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共翻译蛋白靶向到膜:易位子形成的四元复合物中的新生肽链转移。

Cotranslational protein targeting to the membrane: Nascent-chain transfer in a quaternary complex formed at the translocon.

机构信息

Department of Physical Biochemistry, Max Planck Institute for Biophysical Chemistry, 37077, Göttingen, Germany.

Chemistry Research Laboratory, University of Oxford, OX1 3TA, Oxford, UK.

出版信息

Sci Rep. 2018 Jul 2;8(1):9922. doi: 10.1038/s41598-018-28262-8.

Abstract

Membrane proteins in bacteria are cotranslationally inserted into the plasma membrane through the SecYEG translocon. Ribosomes exposing the signal-anchor sequence (SAS) of a membrane protein are targeted to the translocon by the signal recognition particle (SRP) pathway. SRP scans translating ribosomes and forms high-affinity targeting complexes with those exposing a SAS. Recognition of the SAS activates SRP for binding to its receptor, FtsY, which, in turn, is primed for SRP binding by complex formation with SecYEG, resulting in a quaternary targeting complex. Here we examine the effect of SecYEG docking to ribosome-nascent-chain complexes (RNCs) on SRP binding and SAS transfer, using SecYEG embedded in phospholipid-containing nanodiscs and monitoring FRET between fluorescence-labeled constituents of the targeting complex. SecYEG-FtsY binding to RNC-SRP complexes lowers the affinity of SRP to both ribosome and FtsY, indicating a general weakening of the complex due to partial binding competition near the ribosomal peptide exit. The rearrangement of the quaternary targeting complex to the pre-transfer complex requires an at least partially exposed SAS. The presence of SecYEG-bound FtsY and the length of the nascent chain strongly influence nascent-chain transfer from SRP to the translocon and repositioning of SRP in the post-transfer complex.

摘要

细菌中的膜蛋白通过 SecYEG 转运蛋白共翻译插入质膜。核糖体暴露膜蛋白的信号锚序列(SAS)被信号识别颗粒(SRP)途径靶向转运蛋白。SRP 扫描翻译中的核糖体,并与暴露 SAS 的核糖体形成高亲和力的靶向复合物。SAS 的识别使 SRP 能够与它的受体 FtsY 结合,反过来,通过与 SecYEG 形成复合物,FtsY 为 SRP 结合做好准备,从而形成四元靶向复合物。在这里,我们使用含有磷脂的纳米盘嵌入的 SecYEG 检查 SecYEG 与核糖体新生链复合物(RNC)对接对 SRP 结合和 SAS 转移的影响,并监测靶向复合物荧光标记成分之间的 FRET。SecYEG-FtsY 与 RNC-SRP 复合物的结合降低了 SRP 对核糖体和 FtsY 的亲和力,表明由于核糖体肽出口附近的部分结合竞争,复合物的整体强度减弱。四元靶向复合物到预转移复合物的重排需要至少部分暴露的 SAS。SecYEG 结合的 FtsY 和新生链的长度强烈影响 SRP 到转运蛋白的新生链转移和 SRP 在转移后复合物中的重新定位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/494d/6028451/3b819a0d3447/41598_2018_28262_Fig1_HTML.jpg

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