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线粒体静息态呼吸的调节:滑脱、泄漏、异质性?

Regulation of mitochondrial resting state respiration: slip, leak, heterogeneity?

作者信息

Wojtczak L, Bogucka K, Duszyński J, Zabłocka B, Zółkiewska A

机构信息

Department of Cellular Biochemistry, Nencki Institute of Experimental Biology, Warsaw, Poland.

出版信息

Biochim Biophys Acta. 1990 Jul 25;1018(2-3):177-81. doi: 10.1016/0005-2728(90)90243-w.

Abstract

The contribution of molecular slippage of proton pumps, of proton leak and of coupling heterogeneity of mitochondrial population to the well-known non-linear interrelationship between resting state respiration and the protonmotive force is discussed in view of the following experimental findings. (1) After blocking mitochondrial respiration with cyanide, the rate of dissipation of the membrane potential is non-linearly dependent on the actual membrane potential, similarly to the resting state respiration in mitochondria titrated with small amounts of an inhibitor. In contrast, delta pH dissipates proportionally to its actual value. (2) The rate of electron flow from succinate to ferricyanide depends upon the protonmotive force, similarly to the flow from succinate to oxygen. This strongly suggests that the H+/e- stoichiometry in complexes III and IV of the respiratory chain is constant. (3) Mitochondria 'in situ', in permeabilized Ehrlich ascites cells, exhibit the same non-linear flux/force relationship as isolated mitochondria. These results strongly suggest that the non-ohmic characteristics of the inner mitochondrial membrane, with respect to protons driven by the membrane potential but not by the concentration gradient, is the main factor responsible for the nonlinear flux/force relationship in resting state mitochondria.

摘要

鉴于以下实验发现,本文讨论了质子泵分子滑移、质子泄漏以及线粒体群体偶联异质性对静息态呼吸与质子动力之间著名的非线性相互关系的贡献。(1)用氰化物阻断线粒体呼吸后,膜电位的耗散速率与实际膜电位呈非线性相关,这与用少量抑制剂滴定的线粒体中的静息态呼吸情况类似。相比之下,ΔpH与其实际值成比例地耗散。(2)从琥珀酸到铁氰化物的电子流速率取决于质子动力,这与从琥珀酸到氧气的电子流情况类似。这强烈表明呼吸链复合物III和IV中的H⁺/e⁻化学计量是恒定的。(3)在通透的艾氏腹水细胞中的“原位”线粒体,与分离的线粒体表现出相同的非线性通量/力关系。这些结果强烈表明,线粒体内膜对于由膜电位而非浓度梯度驱动的质子的非欧姆特性,是静息态线粒体中非线性通量/力关系的主要原因。

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