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苹果酸脱氢酶的结合及NADH通道作用与复合体I的关系。

Binding of malate dehydrogenase and NADH channelling to complex I.

作者信息

Ovádi J, Huang Y, Spivey H O

机构信息

Institute of Enzymology, Hungarian Academy of Sciences, Budapest.

出版信息

J Mol Recognit. 1994 Dec;7(4):265-72. doi: 10.1002/jmr.300070405.

Abstract

As previously reported, mitochondrial malate dehydrogenase (MDH) binds to purified complex I of the electron transport system. With conditions used in previous reports, MDH binds even more extensively, but probably predominantly non-specifically, to the matrix side of the inner mitochondrial membrane of submitochondrial particles (SMP). Herein we report experimental conditions for highly specific binding of malate dehydrogenase to complex I within SMP. These conditions permit us to demonstrate NADH channelling from malate dehydrogenase to complex I using the competing reaction test. This test, though not ideal for all situations, has several advantages over the enzyme buffering test previously used. These advantages should facilitate further studies elucidating NADH channelling to complex I from MDH and other dehydrogenases. Independent evidence of NADH channelling to the electron transport chain and the potential advantages of substrate channelling in general are also discussed. Substrate channelling from MDH in particular may be especially beneficial because of the unfavourable equilibrium and kinetics of this enzyme reaction.

摘要

如先前报道,线粒体苹果酸脱氢酶(MDH)可与电子传递系统的纯化复合物I结合。在先前报道所使用的条件下,MDH与亚线粒体颗粒(SMP)线粒体内膜的基质侧结合得更为广泛,但可能主要是非特异性结合。在此我们报道了苹果酸脱氢酶与SMP内复合物I高度特异性结合的实验条件。这些条件使我们能够通过竞争反应试验证明NADH从苹果酸脱氢酶向复合物I的通道作用。该试验虽然并非适用于所有情况,但相对于先前使用的酶缓冲试验具有几个优点。这些优点应有助于进一步研究阐明NADH从MDH和其他脱氢酶向复合物I的通道作用。还讨论了NADH向电子传递链通道作用的独立证据以及一般底物通道作用的潜在优势。由于该酶反应的不利平衡和动力学,特别是来自MDH的底物通道作用可能特别有益。

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