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A low-potential terminal oxidase associated with the iron-only nitrogenase from the nitrogen-fixing bacterium Azotobacter vinelandii

机译:与来自固氮细菌葡萄固氮菌的仅铁固氮酶相关的低电位末端氧化酶

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摘要

The biological route for nitrogen gas entering the biosphere is reduction to ammonia by the nitrogenase enzyme, which is inactivated by oxygen. Three types of nitrogenase exist, the least-studied of which is the iron-only nitrogenase. The Anf3 protein in the bacterium Rhodobacter capsulatus is essential for diazotrophic (i.e. nitrogen-fixing) growth with the iron-only nitrogenase, but its enzymatic activity and function are unknown. Here, we biochemically and structurally characterize Anf3 from the model diazotrophic bacterium Azotobacter vinelandii. Determining the Anf3 crystal structure to atomic resolution, we observed that it is a dimeric flavocytochrome with an unusually close interaction between the heme and the FAD cofactors. Measuring the reduction potentials by spectroelectrochemical redox titration, we observed values of −420 ± 10 and −330 ± 10 mV for the two FAD potentials and −340 ± 1 mV for the heme. We further show that Anf3 accepts electrons from spinach ferredoxin and that Anf3 consumes oxygen without generating superoxide or hydrogen peroxide. We predict that Anf3 protects the iron-only nitrogenase from oxygen inactivation by functioning as an oxidase in respiratory protection, with flavodoxin or ferredoxin as the physiological electron donors.
机译:氮气进入生物圈的生物学途径是通过被氧气灭活的固氮酶将其还原为氨。存在三种类型的固氮酶,其中研究最少的是仅铁固氮酶。荚膜红细菌中的Anf3蛋白对于仅使用铁的固氮酶进行重氮营养(即固氮)生长是必不可少的,但其酶促活性和功能尚不清楚。在这里,我们从模型重氮营养细菌vinezoii的Anf3生化和结构特征。确定Anf3晶体结构的原子分辨率,我们观察到它是一种二聚体黄素细胞色素,在血红素和FAD辅助因子之间有异常紧密的相互作用。通过光谱电化学氧化还原滴定法测量还原电位,我们观察到两个FAD电位的值为-420±10和-330±10 mV,血红素的值为-340±1 mV。我们进一步表明Anf3接受菠菜铁氧还蛋白中的电子,并且Anf3消耗氧气而不产生超氧化物或过氧化氢。我们预测Anf3通过在呼吸道保护中起氧化酶的作用,以黄素氧还蛋白或铁氧还蛋白作为生理电子供体,从而保护仅铁的固氮酶免受氧失活的影响。

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