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Structure of the Mammalian Ribosome-Sec61 Complex to 3.4? Resolution

机译:哺乳动物核糖体-Sec61复合物的结构至3.4?解析度

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摘要

Cotranslational protein translocation is a universally conserved process for secretory and membrane protein biosynthesis. Nascent polypeptides emerging from a translating ribosome are either transported across or inserted into the membrane via the ribosome-bound Sec61 channel. Here, we report structures of a mammalian ribosome-Sec61 complex in both idle and translating states, determined to 3.4 and 3.9 ? resolution. The data sets permit building of a near-complete atomic model of the mammalian ribosome, visualization of A/P and P/E hybrid-state tRNAs, and analysis of a nascent polypeptide in the exit tunnel. Unprecedented chemical detail is observed for both the ribosome-Sec61 interaction and the conformational state of Sec61 upon ribosome binding. Comparison of the maps from idle and translating complexes suggests how conformational changes to the Sec61 channel could facilitate translocation of a secreted polypeptide. The highresolution structure of the mammalian ribosome- Sec61 complex provides a valuable reference for future functional and structural studies.
机译:共翻译蛋白易位是分泌和膜蛋白生物合成的普遍保守的过程。从翻译核糖体出现的新生多肽通过结合核糖体的Sec61通道跨膜运输或插入膜中。在这里,我们报告了处于闲置和翻译状态的哺乳动物核糖体-Sec61复合物的结构,分别确定为3.4和3.9?解析度。数据集允许建立哺乳动物核糖体的近乎完整的原子模型,A / P和P / E杂合状态tRNA的可视化以及出口隧道中新生多肽的分析。核糖体-Sec61相互作用和核糖体结合后的Sec61的构象状态都观察到前所未有的化学细节。来自闲置和翻译复合物的图谱比较表明,Sec61通道的构象变化如何促进分泌多肽的转运。哺乳动物核糖体-Sec61复合体的高分辨率结构为将来的功能和结构研究提供了有价值的参考。

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