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Signal recognition particle receptor exposes the ribosomal translocon binding site

机译:信号识别颗粒受体暴露核糖体转运结合位点

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Signal sequences of secretory and membrane proteins are recognized by the signal recognition particle (SRP) as they emerge from the ribosome. This results in their targeting to the membrane by docking with the SRP receptor, which facilitates transfer of the ribosome to the translocon. Here, we present the 8 angstrom cryo - electron microscopy structure of a "docking complex'' consisting of a SRP-bound 80S ribosome and the SRP receptor. Interaction of the SRP receptor with both SRP and the ribosome rearranged the S domain of SRP such that a ribosomal binding site for the translocon, the L23e/L35 site, became exposed, whereas Alu domain - mediated elongation arrest persisted.
机译:分泌蛋白和膜蛋白的信号序列在从核糖体中出现时被信号识别颗粒(SRP)识别。这导致它们通过与SRP受体对接而靶向膜,这有助于将核糖体转移至转运子。在这里,我们介绍了一个由SRP结合的80S核糖体和SRP受体组成的“对接复合体”的8埃低温电子显微镜结构,SRP受体与SRP和核糖体的相互作用重新排列了SRP的S结构域,例如该转运蛋白的核糖体结合位点L23e / L35位点暴露,而Alu结构域介导的伸长停滞现象持续存在。

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