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与抗生素抑制剂奥佛汀B复合的牛F1-ATP酶的结构。

The structure of bovine F1-ATPase complexed with the antibiotic inhibitor aurovertin B.

作者信息

van Raaij M J, Abrahams J P, Leslie A G, Walker J E

机构信息

Medical Research Council Laboratory of Molecular Biology, Cambridge, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 1996 Jul 9;93(14):6913-7. doi: 10.1073/pnas.93.14.6913.

Abstract

In the structure of bovine mitochondrial F1-ATPase that was previously determined with crystals grown in the presence of adenylyl-imidodiphosphate (AMP-PNP) and ADP, the three catalytic beta-subunits have different conformations and nucleotide occupancies. Adenylyl-imidodiphosphate is bound to one beta-subunit (betaTP), ADP is bound to the second (betaDP), and no nucleotide is bound to the third (betaE). Here we show that the uncompetitive inhibitor aurovertin B binds to bovine F1 at two equivalent sites in betaTP and betaE, in a cleft between the nucleotide binding and C-terminal domains. In betaDP, the aurovertin B pocket is incomplete and is inaccessible to the inhibitor. The aurovertin B bound to betaTP interacts with alpha-Glu399 in the adjacent alphaTP subunit, whereas the aurovertin B bound to betaE is too distant from alphaE to make an equivalent interaction. Both sites encompass betaArg-412, which was shown by mutational studies to be involved in binding aurovertin. Except for minor changes around the aurovertin pockets, the structure of bovine F1-ATPase is the same as determined previously. Aurovertin B appears to act by preventing closure of the catalytic interfaces, which is essential for a catalytic mechanism involving cyclic interconversion of catalytic sites.

摘要

在先前利用在腺苷酰亚胺二磷酸(AMP-PNP)和ADP存在下生长的晶体确定的牛线粒体F1-ATP酶结构中,三个催化β亚基具有不同的构象和核苷酸占据情况。腺苷酰亚胺二磷酸结合到一个β亚基(βTP)上,ADP结合到第二个β亚基(βDP)上,而第三个β亚基(βE)没有结合核苷酸。在此我们表明,非竞争性抑制剂金褐霉素B在βTP和βE的两个等效位点结合到牛F1上,位于核苷酸结合域和C末端结构域之间的裂隙中。在βDP中,金褐霉素B口袋不完整,抑制剂无法进入。结合到βTP上的金褐霉素B与相邻αTP亚基中的α-Glu399相互作用,而结合到βE上的金褐霉素B与αE距离太远,无法进行等效相互作用。两个位点都包含β-Arg-412,突变研究表明该位点参与金褐霉素的结合。除了金褐霉素口袋周围的微小变化外,牛F1-ATP酶的结构与先前确定的相同。金褐霉素B似乎通过阻止催化界面的闭合起作用,这对于涉及催化位点循环相互转化的催化机制至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/550b/38908/68c9836bf20f/pnas01518-0079-a.jpg

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