Yaguzhinsky Lev S, Yurkov Vladimir I, Krasinskaya Inna P
Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, 119992, Moscow, Russia.
Biochim Biophys Acta. 2006 May-Jun;1757(5-6):408-14. doi: 10.1016/j.bbabio.2006.04.001. Epub 2006 Apr 7.
This paper is an overview of the theoretical and experimental studies performed in our laboratory to answer the question whether there exist conditions where the hypothetical mechanism of the localized coupling of respiration and phosphorylation postulated by R. Williams in 1961 operates. These studies were undertaken to verify the earlier suggestion that mitochondria may exist in two structural and functional states. Correspondingly, there are two operation modes of oxidative phosphorylation, one of which corresponds to the Williams' mechanism of localized coupling and the other, to the Mitchell's mechanism of delocalized coupling. The paper considers the principle of the energy conservation of oxidative reactions in mitochondrial membranes in the form of the thermodynamic potential of hydrogen ions (Deltamusol) lacking, in part, the solvation shell. We present experimental evidence for the existence of the mechanism of localized coupling and describes the conditions favorable for its implementation. The experiments described in this paper show that the aforementioned models for proton coupling are not necessarily alternative. A conclusion is made that, depending on the particular conditions, either localized or delocalized coupling mechanisms of oxidative phosphorylation may come into operation.
本文概述了我们实验室进行的理论和实验研究,以回答1961年R. 威廉姆斯提出的呼吸与磷酸化局部偶联的假设机制是否存在适用条件这一问题。这些研究旨在验证早期的观点,即线粒体可能存在两种结构和功能状态。相应地,氧化磷酸化有两种运作模式,其中一种对应威廉姆斯的局部偶联机制,另一种对应米切尔的非局部偶联机制。本文探讨了线粒体膜中氧化反应以部分缺乏溶剂化层的氢离子热力学势(Δμsol)形式存在的能量守恒原理。我们提供了局部偶联机制存在的实验证据,并描述了有利于其实现的条件。本文所述实验表明,上述质子偶联模型不一定相互排斥。得出的结论是,根据具体条件,氧化磷酸化的局部或非局部偶联机制都可能起作用。