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锌离子对线粒体ATP酶抑制蛋白IF1活性及结合的影响。

Effects of Zn2+ on the activity and binding of the mitochondrial ATPase inhibitor protein, IF1.

作者信息

Rouslin W, Broge C W, Chernyak B V

机构信息

Department of Pharmacology and Cell Biophysics, University of Cincinnati College of Medicine, Ohio 45267-0575.

出版信息

J Bioenerg Biomembr. 1993 Jun;25(3):297-306. doi: 10.1007/BF00762590.

Abstract

Zn2+ caused a noninhibitory binding of IF1 to mitochondrial membranes in both rabbit heart SMP and intact rabbit heart mitochondria. This Zn(2+)-induced IF1 binding required the presence of at least trace amounts of MgATP and was essentially independent of pH between 6.2 and 8.2. Addition of Zn2+ after the formation of fully inhibited IF1-ATPase complexes very slowly reversed IF1-mediated ATPase inhibition without causing significant IF1 release from the membranes. When Zn2+ was added during the state 4 energization of ischemic mitochondria in which IF1 was already functionally bound, it slowed somewhat energy-driven ATPase activation. This slowing was probably due to the fairly large depressing effect Zn2+ had upon membrane potential development, but Zn2+ did not decrease the degree of ATPase activation eventually reached at 20 min of state 4 incubation. Zn2+ also preempted normal IF1 release from the membranes, causing what little inhibitor that was released to rebind to the enzyme in noninhibitory IF1-ATPase complexes. The data suggest that IF1 can interact with the ATPase in two ways of through two kinds of sites: (a) a noninhibitory interaction involving a non-inhibitory IF1 conformation and/or an IF1 docking site on the enzyme and (b) an inhibitory interaction involving an inhibitory IF1 conformation and/or a distinct ATPase activity regulatory site. Zn2+ appears to have the dual effect of stabilizing the noninhibitory IF1-ATPase interaction and possibly a noninhibitory IF1 conformation while concomitantly preventing the formation of an inhibitory IF1-ATPase interaction and possibly an inhibitory IF1 conformation, regardless of pH. While the data do not rule out direct effects of Zn2+ on either free IF1 or the free enzyme, they suggest that Zn2+ cannot interact readily with either the inhibitor or the enzyme once functional IF1-ATPase complexes are formed.

摘要

锌离子在兔心脏亚线粒体颗粒(SMP)和完整的兔心脏线粒体中均导致抑制因子1(IF1)与线粒体膜发生非抑制性结合。这种锌离子诱导的IF1结合需要至少微量的MgATP存在,并且在6.2至8.2的pH范围内基本不受pH影响。在完全抑制的IF1 - ATP酶复合物形成后添加锌离子,能非常缓慢地逆转IF1介导的ATP酶抑制作用,且不会导致IF1从膜上显著释放。当在缺血线粒体的状态4供能过程中添加锌离子时(此时IF1已功能性结合),它会稍微减缓能量驱动的ATP酶激活。这种减缓可能是由于锌离子对膜电位发展有相当大的抑制作用,但锌离子并未降低在状态4孵育20分钟时最终达到的ATP酶激活程度。锌离子还阻止了IF1从膜上正常释放,导致释放出的少量抑制剂重新结合到酶上,形成非抑制性的IF1 - ATP酶复合物。数据表明,IF1可以通过两种方式与ATP酶相互作用,涉及两种位点:(a)一种非抑制性相互作用,涉及非抑制性的IF1构象和/或酶上的IF1对接位点;(b)一种抑制性相互作用,涉及抑制性的IF1构象和/或一个独特的ATP酶活性调节位点。锌离子似乎具有双重作用,即稳定非抑制性的IF1 - ATP酶相互作用以及可能的非抑制性IF1构象,同时无论pH如何,都能阻止抑制性IF1 - ATP酶相互作用以及可能的抑制性IF1构象的形成。虽然数据不排除锌离子对游离IF1或游离酶的直接作用,但它们表明一旦形成功能性的IF1 - ATP酶复合物,锌离子就不能轻易与抑制剂或酶相互作用。

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