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Folding and self-assembly of the TatA translocation pore based on a charge zipper mechanism

机译:基于电荷拉链机制的TatA易位孔的折叠和自组装

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We propose a concept for the folding and self-assembly of the pore-forming TatA complex from the Twin-arginine translocase and of other membrane proteins based on electrostatic "charge zippers." Each subunit of TatA consists of a transmembrane segment, an amphiphilic helix (APH), and a C-terminal densely charged region (DCR). The sequence of charges in the DCR is complementary to the charge pattern on the APH, suggesting that the protein can be "zipped up" by a ladder of seven salt bridges. The length of the resulting hairpin matches the lipid bilayer thickness, hence a transmembrane pore could self-assemble via intra- and intermolecular salt bridges. The steric feasibility was rationalized by molecular dynamics simulations, and experimental evidence was obtained by monitoring the monomer-oligomer equilibrium of specific charge mutants. Similar "charge zippers" are proposed for other membrane-associated proteins, e.g.; the biofilm-inducing peptide TisB, the human antimicrobial peptide dermcidin, and the pestiviral ERNS protein.
机译:我们提出了一种构想,用于折叠和自组装双胞胎精氨酸转位酶形成的TatA复合物以及基于静电“电荷拉链”的其他膜蛋白。 TatA的每个亚基由一个跨膜片段,一个两亲性螺旋(APH)和一个C端密集电荷区(DCR)组成。 DCR中的电荷序列与APH上的电荷模式互补,表明该蛋白可以被七个盐桥的阶梯“拉上”。产生的发夹的长度与脂质双层的厚度相匹配,因此跨膜孔可以通过分子内和分子间盐桥自组装。通过分子动力学模拟合理化了空间可行性,并且通过监测特定电荷突变体的单体-低聚物平衡获得了实验证据。对于其他膜相关蛋白,例如,提出了类似的“电荷拉链”。生物膜诱导肽TisB,人抗菌肽真皮蛋白和瘟病毒ERNS蛋白。

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