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Interaction of signal-recognition particle 54 GTPase domain and signal-recognition particle RNA in the free signal-recognition particle

机译:游离信号识别颗粒中信号识别颗粒54 GTPase结构域与信号识别颗粒RNA的相互作用

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摘要

The signal-recognition particle (SRP) is a ubiquitous protein-RNA complex that targets proteins to cellular membranes for insertion or secretion. A key player in SRP-mediated protein targeting is the evolutionarily conserved core consisting of the SRP RNA and the multidomain protein SRP54. Communication between the SRP54 domains is critical for SRP function, where signal sequence binding at the M domain directs receptor binding at the GTPase domain (NG domain). These SRP activities are linked to domain rearrangements, for which the role of SRP RNA is not clear. In free SRP, a direct interaction of the GTPase domain with SRP RNA has been proposed but has never been structurally verified. In this study, we present the crystal structure at 2.5-Å resolution of the SRP54-SRP19-SRP RNA complex of Methanococcus jannaschii SRP. The structure reveals an RNA-bound conformation of the SRP54 GTPase domain, in which the domain is spatially well separated from the signal peptide binding site. The association of both the N and G domains with SRP RNA in free SRP provides further structural evidence for the pivotal role of SRP RNA in the regulation of the SRP54 activity.
机译:信号识别颗粒(SRP)是一种普遍存在的蛋白质-RNA复合物,可将蛋白质靶向细胞膜以进行插入或分泌。 SRP介导的蛋白质靶向的关键角色是由SRP RNA和多结构域蛋白质SRP54组成的进化保守核心。 SRP54结构域之间的通讯对于SRP功能至关重要,在MRP结构域中,信号序列的结合将指导受体在GTPase结构域(NG结构域)中的结合。这些SRP活性与域重排有关,SRP RNA的作用尚不清楚。在游离SRP中,已经提出了GTPase结构域与SRP RNA的直接相互作用,但是从未在结构上得到证实。在这项研究中,我们提出了詹氏甲烷球菌SRP的SRP54-SRP19-SRP RNA复合物的2.5-Å分辨率的晶体结构。该结构揭示了SRP54 GTPase结构域的RNA结合构象,其中该结构域在空间上与信号肽结合位点良好分离。游离SRP中N和G结构域与SRP RNA的结合为SRP RNA在调节SRP54活性中的关键作用提供了进一步的结构证据。

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