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首页> 外文期刊>Biochemistry >Another Role for CO with Nitrogenase? CO Stimulates Hydrogen Evolution Catalyzed by Variant Azotobacter vinelandii Mo-Nitrogenases
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Another Role for CO with Nitrogenase? CO Stimulates Hydrogen Evolution Catalyzed by Variant Azotobacter vinelandii Mo-Nitrogenases

机译:与硝酸酶合作的另一个作用? CO刺激变异偶氮杆菌vinelandii mo-氮酶催化的氢进化

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摘要

A likely entry/exit path for nitrogenase substrates, products, and/or protons involves residues α277~(Arg), α192~(Ser), and α356~(Gly), all of which are highly conserved among MoFe proteins from different organisms. The α192~(Ser) and α277~(Arg) residues form part of a hydrogen-bonded network that also involves α195~(His), which interacts with a FeMo cofactor-based sulfide. The terminal amino groups of α277~(Arg) are also hydrogen-bonded directly to α281~(Tyr), which resides at the surface of the MoFe protein. Individual amino acid substitutions placed at position α277 or α192 resulted in a variety of effects on the catalytic and/or spectroscopic properties of the resulting variant MoFe protein. Of particular interest was the effect of CO on H_2 evolution catalyzed by three MoFe protein variants, α277~(Cys), α192~(Asp), and α192~(Glu). All three variants exhibited CO stimulation of H_2 evolution under high-electron flux conditions but not under low-electron flux conditions. This observation is best explained by these variants being redoxcompromised but only at the most reduced redox states of the MoFe protein. Normally, these states are accessed and operational only under high-electron flux conditions, and the effect of added CO is to prevent access to these most reduced redox states, resulting in a normal rate of catalysis. Furthermore, via correlation of the effect of pH changes on H_2 evolution activity for both the wild type and the α277~(Cys) MoFe protein variant under argon, with or without 10% CO present, likely pathways for the delivery of a proton to the FeMo cofactor were identified.
机译:用于硝酸酶底物,产物和/或质子的可能进入/出口路径涉及残留物α277〜(ARG),α192〜(Ser)和α356〜(Gly),所有这些都是来自不同生物的Mofe蛋白质中的高度保守。 α192〜(Ser)和α277〜(Arg)残基形成氢键网络的一部分,该网络也涉及α195〜(他),其与股骨辅因子的硫化物相互作用。 α277〜(arg)的末端氨基也直接氢键直接键合至α281〜(tyr),其在Mofe蛋白的表面上。放置在位置α277或α192处的个体氨基酸取代导致对所得变体MOFE蛋白的催化和/或光谱性质产生多种影响。特别令人兴趣的是CO对H_2进化的影响,催化三种MOFE蛋白变体,α277〜(CYS),α192〜(ASP)和α192〜(glu)。所有三种变体都在高电子助焊条件下表现出H_2演化的CO刺激,但不在低电子通量条件下。这种观察结果最能解释这些变体,这些变体是氧化氧,但仅在MOFE蛋白的最减少的氧化还原状态下。通常,这些状态仅在高电子助焊条件下访问和操作,并且添加的CO的效果是防止对这些最减少的氧化还原态的效果,导致正常的催化速率。此外,通过对氩气下野生型和α277〜(Cys)Mofe蛋白变体的pH变化对H_2进化活性的影响的相关性,有或没有10%的CO存在,可能的途径用于将质子输送到鉴定了股份质辅助因子。

著录项

  • 来源
    《Biochemistry 》 |2014年第39期| 共10页
  • 作者单位

    Department of Biochemistry Virginia Polytechnic Institute and State University Blacksburg Virginia 24061 United States;

    Department of Biochemistry Virginia Polytechnic Institute and State University Blacksburg Virginia 24061 United States;

    Department of Biochemistry Virginia Polytechnic Institute and State University Blacksburg Virginia 24061 United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学 ;
  • 关键词

    nitrogenase; entry/exit; identified;

    机译:氮酶;入口/出口;确定;

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