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Fold and function of polypeptide transport-associated domains responsible for delivering unfolded proteins to membranes

机译:多肽运输相关结构域的折叠和功能,负责将未折叠的蛋白传递至膜

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摘要

Membranes of Gram-negative bacteria, mitochondria and chloroplasts receive and fold beta-barrel transmembrane proteins through the action of polypeptide transport-associated (POTRA) domains. In Escherichia coli, folding substrates are inserted into the outer membrane by the essential protein YaeT, a prototypic Omp85 protein. Here, the articulation between tandem POTRA domains in solution is defined by nuclear magnetic resonance (NMR) spectroscopy, indicating an unprecedented juxtaposition. The novel solution orientations of all five POTRA domains are revealed by small-angle X-ray scattering of the entire 46 kDa periplasmic region. NMR titration studies show that strands from YaeT's canonical folding substrate, PhoE, bind non-specifically along alternating sides of its mixed beta sheets, thus providing an ideal platform for helping to fold nascent outer-membrane proteins. Together, this provides the first structural model of how multiple POTRA domains recruit substrates from the periplasmic solution into the outer membrane.
机译:革兰氏阴性细菌,线粒体和叶绿体的膜通过多肽运输相关(POTRA)域的作用来接收和折叠β-桶形跨膜蛋白。在大肠杆菌中,折叠底物通过必需蛋白YaeT(原型Omp85蛋白)插入外膜。在这里,溶液中的串联POTRA域之间的连接由核磁共振(NMR)光谱定义,这表明空前的并列。通过全部46 kDa周质区域的小角度X射线散射揭示了所有五个POTRA域的新颖溶液取向。 NMR滴定研究表明,来自YaeT的规范折叠底物PhoE的链沿着其混合β折叠的交替侧面非特异性结合,从而提供了一个理想的平台来帮助折叠新生的外膜蛋白。在一起,这提供了多个POTRA域如何将底物从周质溶液中吸收到外膜的第一个结构模型。

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