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Isothermal Environmental Heat Energy Utilization by Transmembrane Electrostatically Localized Protons at the Liquid–Membrane Interface

机译:在液体 - 膜界面处,跨膜静电局部质子的等温环境热能利用

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摘要

This study employing the latest theory on transmembrane electrostatic proton localization has now, for the first time, consistently elucidated a decades-longstanding bioenergetic conundrum in alkalophilic bacteria and more importantly discovered an entirely new feature: isothermal environmental heat utilization by electrostatically localized protons at the liquid–membrane interface. It was surprisingly revealed that the protonic motive force (equivalent to Gibbs free energy) from the isothermal environmental heat energy utilization through the electrostatically localized protons is not constrained by the overall energetics of the redox-driven proton pump system because of the following: (a) the transmembrane electrostatically localized protons are not free to move away from the membrane surface as a protonic capacitor feature; (b) the proton pumps embedded in the cell membrane extend beyond the localized proton layer apparently as an asymmetric property of the biological membrane; and (c) the protonic inlet mouth of the ATP synthase that accepts protons is located within this layer as another natural property of the asymmetric biological membrane. This work has now, for the first time, shown a novel thermotrophic feature where biological systems can isothermally utilize environmental heat energy through transmembrane electrostatically localized protons to help drive ATP synthesis.
机译:这项研究采用最新的跨膜静电质子定位理论现在已经始终阐明了数十年的碱性细菌的生物能量难题,更重要的是发现了一种完全新的特征:通过液体局部化质子在液体上的等温环境热利用。 -membrane界面。令人惊讶地揭示了通过静电局部化质子的等温环境热能利用的质子动力(相当于Gibbs自由能)不受氧化还原驱动质子泵系统的总体能量因素而受到限制:(a )静电膜静电局部化质子不会自由地远离膜表面作为质子电容器特征; (b)嵌入细胞膜中的质子泵显然延伸到局部质子层之外,作为生物膜的不对称性; (c)接受质子的ATP合成酶的质子入口口位于该层内,作为非对称生物膜的另一个自然性能。这项工作现已首次出现了一种新的热养化特征,其中生物系统可以通过跨膜静电局部化的质子等温,以帮助驱动ATP合成。

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    《ACS Omega》 |2020年第28期|共11页
  • 作者

    James Weifu Lee;

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