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木醋杆菌中钠(Na⁺)生物能量学的来龙去脉。

The ins and outs of Na(+) bioenergetics in Acetobacterium woodii.

作者信息

Schmidt Silke, Biegel Eva, Müller Volker

机构信息

Institute of Molecular Biosciences, Johann Wolfgang Goethe University, Frankfurt am Main, Germany.

出版信息

Biochim Biophys Acta. 2009 Jun;1787(6):691-6. doi: 10.1016/j.bbabio.2008.12.015. Epub 2009 Jan 8.

Abstract

The acetogenic bacterium Acetobacterium woodii uses a transmembrane electrochemical sodium ion potential for bioenergetic reactions. A primary sodium ion potential is established during carbonate (acetogenesis) as well as caffeate respiration. The electrogenic Na(+) pump connected to the Wood-Ljungdahl pathway (acetogenesis) still remains to be identified. The pathway of caffeate reduction with hydrogen as electron donor was investigated and the only membrane-bound activity was found to be a ferredoxin-dependent NAD(+) reduction. This exergonic electron transfer reaction may be catalyzed by the membrane-bound Rnf complex that was discovered recently and is suggested to couple exergonic electron transfer from ferredoxin to NAD(+) to the vectorial transport of Na(+) across the cytoplasmic membrane. Rnf may also be involved in acetogenesis. The electrochemical sodium ion potential thus generated is used to drive endergonic reactions such as flagellar rotation and ATP synthesis. The ATP synthase is a member of the F(1)F(O) class of enzymes but has an unusual and exceptional feature. Its membrane-embedded rotor is a hybrid made of F(O) and V(O)-like subunits in a stoichiometry of 9:1. This stoichiometry is apparently not variable with the growth conditions. The structure and function of the Rnf complex and the Na(+) F(1)F(O) ATP synthase as key elements of the Na(+) cycle in A. woodii are discussed.

摘要

产乙酸细菌伍氏乙酸杆菌利用跨膜电化学钠离子电位进行生物能反应。在碳酸盐(产乙酸过程)以及咖啡酸呼吸过程中建立了初级钠离子电位。与伍德-Ljungdahl途径(产乙酸过程)相关的电致钠离子泵仍有待确定。研究了以氢气作为电子供体还原咖啡酸的途径,发现唯一的膜结合活性是铁氧化还原蛋白依赖性的NAD⁺还原。这种放能电子转移反应可能由最近发现的膜结合Rnf复合物催化,该复合物被认为可将从铁氧化还原蛋白到NAD⁺的放能电子转移与钠离子跨细胞质膜的向量运输偶联起来。Rnf也可能参与产乙酸过程。由此产生的电化学钠离子电位用于驱动诸如鞭毛旋转和ATP合成等吸能反应。ATP合酶是F₁F₀类酶的成员,但具有一个不同寻常的特殊特征。其膜嵌入的转子是由F₀和V₀样亚基以9:1的化学计量比组成的杂合体。这种化学计量比显然不随生长条件而变化。本文讨论了Rnf复合物和钠离子F₁F₀ATP合酶的结构与功能,它们是伍氏乙酸杆菌钠离子循环中的关键要素。

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