首页> 美国卫生研究院文献>Journal of Bacteriology >Proton efflux coupled to dark H2 oxidation in whole cells of a marine sulfur photosynthetic bacterium (Chromatium sp. strain Miami PBS1071).
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Proton efflux coupled to dark H2 oxidation in whole cells of a marine sulfur photosynthetic bacterium (Chromatium sp. strain Miami PBS1071).

机译:质子外流与海洋硫光合细菌(Chromatium sp。菌株Miami PBS1071)的整个细胞中的深色H2氧化偶联。

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摘要

Whole cells of photoanaerobically grown Chromatium sp. strain Miami PBS1071, a marine sulfur purple bacterium, oxidized H2 in the dark through the oxyhydrogen reaction at rates of up to 59 nmol of H2 per mg (dry weight) per min. H2 oxidation was routinely measured in H2 pulse experiments with air-equilibrated cells. The reaction was accompanied by a reversible H+ efflux from the cells, suggesting an outward H+ translocation reaction coupled to H2 oxidation. The H+/e- ratio, calculated from simultaneous measurements of H2, O2, and H+ changes in the medium, varied with the cultures from 0.7 to 1.2. The ratio increased considerably when the backflow of H+ was taken into account. Anaerobic H2 uptake with 2,5-dimethyl-p-benzoguinone as an oxidant also showed a weak H+-translocating activity. No H+-translocating activity was detected with methylene blue as an oxidant. Carbonylcyanide 3-chlorophenylhydrazone (1 microM) stimulated H2 oxidation and abolished the associated H+ changes when H2 oxidation was observed in O2 pulse experiments with H2-Ar-equilibrated cells. However, the uncoupler inhibited both H2 oxidation and H+ changes when measurements were made in H2 pulse experiments with air-equilibrated cells. It is suggested that in this bacterium the susceptibility of hydrogenase to reversible O2 inactivation in situ is enhanced by the presence of uncoupling agents.
机译:光厌氧生长的Chromatium sp。的全细胞。海洋硫紫色细菌迈阿密菌株PBS1071通过氢氧在黑暗中将H2氧化,速率最高为每毫克(干重)每分钟59 nmol的H2。在H2脉冲实验中使用空气平衡的电池常规测量H2氧化。该反应伴有来自细胞的可逆的H +外流,表明与H 2氧化偶联的向外的H +易位反应。通过同时测量培养基中H2,O2和H +的变化计算出的H + / e-比随培养物的变化从0.7到1.2。当考虑到H +的回流时,该比率显着增加。以2,5-二甲基-对-苯并胍酮为氧化剂的厌氧H2吸收也显示出较弱的H +易位活性。用亚甲基蓝作为氧化剂未检测到H +易位活性。当在H2-Ar平衡电池的O2脉冲实验中观察到H2氧化时,羰基氰化物3-氯苯基hydr(1 microM)刺激H2氧化并消除了相关的H +变化。但是,当在空气平衡电池的H2脉冲实验中进行测量时,解偶联剂同时抑制H2氧化和H +变化。有人认为,在这种细菌中,解偶联剂的存在会增强氢化酶对可逆O2原位失活的敏感性。

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