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通过细菌全孔道 SecYEG-SecDF-YajC-YidC 进行膜蛋白插入和质子动力势依赖的分泌。

Membrane protein insertion and proton-motive-force-dependent secretion through the bacterial holo-translocon SecYEG-SecDF-YajC-YidC.

机构信息

School of Biochemistry, University of Bristol, Bristol BS8 1TD, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 2014 Apr 1;111(13):4844-9. doi: 10.1073/pnas.1315901111. Epub 2014 Feb 18.

Abstract

The SecY/61 complex forms the protein-channel component of the ubiquitous protein secretion and membrane protein insertion apparatus. The bacterial version SecYEG interacts with the highly conserved YidC and SecDF-YajC subcomplex, which facilitates translocation into and across the membrane. Together, they form the holo-translocon (HTL), which we have successfully overexpressed and purified. In contrast to the homo-dimeric SecYEG, the HTL is a hetero-dimer composed of single copies of SecYEG and SecDF-YajC-YidC. The activities of the HTL differ from the archetypal SecYEG complex. It is more effective in cotranslational insertion of membrane proteins and the posttranslational secretion of a β-barreled outer-membrane protein driven by SecA and ATP becomes much more dependent on the proton-motive force. The activity of the translocating copy of SecYEG may therefore be modulated by association with different accessory subcomplexes: SecYEG (forming SecYEG dimers) or SecDF-YajC-YidC (forming the HTL). This versatility may provide a means to refine the secretion and insertion capabilities according to the substrate. A similar modularity may also be exploited for the translocation or insertion of a wide range of substrates across and into the endoplasmic reticular and mitochondrial membranes of eukaryotes.

摘要

SecY/61 复合物形成了普遍存在的蛋白质分泌和膜蛋白插入装置的蛋白质通道组件。细菌版本的 SecYEG 与高度保守的 YidC 和 SecDF-YajC 亚复合物相互作用,这有助于跨膜易位。它们共同构成了完整的转位体(HTL),我们已经成功地过表达和纯化了它。与同源二聚体 SecYEG 不同,HTL 是一个异源二聚体,由单个 SecYEG 和 SecDF-YajC-YidC 组成。HTL 的活性与典型的 SecYEG 复合物不同。它在共翻译插入膜蛋白和由 SecA 和 ATP 驱动的β桶型外膜蛋白的翻译后分泌方面更有效,这使得质子动力势对 SecA 和 ATP 的依赖性更强。因此,易位的 SecYEG 拷贝的活性可能通过与不同的辅助亚复合物(SecYEG 或 SecDF-YajC-YidC)的结合而被调节。这种多功能性可能提供了一种根据底物来精细调节分泌和插入能力的方法。类似的模块化也可能被用于跨膜和内质网和线粒体膜转运或插入各种底物。

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