首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Introduction of protonic potential of Bronsted - Lowry acids and bases to the quantification of the energy of proton translocation and elucidation of oxidative phosphorylation
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Introduction of protonic potential of Bronsted - Lowry acids and bases to the quantification of the energy of proton translocation and elucidation of oxidative phosphorylation

机译:推出勃朗斯特 - 洛氏酸的质子势和基于质子易位能量的量化和氧化磷酸化的能量

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摘要

ATP synthesis in mitochondria is driven by the pH gradient between lipid membranes, and a proton-motive force (PMF) forms along the respiratory electron-transport chain. The reasons for these phenomena remain unclear. In an unbuffered quinone solution, acids induce the formation of new cathodic peaks, whose peak potential is dependent on their pK(a). Thus, the protons of acids have a potential defined as "protonic potential." Herein, the energy of proton translocation was easily quantified by protonic potential. We observed that the redox potential of chemical reactions can be transformed into the protonic potential of Bronsted - Lowry acids and bases in an unbuffered solution. We postulated that in the mitochondrial membrane, the redox potential of the respiratory chain can be transformed to protonic potential and that the PMF originates from the protonic potential difference between compounds. Ultimately, the protonic potential energy derived from redox reactions was stored in the ATP. (C) 2020 Elsevier B.V. All rights reserved.
机译:线粒体中的ATP合成是由脂膜之间的pH梯度驱动,沿着呼吸电子传输链形成质子动力(PMF)。这些现象的原因仍然不清楚。在一个无缓冲的醌溶液中,酸诱导形成新的阴极峰,其峰值电位取决于它们的PK(A)。因此,酸的质子具有定义为“质子势”的潜在电位。这里,通过质子电位容易地量化质子易位的能量。我们观察到,化学反应的氧化还原电位可以转化为勃朗斯特 - Lowry酸的质子势,并在不缓冲的溶液中的碱基。我们假设在线粒体膜中,呼吸链的氧化还原电位可以转化为质子电位,并且PMF源自化合物之间的质子电位差异。最终,衍生自氧化还原反应的质子势能储存在ATP中。 (c)2020 Elsevier B.v.保留所有权利。

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