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阐明 YidC:核糖体复合物的天然结构。

Elucidating the native architecture of the YidC: ribosome complex.

机构信息

Department of Molecular Microbiology, Groningen Biomolecular Sciences and Biotechnology Institute, and Zernike Institute for Advanced Materials, University of Groningen, 9747 AG Groningen, The Netherlands.

出版信息

J Mol Biol. 2013 Nov 15;425(22):4112-24. doi: 10.1016/j.jmb.2013.07.042. Epub 2013 Aug 8.

Abstract

Membrane protein biogenesis in bacteria occurs via dedicated molecular systems SecYEG and YidC that function independently and in cooperation. YidC belongs to the universally conserved Oxa1/Alb3/YidC family of membrane insertases and is believed to associate with translating ribosomes at the membrane surface. Here, we have examined the architecture of the YidC:ribosome complex formed upon YidC-mediated membrane protein insertion. Fluorescence correlation spectroscopy was employed to investigate the complex assembly under physiological conditions. A slightly acidic environment stimulates binding of detergent-solubilized YidC to ribosomes due to electrostatic interactions, while YidC acquires specificity for translating ribosomes at pH-neutral conditions. The nanodisc reconstitution of the YidC to embed it into a native phospholipid membrane environment strongly enhances the YidC:ribosome complex formation. A single copy of YidC suffices for the binding of translating ribosome both in detergent and at the lipid membrane interface, thus being the minimal functional unit. Data reveal molecular details on the insertase functioning and interactions and suggest a new structural model for the YidC:ribosome complex.

摘要

细菌中的膜蛋白生物发生是通过专门的分子系统 SecYEG 和 YidC 进行的,它们独立和合作地发挥作用。YidC 属于普遍保守的 Oxa1/Alb3/YidC 家族的膜插入酶,据信它与膜表面的翻译核糖体结合。在这里,我们研究了在 YidC 介导的膜蛋白插入过程中形成的 YidC:核糖体复合物的结构。荧光相关光谱法被用于在生理条件下研究复合物的组装。稍酸性的环境会由于静电相互作用刺激去污剂溶解的 YidC 与核糖体结合,而在 pH 中性条件下,YidC 获得对翻译核糖体的特异性。纳米盘的再形成将 YidC 嵌入到天然磷脂膜环境中,强烈增强了 YidC:核糖体复合物的形成。在去污剂和脂质膜界面上,单个 YidC 足以结合翻译核糖体,因此它是最小的功能单元。数据揭示了插入酶功能和相互作用的分子细节,并提出了 YidC:核糖体复合物的新结构模型。

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