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CowN sustains nitrogenase turnover in the presence of the inhibitor carbon monoxide

机译:在存在抑制剂一氧化碳存在下Cowns维持氮酶溢出

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摘要

Nitrogenase is the only enzyme capable of catalyzing nitrogen fixation, the reduction of dinitrogen gas (N2) to ammonia (NH3). Nitrogenase is tightly inhibited by the environmental gas carbon monoxide (CO). Nitrogen-fixing bacteria rely on the protein CowN to grow in the presence of CO. However, the mechanism by which CowN operates is unknown. Here, we present the biochemical characterization of CowN and examine how CowN protects nitrogenase from CO. We determine that CowN interacts directly with nitrogenase and that CowN protection observes hyperbolic kinetics with respect to CowN concentration. At a CO concentration of 0.001 atm, CowN restores nearly full nitrogenase activity. Our results further indicate that CowN’s protection mechanism involves decreasing the binding affinity of CO to nitrogenase’s active site approximately tenfold without interrupting substrate turnover. Taken together, our work suggests CowN is an important auxiliary protein in nitrogen fixation that engenders CO tolerance to nitrogenase.
机译:氮酶是唯一能够催化氮固定的酶,将二氢气体(N 2)还原为氨(NH3)。由环境气体一氧化碳(CO)紧密地抑制氮酶。氮固定细菌依赖于蛋白质脊片在CO的存在下生长。但是,巩固窗户的机制是未知的。在这里,我们介绍了Cown的生化特征,并检查了伴有CO的野生酶的生物化学特征。我们确定Cown直接与氮酶相互作用,并且拐杖保护观察双曲线相对于Cown浓度的双曲线动力学。在0.001 atm的CO浓度下,Cown恢复几乎全氮酶活性。我们的结果进一步表明,Cown的保护机制涉及将CO至氮酶的活性位点的结合亲和力降低,而不会中断底物周转。我们的作品携带,建议巩固是一种重要的辅助蛋白,其氮固定剂,用于对氮酶进行共同耐受性。

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