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A genome-guided analysis of energy conservation in the thermophilic cytochrome-free acetogenic bacterium Thermoanaerobacter kivui

机译:基因组指导的嗜热无细胞色素的产乙酸细菌嗜热厌氧菌Kivui的能量守恒分析

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摘要

BackgroundAcetogenic bacteria are able to use CO2 as terminal electron acceptor of an anaerobic respiration, thereby producing acetate with electrons coming from H2. Due to this feature, acetogens came into focus as platforms to produce biocommodities from waste gases such as H2 + CO2 and/or CO. A prerequisite for metabolic engineering is a detailed understanding of the mechanisms of ATP synthesis and electron-transfer reactions to ensure redox homeostasis. Acetogenesis involves the reduction of CO2 to acetate via soluble enzymes and is coupled to energy conservation by a chemiosmotic mechanism. The membrane-bound module, acting as an ion pump, was of special interest for decades and recently, an Rnf complex was shown to couple electron flow from reduced ferredoxin to NAD+ with the export of Na+ in Acetobacterium woodii. However, not all acetogens have rnf genes in their genome. In order to gain further insights into energy conservation of non-Rnf-containing, thermophilic acetogens, we sequenced the genome of Thermoanaerobacter kivui.
机译:背景产乙酸细菌能够使用CO2作为厌氧呼吸的末端电子受体,从而利用来自H2的电子产生乙酸盐。由于此功能,乙酸原作为从诸如H2 ++ CO2和/或CO之类的废气生产生物商品的平台成为焦点。代谢工程学的先决条件是详细了解ATP合成和电子转移反应的机制以确保氧化还原稳态。产乙酸涉及通过可溶性酶将二氧化碳还原为乙酸盐,并通过化学渗透机制与能量守恒相结合。数十年来,作为离子泵的膜结合模块引起了人们的特别关注,最近,Rnf络合物显示出将还原铁氧还蛋白到NAD + 的电子流与Na 在木醋杆菌中。但是,并非所有的产乙酸素基因组中都具有rnf基因。为了进一步了解不含Rnf的嗜热产乙酸菌的能量节约,我们对基旺厌氧嗜热菌的基因组进行了测序。

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