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在类似于天然环境中捕获膜蛋白核糖体新生链复合物,用于共翻译研究。

Capturing Membrane Protein Ribosome Nascent Chain Complexes in a Native-like Environment for Co-translational Studies.

机构信息

King's College London, Department of Chemistry, Britannia House, 7 Trinity Street, London SE1 1DB, U.K.

出版信息

Biochemistry. 2020 Aug 4;59(30):2764-2775. doi: 10.1021/acs.biochem.0c00423. Epub 2020 Jul 24.

Abstract

Co-translational folding studies of membrane proteins lag behind cytosolic protein investigations largely due to the technical difficulty in maintaining membrane lipid environments for correct protein folding. Stalled ribosome-bound nascent chain complexes (RNCs) can give snapshots of a nascent protein chain as it emerges from the ribosome during biosynthesis. Here, we demonstrate how SecM-facilitated nascent chain stalling and native nanodisc technologies can be exploited to capture -generated membrane protein RNCs within their native lipid compositions. We reveal that a polytopic membrane protein can be successfully stalled at various stages during its synthesis and the resulting RNC extracted within either detergent micelles or diisobutylene-maleic acid co-polymer native nanodiscs. Our approaches offer tractable solutions for the structural and biophysical interrogation of nascent membrane proteins of specified lengths, as the elongating nascent chain emerges from the ribosome and inserts into its native lipid milieu.

摘要

膜蛋白的共翻译折叠研究落后于胞质蛋白研究,主要是因为在维持正确蛋白质折叠的膜脂环境方面存在技术困难。核糖体结合的新生链复合物(RNC)可以在生物合成过程中捕获核糖体中新生蛋白质链的快照。在这里,我们展示了如何利用 SecM 促进的新生链停滞和天然纳米盘技术来捕获在其天然脂质组成中的新生膜蛋白 RNC。我们揭示了可以在多跨膜蛋白合成的各个阶段成功地将其停滞,并在去污剂胶束或异丁烯-马来酸共聚物天然纳米盘中提取所得的 RNC。我们的方法为结构和生物物理研究指定长度的新生膜蛋白提供了可行的解决方案,因为延伸的新生链从核糖体中出现并插入其天然脂质环境中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57c9/7551657/64d1c84d33b8/bi0c00423_0001.jpg

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