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信号识别颗粒(SRP)循环中的一个结构步骤。

A structural step into the SRP cycle.

作者信息

Wild Klemens, Rosendal Ken R, Sinning Irmgard

机构信息

Biochemie-Zentrum der Universität Heidelberg (BZH), Im Neuenheimer Feld 328, D-69120 Heidelberg, Germany.

出版信息

Mol Microbiol. 2004 Jul;53(2):357-63. doi: 10.1111/j.1365-2958.2004.04139.x.

Abstract

Co-translational targeting of secretory and membrane proteins to the translocation machinery is mediated by the signal recognition particle (SRP) and its membrane-bound receptor (SR) in all three domains of life. Although the overall composition of the SRP system differs, the central ribonucleoprotein core and the general mechanism of GTP-dependent targeting are highly conserved. Recently, structural studies have contributed significantly to our understanding of the molecular organization of SRP. SRP appears as a structurally flexible particle modulated and regulated by its interactions with the ribosome-nascent chain complex, the translocon and the SR. The SRP core (SRP54 with its cognate RNA binding site) plays a central role in these interactions and communicates the different binding states by long-range interdomain communication. Based on recent structures of SRP54, a model for signal peptide binding stimulating the GTP affinity during the first step of the SRP cycle is presented. The model is placed in the context of the recent structures of mammalian SRP bound to a ribosome-nascent chain complex and of a subcomplex of SRP-SR.

摘要

在生命的所有三个域中,分泌蛋白和膜蛋白向转运机器的共翻译靶向是由信号识别颗粒(SRP)及其膜结合受体(SR)介导的。尽管SRP系统的总体组成不同,但其核心核糖核蛋白核心以及GTP依赖性靶向的一般机制高度保守。最近,结构研究对我们理解SRP的分子组织做出了重大贡献。SRP表现为一种结构灵活的颗粒,通过与核糖体-新生链复合物、转运体和SR的相互作用进行调节。SRP核心(带有同源RNA结合位点的SRP54)在这些相互作用中起核心作用,并通过远程结构域间通讯传递不同的结合状态。基于SRP54的最新结构,提出了一个信号肽结合在SRP循环第一步刺激GTP亲和力的模型。该模型置于与核糖体-新生链复合物结合的哺乳动物SRP以及SRP-SR亚复合物的最新结构背景下。

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