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Evidence for a Key Role of Cytochrome bo3 Oxidase in Respiratory Energy Metabolism of Gluconobacter oxydans

机译:细胞色素bo3氧化酶在氧化葡糖杆菌的呼吸能量代谢中的关键作用的证据。

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摘要

The obligatory aerobic acetic acid bacterium Gluconobacter oxydans oxidizes a variety of substrates in the periplasm by membrane-bound dehydrogenases, which transfer the reducing equivalents to ubiquinone. Two quinol oxidases, cytochrome bo3 and cytochrome bd, then catalyze transfer of the electrons from ubiquinol to molecular oxygen. In this study, mutants lacking either of these terminal oxidases were characterized. Deletion of the cydAB genes for cytochrome bd had no obvious influence on growth, whereas the lack of the cyoBACD genes for cytochrome bo3 severely reduced the growth rate and the cell yield. Using a respiration activity monitoring system and adjusting different levels of oxygen availability, hints of a low-oxygen affinity of cytochrome bd oxidase were obtained, which were supported by measurements of oxygen consumption in a respirometer. The H+/O ratio of the ΔcyoBACD mutant with mannitol as the substrate was 0.56 ± 0.11 and more than 50% lower than that of the reference strain (1.26 ± 0.06) and the ΔcydAB mutant (1.31 ± 0.16), indicating that cytochrome bo3 oxidase is the main component for proton extrusion via the respiratory chain. Plasmid-based overexpression of cyoBACD led to increased growth rates and growth yields, both in the wild type and the ΔcyoBACD mutant, suggesting that cytochrome bo3 might be a rate-limiting factor of the respiratory chain.
机译:强制性好氧乙酸细菌氧化葡糖杆菌通过膜结合脱氢酶将周质中的多种底物氧化,从而将还原性等价物转移至泛醌。然后,两种喹诺酮氧化酶,细胞色素bo3和细胞色素bd,催化电子从泛醇转移到分子氧。在这项研究中,表征了缺少这些末端氧化酶之一的突变体。细胞色素bd的cydAB基因的缺失对生长没有明显影响,而细胞色素bo3的cyoBACD基因的缺失严重降低了生长速率和细胞产量。使用呼吸活动监测系统并调节不同水平的氧气利用率,获得了细胞色素bd氧化酶低氧亲和力的暗示,这在呼吸计中测量了氧气消耗得到了支持。以甘露醇为底物的ΔcyoBACD突变体的H + / O比为0.56±0.11,比参考菌株(1.26±0.06)和ΔcydAB突变体(1.31± 0.16),表明细胞色素bo3氧化酶是质子通过呼吸链挤出的主要成分。基于质粒的cyoBACD的过表达导致野生型和ΔcyoBACD突变体的生长速率和生长产量增加,这表明细胞色素bo3可能是呼吸链的限速因子。

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