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叶绿体ATP合酶ε亚基的C末端结构域对于ATP合成并非必需。

The C-terminal domain of the epsilon subunit of the chloroplast ATP synthase is not required for ATP synthesis.

作者信息

Nowak Kristine F, Tabidze Vazha, McCarty Richard E

机构信息

Department of Biology, Johns Hopkins University, Baltimore, Maryland 21218-2685, USA.

出版信息

Biochemistry. 2002 Dec 24;41(51):15130-4. doi: 10.1021/bi026594v.

Abstract

The epsilon subunit of the ATP synthases from chloroplasts and Escherichia coli regulates the activity of the enzyme and is required for ATP synthesis. The epsilon subunit is not required for the binding of the catalytic portion of the chloroplast ATP synthase (CF1) to the membrane-embedded part (CFo). Thylakoid membranes reconstituted with CF1 lacking its epsilon subunit (CF1-epsilon) have high ATPase activity and no ATP synthesis activity, at least in part because the membranes are very leaky to protons. Either native or recombinant epsilon subunit inhibits ATPase activity and restores low proton permeability and ATP synthesis. In this paper we show that recombinant epsilon subunit from which 45 amino acids were deleted from the C-terminus is as active as full-length epsilon subunit in restoring ATP synthesis to membranes containing CF1-epsilon. However, the truncated form of the epsilon subunit was significantly less effective as an inhibitor of the ATPase activity of CF1-epsilon, both in solution and bound to thylakoid membranes. Thus, the C-terminus of the epsilon subunit is more involved in regulation of activity, by inhibiting ATP hydrolysis, than in ATP synthesis.

摘要

叶绿体和大肠杆菌ATP合酶的ε亚基可调节该酶的活性,是ATP合成所必需的。ε亚基对于叶绿体ATP合酶(CF1)的催化部分与膜嵌入部分(CFo)的结合并非必需。用缺乏ε亚基的CF1(CF1-ε)重构的类囊体膜具有较高的ATP酶活性,且无ATP合成活性,至少部分原因是这些膜对质子的通透性非常高。天然或重组的ε亚基均可抑制ATP酶活性,并恢复低质子通透性和ATP合成。在本文中,我们表明从C末端缺失45个氨基酸的重组ε亚基在恢复含CF1-ε的膜的ATP合成方面与全长ε亚基一样具有活性。然而,无论是在溶液中还是与类囊体膜结合时,ε亚基的截短形式作为CF1-ε的ATP酶活性抑制剂的效果都明显较差。因此,ε亚基的C末端在通过抑制ATP水解来调节活性方面比在ATP合成方面发挥着更重要的作用。

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