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在酵母线粒体中存在15K蛋白的情况下,ATP酶抑制剂和9K蛋白与F1F0 - ATP酶的同时结合。

Simultaneous bindings of ATPase inhibitor and 9K protein to F1F0-ATPase in the presence of 15K protein in yeast mitochondria.

作者信息

Hashimoto T, Yoshida Y, Tagawa K

机构信息

Department of Physiological Chemistry, Medical School, Osaka University.

出版信息

J Biochem. 1990 Jul;108(1):17-20. doi: 10.1093/oxfordjournals.jbchem.a123154.

Abstract

Yeast mitochondrial ATP synthase has three regulatory proteins, ATPase inhibitor, 9K protein, and 15K protein. The 9K protein binds directly to purified F1-ATPase, as does the ATPase inhibitor, but the 15K protein does not [Hashimoto, T. et al. (1987) J. Biochem. 102, 685-692]. In the present study, we found that 15K protein bound to purified F1F0-ATPase, forming an equimolar complex with the enzyme. The apparent dissociation constant was calculated to be 1.4 x 10(-5) M. The ATPase inhibitor and 9K protein also bound to F1F0-ATPase in the presence of ATP and Mg2+, and the dissociation constants of their bindings were about 3 X 10(-6) M. They bound to the enzyme competitively in the absence of 15K protein, but in its presence, they bound in equimolar amounts to the enzyme. The ATP-hydrolyzing activity of the enzyme-ligand complex was greatly influenced by the order of bindings of ATPase inhibitor and 9K protein: when the ATPase inhibitor was bound first, the activity of the enzyme was inhibited completely and was not restored by 9K protein, but when 9K protein was added first, the activity was inhibited only partially even after equimolar binding of the ATPase inhibitor to the enzyme. These observations strongly suggest that the 15K protein binds to the F0 part and functions to hold the ATPase inhibitor or 9K protein on the F1 subunit.

摘要

酵母线粒体ATP合酶有三种调节蛋白,即ATP酶抑制剂、9K蛋白和15K蛋白。9K蛋白与纯化的F1-ATP酶直接结合,ATP酶抑制剂也是如此,但15K蛋白则不然[桥本,T.等人(1987年)《生物化学杂志》102卷,685 - 692页]。在本研究中,我们发现15K蛋白与纯化的F1F0-ATP酶结合,与该酶形成等摩尔复合物。计算得出其表观解离常数为1.4×10⁻⁵ M。在ATP和Mg²⁺存在的情况下,ATP酶抑制剂和9K蛋白也与F1F0-ATP酶结合,它们结合的解离常数约为3×10⁻⁶ M。在没有15K蛋白时,它们竞争性地与该酶结合,但在有15K蛋白存在时,它们以等摩尔量与该酶结合。酶 - 配体复合物的ATP水解活性受ATP酶抑制剂和9K蛋白结合顺序的极大影响:当首先结合ATP酶抑制剂时,酶的活性被完全抑制,且9K蛋白不能使其恢复,但当首先加入9K蛋白时,即使ATP酶抑制剂与酶等摩尔结合后,活性也仅被部分抑制。这些观察结果强烈表明,15K蛋白与F0部分结合,并起到将ATP酶抑制剂或9K蛋白固定在F1亚基上的作用。

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