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首页> 外文期刊>The Journal of biological chemistry >Charge Composition Features of Model Single-span Membrane Proteins That Determine Selection of YidC and SecYEG Translocase Pathways in Escherichia coli
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Charge Composition Features of Model Single-span Membrane Proteins That Determine Selection of YidC and SecYEG Translocase Pathways in Escherichia coli

机译:模型单跨度膜蛋白的充电组成特征,可测解在大肠杆菌中的YIDC和Secyeg译团途径的选择

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摘要

We have investigated the features of single-span model membrane proteins based upon leader peptidase that determines whether the proteins insert by a YidC/Sec-independent, YidC-only, or YidC/Sec mechanism. We find that a protein with a highly hydrophobic transmembrane segment that inserts into the membrane by a YidC/Sec-independent mechanism becomes YidC-dependent if negatively charged residues are inserted into the translocated periplasmic domain or if the hydrophobicity of the transmembrane segment is reduced by substituting polar residues for nonpolar ones. This suggests that charged residues in the translocated domain and the hydrophobicity within the transmembrane segment are important determinants of the insertion pathway. Strikingly, the addition of a positively charged residue to either the translocated region or the transmembrane region can switch the insertion requirements such that insertion requires both YidC and SecYEG. To test conclusions from the model protein studies, we confirmed that a positively charged residue is a SecYEG determinant for the endogenous proteins ATP synthase subunits a and b and the TatC subunit of the Tat translocase. These findings provide deeper insights into how pathways are selected for the insertion of proteins into the Escherichia coli inner membrane.
机译:我们研究了基于领导肽酶的单跨模型膜蛋白的特征,该肽酶确定蛋白质是否通过YIDC / SEC-ISS-SEC-IDIDC或YIDC / SEC机构插入。发现一种具有高度疏水性跨膜段的蛋白质,即通过YIDC / SEC - 独立机构插入膜中的蛋白质,如果将带负电的残余物插入易位的周质结构域或者跨膜段的疏水性降低,则依赖于YIDC依赖性。通过用非极性残留物代替极性残留物。这表明旋转结构域中的带电残余物和跨膜段内的疏水性是插入途径的重要决定簇。尖锐地,向易位区域或跨膜区域添加带正电的残留物可以切换插入要求,使得插入需要YIDC和SECYEG。为了从模型蛋白质研究中测试结论,我们证实了带正电荷的残余物是内源性蛋白ATP合酶A和B的SECYEG决定蛋白和TAT译团的TATC亚基。这些发现能够深入了解如何选择术语以将蛋白质插入大肠杆菌内膜中。

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