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MECHANISM AND HYDROPHOBIC FORCES DRIVING MEMBRANE PROTEIN INSERTION OF SUBUNIT II OF CYTOCHROME BO OXIDASE

机译:细胞色素BO氧化酶II亚基的机制和疏水力驱动膜蛋白的插入

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摘要

Subunit II (CyoA) of cytochrome bo oxidase, which spans the inner membrane twice in bacteria, has several unusual features in membrane biogenesis. It is synthesized with an amino-terminal signal peptide. In addition, distinct pathways are used to insert the two ends of the protein. The amino-terminal domain is inserted by the YidC pathway whereas the large carboxyl-terminal domain is translocated by the SecYEG pathway. Insertion of the protein is also pmf-independent. In this study we examined the topogenic requirements and mechanism of insertion of CyoA in bacteria. We find that both the signal peptide and the first membrane spanning region are required for insertion of the amino-terminal periplasmic loop. The pmf-independence of insertion of the first periplasmic loop is due to the loop’s neutral net charge. We observe also that the introduction of negatively charged residues into the periplasmic loop makes insertion pmf dependent, whereas the addition of positively charged residues prevents insertion unless the pmf is abolished. Insertion of the carboxyl-terminal domain in the full-length CyoA occurs by a sequential mechanism even when the CyoA amino and carboxyl-terminal domains are swapped with other domains. However, when a long spacer peptide is added to increase the distance between the amino-terminal and carboxyl-terminal domains, insertion no longer occurs by a sequential mechanism.
机译:细胞色素bo氧化酶的亚基II(CyoA)在细菌中跨过内膜两次,在膜生物发生中具有一些不同寻常的特征。它与氨基末端信号肽合成。另外,不同的途径用于插入蛋白质的两个末端。氨基末端结构域是通过YidC途径插入的,而较大的羧基末端结构域是通过SecYEG途径插入的。蛋白质的插入也与pmf无关。在这项研究中,我们检查了细菌中CyoA的拓扑学要求和插入机理。我们发现,信号肽和第一个跨膜区域都是氨基末端周质环插入所必需的。第一个周质环插入的pmf独立性是由于环的中性净电荷所致。我们还观察到,将带负电荷的残基引入周质环使插入取决于pmf,而除非带pmf被废除,否则添加带正电荷的残基会阻止插入。羧基末端结构域在全长CyoA中的插入是通过顺序机制发生的,即使CyoA氨基和羧基末端结构域与其他结构域交换也是如此。然而,当添加长间隔肽以增加氨基末端和羧基末端结构域之间的距离时,插入不再通过顺序机制发生。

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