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首页> 外文期刊>The Journal of biological chemistry >Polarity and Charge of the Periplasmic Loop Determine the YidC and Sec Translocase Requirement for the M13 Procoat Lep Protein
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Polarity and Charge of the Periplasmic Loop Determine the YidC and Sec Translocase Requirement for the M13 Procoat Lep Protein

机译:周质循环的极性和电荷决定了M13 Procoat LeP蛋白的YIDC和SEC译团要求

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摘要

During membrane biogenesis, the M13 procoat protein is inserted into the lipid bilayer in a strictly YidC-dependent manner with both the hydrophobic signal sequence and the membrane anchor sequence promoting translocation of the periplasmic loop via a hairpin mechanism. Here, we find that the translocase requirements can be altered for PClep in a predictable manner by changing the polarity and charge of the peptide region that is translocated across the membrane. When the polarity of the translocated peptide region is lowered and the charged residues in this region are removed, translocation of this loop region occurs largely by a YidC- and Sec-independent mechanism. When the polarity is increased to that of the wild-type procoat protein, the YidC insertase is essential for translocation. Further increasing the polarity, by adding charged residues, switches the insertion pathway to a YidC/Sec mechanism. Conversely, we find that increasing the hydrophobicity of the transmembrane segments of PClep can decrease the translocase requirement for translocation of the peptide chain. This study provides a framework to understand why the YidC and Sec machineries exist in parallel and demonstrates that the YidC insertase has a limited capacity to translocate a peptide chain on its own.
机译:在膜生物发生期间,用疏水信号序列和膜锚定序列通过发夹机构促进周质环的易位,以严格的依差依赖性方式插入脂质双层蛋白质中。这里,我们发现通过改变膜在膜上倾斜的肽区域的极性和电荷可以以可预测的方式改变旋流酶要求。当脱位肽区域的极性降低并且除去该区域中的带电残余物时,该环形区域的易位在很大程度上发生在yidc-和ec-and-sec-yscm-and-sec-and rsem的机制。当极性增加到野生型ProCoAT蛋白的时,YIDC inersease对于易位是必不可少的。通过添加带电残余物,进一步增加极性,将插入通道切换到YIDC / SEC机构。相反,我们发现,增加Pclep的跨膜段的疏水性可以降低肽链易位的易位酶要求。本研究提供了一个框架,以了解为什么YIDC和SEC机器并行存在并证明YIDC inerserase具有有限的能力,可以单独翻译肽链。

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