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How Escherichia coli Is Equipped to Oxidize Hydrogen under Different Redox Conditions

机译:在不同的氧化还原条件下如何装备大肠杆菌氧化氢

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摘要

The enterobacterium Escherichia coli synthesizes two H2 uptake enzymes, Hyd-1 and Hyd-2. We show using precise electrochemical kinetic measurements that the properties of Hyd-1 and Hyd-2 contrast strikingly, and may be individually optimized to function under distinct environmental conditions. Hyd-2 is well suited for fast and efficient catalysis in more reducing environments, to the extent that in vitro it behaves as a bidirectional hydrogenase. In contrast, Hyd-1 is active for H2 oxidation under more oxidizing conditions and cannot function in reverse. Importantly, Hyd-1 is O2 tolerant and can oxidize H2 in the presence of air, whereas Hyd-2 is ineffective for H2 oxidation under aerobic conditions. The results have direct relevance for physiological roles of Hyd-1 and Hyd-2, which are expressed in different phases of growth. The properties that we report suggest distinct technological applications of these contrasting enzymes.
机译:肠杆菌大肠杆菌合成两种H2摄取酶Hyd-1和Hyd-2。我们显示使用精确的电化学动力学测量,Hyd-1和Hyd-2的性质形成鲜明对比,并且可以单独优化以在不同的环境条件下发挥作用。 Hyd-2非常适合在更具还原性的环境中进行快速有效的催化,其程度是在体外其表现为双向氢化酶。相反,Hyd-1在更多的氧化条件下对H2氧化具有活性,不能反向起作用。重要的是,Hyd-1可以耐受氧气,并且可以在空气中氧化H2,而Hyd-2在有氧条件下对H2氧化无效。结果与Hyd-1和Hyd-2的生理作用直接相关,它们在生长的不同阶段表达。我们报告的性质表明这些对比酶的独特技术应用。

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