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在插入过程中,SecA蛋白会深深穿透SecYEG通道,与大多数通道跨膜螺旋和周质区域接触。

The SecA protein deeply penetrates into the SecYEG channel during insertion, contacting most channel transmembrane helices and periplasmic regions.

作者信息

Banerjee Tithi, Zheng Zeliang, Abolafia Jane, Harper Shelby, Oliver Donald

机构信息

From the Department of Molecular Biology and Biochemistry, Wesleyan University, Middletown, Connecticut 06459.

From the Department of Molecular Biology and Biochemistry, Wesleyan University, Middletown, Connecticut 06459

出版信息

J Biol Chem. 2017 Dec 1;292(48):19693-19707. doi: 10.1074/jbc.RA117.000130. Epub 2017 Oct 6.

Abstract

The bacterial Sec-dependent system is the major protein-biogenic pathway for protein secretion across the cytoplasmic membrane or insertion of integral membrane proteins into the phospholipid bilayer. The mechanism of SecA-driven protein transport across the SecYEG channel complex has remained controversial with conflicting claims from biochemical and structural studies regarding the depth and extent of SecA insertion into SecYEG during ongoing protein transport. Here we utilized site-specific photo-crosslinking to thoroughly map SecY regions that are in contact with SecA during its insertion cycle. An arabinose-inducible, rapidly folding OmpA-GFP chimera was utilized to jam the SecYEG channels with an arrested substrate protein to "freeze" them in their SecA-inserted state. Examination of 117 sites distributed throughout SecY indicated that SecA not only interacts extensively with the cytosolic regions of SecY as shown previously, but it also interacts with most of the transmembrane helices and periplasmic regions of SecY, with a clustering of interaction sights around the lateral gate and pore ring regions. Our observations support previous reports of SecA membrane insertion during protein transport as well as those documenting the membrane penetration properties of this protein. They suggest that one or more SecA regions transiently integrate into the heart of the SecY channel complex to span the membrane to promote the protein transport cycle. These findings indicate that high-resolution structural information about the membrane-inserted state of SecA is still lacking and will be critical for elucidating the bacterial protein transport mechanism.

摘要

细菌的Sec依赖性系统是蛋白质穿过细胞质膜分泌或整合膜蛋白插入磷脂双分子层的主要蛋白质生物合成途径。SecA驱动的蛋白质跨SecYEG通道复合物转运的机制一直存在争议,生化和结构研究对于蛋白质转运过程中SecA插入SecYEG的深度和程度存在相互矛盾的说法。在这里,我们利用位点特异性光交联来全面绘制SecA插入周期中与SecA接触的SecY区域。使用阿拉伯糖诱导的、快速折叠的OmpA-GFP嵌合体,用停滞的底物蛋白堵塞SecYEG通道,使其“冻结”在SecA插入状态。对分布在整个SecY上的117个位点的研究表明,SecA不仅如先前所示与SecY的胞质区域广泛相互作用,而且还与SecY的大多数跨膜螺旋和周质区域相互作用,在侧门和孔环区域周围存在相互作用位点的聚集。我们的观察结果支持了先前关于蛋白质转运过程中SecA膜插入的报道以及记录该蛋白膜穿透特性的报道。这些结果表明,SecA膜插入状态的高分辨率结构信息仍然缺乏,这对于阐明细菌蛋白质转运机制至关重要。

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引用本文的文献

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The Dynamic SecYEG Translocon.动态SecYEG转运体
Front Mol Biosci. 2021 Apr 15;8:664241. doi: 10.3389/fmolb.2021.664241. eCollection 2021.

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