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Escherichia coli translocase: the unravelling of a molecular machine:the unravelling of a molecular machine

机译:大肠杆菌转位酶:分子机器的解体:分子机器的解体

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摘要

Protein translocation across the bacterial cytoplasmic membrane has been studied extensively in Escherichia coli. The identification of the components involved and subsequent reconstitution of the purified translocation reaction have defined the minimal constituents that allowed extensive biochemical characterization of the so-called translocase. This functional enzyme complex consists of the SecYEG integral membrane protein complex and a peripherally bound ATPase, SecA. Under translocation conditions, four SecYEG heterotrimers assemble into one large protein complex, forming a putative protein-conducting channel. This tetrameric arrangement of SecYEG complexes and the highly dynamic SecA dimer together form a proton-motive force- and ATP-driven molecular machine that drives the stepwise translocation of targeted polypeptides across the cytoplasmic membrane. Recent findings concerning the translocase structure and mechanism of protein translocation are discussed and shine new light on controversies in the field.
机译:跨细菌细胞质膜的蛋白质易位已在大肠杆菌中进行了广泛研究。所涉及的成分的鉴定以及纯化的易位反应的随后重构已经定义了允许对所谓的转位酶进行广泛生物化学表征的最小成分。这种功能性酶复合物由SecYEG整体膜蛋白复合物和外围结合的ATPase SecA组成。在易位条件下,四种SecYEG异源三聚体组装成一个大的蛋白质复合物,形成推定的蛋白质传导通道。 SecYEG复合体的这种四聚体排列和高度动态的SecA二聚体一起形成了质子动力和ATP驱动的分子机器,该分子机器驱动了目标多肽在细胞质膜上的逐步转运。讨论了有关转位酶结构和蛋白质易位机制的最新发现,并为该领域的争议提供了新的思路。

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