part of a Special Issue entitled: Protein trafficking and secretion in bacteria. Guest Editors: Anastassios Economou and Ross Dalbey.
机译:信号识别颗粒(SRP)靶向共翻译蛋白是一种重要的细胞途径,它将新生蛋白质的合成与其适当的细胞定位相结合。细菌SRP包含这种普遍保守的靶向机器的最小核糖核蛋白核心,已成为理解所有细胞中蛋白质定位的分子基础的范例。在这篇综述中,我们重点介绍了分子机制的最新生物化学和结构见解,通过这些分子机制,可以在SRP途径中应对蛋白质靶向设备面临的基本挑战。这些研究共同阐明了SRP和SRP受体(SR)中必需的SRP RNA和两个调节性GTPases如何使这种靶向机制能够识别,感知和响应其生物效应物,即货物蛋白,靶膜和转运机制,从而推动了有效且忠实的共翻译蛋白靶向。本文是名为“蛋白质在细菌中的运输和分泌”的特刊的一部分。客座编辑:Anastassios Economou和Ross Dalbey。

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