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极性/电荷作为决定膜蛋白插入所需转位酶的因素。

Polarity/charge as a determinant of translocase requirements for membrane protein insertion.

机构信息

Dept. of Chemistry and Biochemistry, The Ohio State University, Columbus, OH 43210, United States of America.

Institute of Biology, University of Hohenheim, Stuttgart 70599, Germany.

出版信息

Biochim Biophys Acta Biomembr. 2021 Feb 1;1863(2):183502. doi: 10.1016/j.bbamem.2020.183502. Epub 2020 Oct 29.

DOI:10.1016/j.bbamem.2020.183502
PMID:33130098
Abstract

The YidC insertase of Escherichia coli inserts membrane proteins with small periplasmic loops (~20 residues). However, it has difficulty transporting loops that contain positively charged residues compared to negatively charged residues and, as a result, increasing the positive charge has an increased requirement for the Sec machinery as compared to negatively charged loops (Zhu et al., 2013; Soman et al., 2014). This suggested that the polarity and charge of the periplasmic regions of membrane proteins determine the YidC and Sec translocase requirements for insertion. Here we tested this polarity/charge hypothesis by showing that insertion of our model substrate protein procoat-Lep can become YidC/Sec dependent when the periplasmic loop was converted to highly polar even in the absence of any charged residues. Moreover, adding a number of hydrophobic amino acids to a highly polar loop can decrease the Sec-dependence of the otherwise strictly Sec-dependent membrane proteins. We also demonstrate that the length of the procoat-Lep loop is indeed a determinant for Sec-dependence by inserting alanine residues that do not markedly change the overall hydrophilicity of the periplasmic loop. Taken together, the results support the polarity/charge hypothesis as a determinant for the translocase requirement for procoat insertion.

摘要

大肠杆菌的 YidC 插入酶可将具有小周质环(约 20 个残基)的膜蛋白插入。然而,与带负电荷的残基相比,它在转运带正电荷的残基时遇到困难,因此与带负电荷的环相比,增加正电荷会增加 Sec 机制的需求(Zhu 等人,2013 年;Soman 等人,2014 年)。这表明膜蛋白周质区的极性和电荷决定了 YidC 和 Sec 易位子插入的要求。在这里,我们通过证明我们的模型底物蛋白 procoat-Lep 的插入可以在周质环转化为高度极性时变得依赖 YidC/Sec,即使没有任何带电荷的残基,从而验证了这一极性/电荷假设。此外,在高度极性的环中添加一些疏水性氨基酸可以降低 otherwise strictly Sec-dependent 膜蛋白对 Sec 的依赖性。我们还证明了 procoat-Lep 环的长度确实是 Sec 依赖性的决定因素,通过插入不明显改变周质环整体亲水性的丙氨酸残基。总之,这些结果支持极性/电荷假设作为 procoat 插入易位子要求的决定因素。

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