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牛线粒体H⁺-ATP酶中“柄”蛋白的拓扑结构与功能

Topology and function of "stalk" proteins in the bovine mitochondrial H+-ATPase.

作者信息

Joshi S, Pringle M J, Siber R

出版信息

J Biol Chem. 1986 Aug 15;261(23):10653-8.

PMID:2874142
Abstract

Proton translocating ATPases comprise a hydrophilic sector F1, a membrane sector F0, and, in the case of bovine mitochondria, a connecting "stalk" which is believed to contain the oligomycin sensitivity-conferring protein (OSCP) and coupling factor 6 (F6). The present study was undertaken to verify the accessibility of F6 and OSCP to trypsin and to examine the functional consequences of such treatment. Our data show that F1 binds equally to trypsin-treated F0 and untreated F0, but the former complexes exhibit cold lability and only partial sensitivity to oligomycin. Furthermore, these complexes fail to exhibit ATP-driven proton translocation or ATP-32Pi exchange activity. Trypsinization of F0 does not, however, inhibit passive proton conductance through the membrane sector but actually enhances it. Immunological data indicate extensive degradation of OSCP under conditions where F6 proteolysis is insignificant. Intact H+-ATPase complexes are relatively resistant to both the structural and functional effects of trypsin. We conclude that OSCP is predominantly an extrinsic protein which is shielded by F1 in the native membrane. F6 may also be an extrinsic protein but is shielded from trypsinization by OSCP and/or other F0 polypeptides. The exposed, trypsin-sensitive segments of OSCP are not required for passive proton conductance through F0 but may be required for ATP-driven reactions. We propose that bovine mitochondrial OSCP is a functional analogue of subunit b in the Escherichia coli H+-ATPase.

摘要

质子转运ATP酶由亲水性的F1部分、膜性的F0部分组成,对于牛线粒体而言,还包括一个连接“柄”,据信该柄含有赋予寡霉素敏感性的蛋白(OSCP)和偶联因子6(F6)。本研究旨在验证F6和OSCP对胰蛋白酶的可及性,并研究这种处理的功能后果。我们的数据表明,F1与经胰蛋白酶处理的F0和未处理的F0结合程度相同,但前者形成的复合物表现出冷不稳定性,且对寡霉素仅部分敏感。此外,这些复合物无法表现出ATP驱动的质子转运或ATP-32Pi交换活性。然而,F0经胰蛋白酶处理后,并不抑制通过膜部分的被动质子传导,实际上反而增强了这种传导。免疫学数据表明,在F6蛋白水解不明显的条件下,OSCP发生了广泛降解。完整的H+-ATP酶复合物对胰蛋白酶的结构和功能效应相对具有抗性。我们得出结论,OSCP主要是一种外在蛋白,在天然膜中被F1屏蔽。F6也可能是一种外在蛋白,但被OSCP和/或其他F0多肽屏蔽而免受胰蛋白酶作用。OSCP暴露的、对胰蛋白酶敏感的片段对于通过F0的被动质子传导不是必需的,但对于ATP驱动的反应可能是必需的。我们提出,牛线粒体OSCP是大肠杆菌H+-ATP酶中b亚基的功能类似物。

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