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质子电化学势的产生及其在能量转导中的作用。

The generation of the proton electrochemical potential and its role in energy transduction.

作者信息

Azzone G F, Massari S, Pozzan T

出版信息

Mol Cell Biochem. 1977 Sep 9;17(2):101-12. doi: 10.1007/BF01743433.

Abstract

The evidence that all energy transducing membranes can generate a proton electrochemical potential difference, delta micronH, across the membrane and that this potential can be used to transfer energy among energy transducing units and to generate ATP, has increased the interest for the view that delta micronH plays an obligatory role in energy transduction and ATP synthesis. In the present article we shall concentrate on two experimental questions related with the generation and role of delta micronH: (a) the charge/site ratio; (b) the relation between the proton electrochemical potential on one side and the cation electrochemical potential, the phosphate potential and the redox potential on the other. We shall then discuss the view that energy transduction corresponds to a molecular energy machine rather than to a fuel cell.

摘要

所有能量转换膜都能在膜两侧产生质子电化学势差(ΔμH),且该电势可用于在能量转换单元之间传递能量并合成ATP,这一证据使得人们对ΔμH在能量转换和ATP合成中起关键作用的观点更感兴趣。在本文中,我们将专注于两个与ΔμH的产生和作用相关的实验问题:(a)电荷/位点比;(b)一侧的质子电化学势与另一侧的阳离子电化学势、磷酸势和氧化还原势之间的关系。然后我们将讨论能量转换对应于分子能量机器而非燃料电池的观点。

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