首页> 美国卫生研究院文献>Journal of Bacteriology >Involvement of cytochromes and a flavoprotein in hydrogen oxidation in Rhizobium japonicum bacteroids.
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Involvement of cytochromes and a flavoprotein in hydrogen oxidation in Rhizobium japonicum bacteroids.

机译:细胞色素和黄素蛋白参与根瘤菌类细菌氢氧化的过程。

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摘要

Electron transport components involved in H2 oxidation were studied in membranes from Rhizobium japonicum bacteroids. Hydrogen oxidation in membranes was inhibited by antimycin A and 2-n-heptyl-4-hydroxyquinoline-N-oxide with Ki values of 39.4 and 5.6 microM, respectively. The inhibition of H2 uptake by cyanide was triphasic with Ki values of 0.8, 9.9, and 93.6 microM. This result suggested that three cyanide-reactive components were involved in H2 oxidation. H2-reduced minus O2-oxidized absorption difference spectra showed peaks at 551.5 and 560 nm, indicating the involvement of c- and b-type cytochromes, respectively. This spectrum also revealed a trough at 455 nm, showing that H2 oxidation involves a flavoprotein. This flavoprotein was not reduced by H2 in the presence of cyanide. The inhibition of H2 or cytochrome c oxidation by the flavoprotein inhibitor Atebrin was monophasic; the Ki values were similar for both substrates. A role for the flavoprotein as a terminal oxidase was implicated based on its high redox potential and its sensitivity to cyanide. Cytochromes o and c-552 were identified based on their ability to bind carbon monoxide and cyanide.
机译:在日本根瘤菌类细菌的膜中研究了涉及H2氧化的电子传输组分。膜中的氢氧化被抗霉素A和2-n-庚基-4-羟基喹啉-N-氧化物抑制,Ki值分别为39.4和5.6 microM。氰化物对H2吸收的抑制作用是三次的,Ki值为0.8、9.9和93.6 microM。该结果表明,三个氰化物反应性组分参与了H2氧化。 H2减少的负O2氧化的吸收差异光谱显示在551.5和560 nm处有一个峰,分别表明c型和b型细胞色素的参与。该光谱还显示出在455 nm处的波谷,表明H2氧化涉及黄素蛋白。在氰化物存在下,H2不会还原这种黄素蛋白。黄素蛋白抑制剂Atebrin对H2或细胞色素c氧化的抑制是单相的。两种底物的Ki值相似。基于其高氧化还原电位及其对氰化物的敏感性,暗示了黄素蛋白作为末端氧化酶的作用。根据细胞色素o和c-552结合一氧化碳和氰化物的能力进行鉴定。

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