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牛心线粒体F1-ATP酶中的抑制位点。

Inhibition sites in F1-ATPase from bovine heart mitochondria.

作者信息

Gledhill Jonathan R, Walker John E

机构信息

Medical Research Council Dunn Human Nutrition Unit, Wellcome Trust/MRC Building, Hills Road, Cambridge CB2 2XY, UK.

出版信息

Biochem J. 2005 Mar 15;386(Pt 3):591-8. doi: 10.1042/BJ20041513.

Abstract

High-resolution crystallographic studies of a number of inhibited forms of bovine F1-ATPase have identified four independent types of inhibitory site: the catalytic site, the aurovertin B-binding site, the efrapeptin-binding site and the site to which the natural inhibitor protein IF1 binds. Hitherto, the binding sites for other inhibitors, such as polyphenolic phytochemicals, non-peptidyl lipophilic cations and amphiphilic peptides, have remained undefined. By employing multiple inhibition analysis, we have identified the binding sites for these compounds. Several of them bind to the known inhibitory sites. The amphiphilic peptides melittin and synthetic analogues of the mitochondrial import pre-sequence of yeast cytochrome oxidase subunit IV appear to mimic the natural inhibitor protein, and the polyphenolic phytochemical inhibitors resveratrol and piceatannol compete for the aurovertin B-binding site (or sites). The non-peptidyl lipophilic cation rhodamine 6G acts at a separate unidentified site, indicating that there are at least five inhibitory sites in the F1-ATPase. Each of the above inhibitors has significantly different activity against the bacterial Bacillus PS3 alpha3beta3gamma subcomplex compared with that observed with bovine F1-ATPase. IF1 does not inhibit the bacterial enzyme, even in the absence of the epsilon-subunit. An understanding of these inhibitors may enable rational development of therapeutic agents to act as novel antibiotics against bacterial ATP synthases or for the treatment of several disorders linked to the regulation of the ATP synthase, including ischaemia-reperfusion injury and some cancers.

摘要

对多种抑制形式的牛F1 - ATP酶进行的高分辨率晶体学研究,已鉴定出四种独立类型的抑制位点:催化位点、金褐霉素B结合位点、埃弗拉菌素结合位点以及天然抑制蛋白IF1结合的位点。迄今为止,其他抑制剂的结合位点,如多酚类植物化学物质、非肽基亲脂性阳离子和两亲性肽的结合位点仍未明确。通过采用多重抑制分析,我们确定了这些化合物的结合位点。其中几种化合物结合到已知的抑制位点。两亲性肽蜂毒肽和酵母细胞色素氧化酶亚基IV线粒体导入前序列的合成类似物似乎模拟了天然抑制蛋白,多酚类植物化学抑制剂白藜芦醇和云杉新苷竞争金褐霉素B结合位点。非肽基亲脂性阳离子罗丹明6G作用于一个单独的未明确位点,这表明F1 - ATP酶中至少有五个抑制位点。与牛F1 - ATP酶相比,上述每种抑制剂对细菌芽孢杆菌PS3 α3β3γ亚复合物的活性都有显著差异。即使在没有ε亚基的情况下,IF1也不会抑制细菌酶。对这些抑制剂的了解可能有助于合理开发治疗药物,作为针对细菌ATP合酶的新型抗生素,或用于治疗与ATP合酶调节相关的几种疾病,包括缺血再灌注损伤和某些癌症。

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