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[氧化与磷酸化的偶联机制]

[Mechanism of coupling of oxidation and phosphorylation].

作者信息

Dmitriev L F

出版信息

Mol Biol (Mosk). 1986 Jul-Aug;20(4):1111-25.

PMID:3531812
Abstract

The mechanism of the energy coupling process proposed in the present investigation is based on energy transformation with participation of chemical intermediates, paramagnetic molecules formed in unsaturated fatty acid chains of the phospholipid membrane. The proposed mechanism is a modification of the chemical-intermediate hypothesis, with energy-rich lipid radicals serving as an intermediate. Although there are some points of inconsistency with the chemiosmic theory and Williams's hypothesis about the energy-rich proton, the proposed mechanism accounts for the delta mu H+ gradient and intramembrane proton during the coupling process in oxidative phosphorylation. The existence of the delta mu H+ gradient and its variation during phosphorylation may be a way of oxidative control realization.

摘要

本研究中提出的能量偶联过程机制基于化学中间体参与的能量转换,这些化学中间体是在磷脂膜不饱和脂肪酸链中形成的顺磁分子。所提出的机制是对化学中间体假说的一种修正,以富含能量的脂质自由基作为中间体。尽管与化学渗透理论以及威廉姆斯关于富含能量质子的假说存在一些不一致之处,但所提出的机制解释了氧化磷酸化偶联过程中的ΔμH⁺梯度和膜内质子情况。ΔμH⁺梯度的存在及其在磷酸化过程中的变化可能是实现氧化控制的一种方式。

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