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前OmpA成熟结构域在转运ATP酶反应中的作用。

The role of the mature domain of proOmpA in the translocation ATPase reaction.

作者信息

Bassilana M, Arkowitz R A, Wickner W

机构信息

Molecular Biology Institute, University of California, Los Angeles 90024-1570.

出版信息

J Biol Chem. 1992 Dec 15;267(35):25246-50.

PMID:1460025
Abstract

The export of proOmpA, the precursor of outer membrane protein A from Escherichia coli, requires preprotein translocase, which is comprised of SecA, SecY/E, and acidic phospholipids. Previous studies of proOmpA translocation intermediates (Schiebel, E., Driessen, A. J. M., Hartl, F.-U., and Wickner, W. (1991) Cell 64, 927-939) suggested that the "slippage" of the translocating polypeptide chain and the high level of ATP hydrolysis, characteristic of the "translocation ATPase," were part of a futile cycle. To examine the role of the mature domain of proOmpA in its translocation-dependent ATP hydrolysis, we used chemical cleavage to generate NH2-terminal fragments of this preprotein. Each fragment contained the 21-residue leader region and either 53 or 228 residues of the mature domain (preproteins P74 and P249, respectively). As observed with full-length proOmpA, the translocation of each fragment requires ATP and both the SecA and SecY/E domains of translocase and is stimulated by the transmembrane proton electrochemical gradient. The apparent maximal velocities of P74 and proOmpA translocation are similar. While the translocation of P74 and of proOmpA show the same apparent Km for ATP, far less ATP is hydrolyzed during the translocation of P74. Thus, the mature carboxyl-terminal domain of proOmpA has a major role in supporting the translocation ATPase.

摘要

外膜蛋白A的前体proOmpA从大肠杆菌的输出需要前体蛋白转位酶,它由SecA、SecY/E和酸性磷脂组成。之前对proOmpA转位中间体的研究(Schiebel, E., Driessen, A. J. M., Hartl, F.-U., and Wickner, W. (1991) Cell 64, 927 - 939)表明,转位多肽链的“滑移”以及“转位ATP酶”特有的高水平ATP水解是无效循环的一部分。为了研究proOmpA成熟结构域在其依赖转位的ATP水解中的作用,我们使用化学切割来生成该前体蛋白的氨基末端片段。每个片段都包含21个残基的前导区以及成熟结构域的53个或228个残基(分别为前体蛋白P74和P249)。正如全长proOmpA所观察到的那样,每个片段的转位都需要ATP以及转位酶的SecA和SecY/E结构域,并且受到跨膜质子电化学梯度的刺激。P74和proOmpA转位的表观最大速度相似。虽然P74和proOmpA的转位对ATP表现出相同的表观Km,但在P74转位过程中水解的ATP要少得多。因此,proOmpA成熟的羧基末端结构域在支持转位ATP酶方面起主要作用。

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