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线粒体氧化磷酸化中四个膜系统的稳态偶联

Steady-state coupling of four membrane systems in mitochondrial oxidative phosphorylation.

作者信息

Hill T L

出版信息

Proc Natl Acad Sci U S A. 1979 May;76(5):2236-8. doi: 10.1073/pnas.76.5.2236.

Abstract

According to Alexandre, Reynafarje, and Lehninger, four different membrane systems are involved, with definite stoichiometry, in the mitochondrial synthesis of ATP by electron transport, via proton transport. We adopt this model and pursue some of its thermodynamic consequences. At steady state, each of the four systems must have the same flux J through the membrane and the overall thermodynamic force X for oxidative phosphorylation is the sum of the four separate forces. From these properties, using an empirical linear flux-force relation for each system, it is easy to obtain J as a function of X. In turn, X depends on the inside [NAD+]/[NADH] and the outside [ATP]/[ADP][Pi] quotients (and on the pH inside). Thus, J is related to these quotients. The relationship we derive is similar to that described by Erecińska and Wilson, as deduced from a quite different model of oxidative phosphorylation. Proton transport is involved explicitly in three of the four systems of the present model. However, because of the steady-state stoichiometric coupling of the four systems, proton transport does not appear in the overall reaction. On the other hand, Erecińska and Wilson use, in their model, a direct connection between electron transport and ATP synthesis. The present paper demonstrates that J can be related to the quotients mentioned above without this direct connection.

摘要

根据亚历山大、雷尼亚法尔热和莱宁格的观点,在通过质子转运进行电子传递从而在线粒体中合成ATP的过程中,涉及四种不同的膜系统,且具有确定的化学计量关系。我们采用这个模型并探讨其一些热力学结果。在稳态下,四个系统中的每一个通过膜的通量J必须相同,并且氧化磷酸化的整体热力学力X是四个单独力的总和。根据这些性质,利用每个系统的经验线性通量 - 力关系,很容易得到J作为X的函数。反过来,X取决于内部的[NAD⁺]/[NADH]和外部的[ATP]/[ADP][Pi]商(以及内部的pH值)。因此,J与这些商相关。我们推导的关系类似于埃雷钦斯卡和威尔逊所描述的关系,他们是从一个完全不同的氧化磷酸化模型推导出来的。质子转运明确地参与了本模型四个系统中的三个。然而,由于四个系统的稳态化学计量耦合,质子转运在整体反应中并不出现。另一方面,埃雷钦斯卡和威尔逊在他们的模型中使用了电子传递和ATP合成之间的直接联系。本文表明,即使没有这种直接联系,J也可以与上述商相关。

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