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Reversible and irreversible effects of nitric oxide on the soluble hydrogenase from Alcaligenes eutrophus H16.

机译:一氧化氮对Alcaligenes eutrophus H16可溶性氢酶的可逆和不可逆作用。

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摘要

The effects of NO on the H2-oxidizing and diaphorase activities of the soluble hydrogenase from Alcaligenes eutrophus H16 were investigated. With fully activated enzyme, NO (8-150 nM in solution) inhibited H2 oxidation in a time- and NO-concentration-dependent process. Neither H2 nor NAD+ appeared to protect the enzyme against the inhibition. Loss of activity in the absence of an electron acceptor was about 10 times slower than under turnover conditions. The inhibition was partially reversible; approx. 50% of full activity was recoverable after removal of the NO. Recovery was slower in the absence of an electron acceptor than in the presence of H2 plus an electron acceptor. The diaphorase activity of the unactivated hydrogenase was not affected by NO concentrations of up to 200 microM in solution. Exposure of the unactivated hydrogenase to NO irreversibly inhibited the ability of the enzyme to be fully activated for H2-oxidizing activity. The enzyme also lost its ability to respond to H2 during activation in the presence of NADH. The results are interpreted in terms of a complex inhibition that displays elements of (1) a reversible slow-binding inhibition of H2-oxidizing activity, (2) an irreversible effect on H2-oxidizing activity and (30 an irreversible inhibition of a regulatory component of the enzyme. Possible sites of action for NO are discussed.
机译:研究了NO对大肠产碱杆菌H16可溶性氢酶的H2-氧化和黄递酶活性的影响。使用完全活化的酶,NO(溶液中的浓度为8-150 nM)可以在时间和NO浓度依赖性的过程中抑制H2氧化。 H2和NAD +均未显示出保护酶不受抑制的作用。在没有电子受体的情况下失去活性比在翻转条件下慢约10倍。这种抑制作用是部分可逆的。大约去除NO后,可回收全部活性的50%。在没有电子受体的情况下,恢复速度要比在存在H2和电子受体的情况下慢。溶液中高达200 microM的NO浓度不会影响未激活氢化酶的心肌黄递酶活性。将未活化的氢化酶暴露于NO不可逆地抑制了该酶完全活化的H2氧化活性的能力。在NADH存在的活化过程中,该酶也失去了对H2的反应能力。用复杂的抑制作用来解释结果,该抑制作用表现出以下要素:(1)H2氧化活性的可逆缓慢结合抑制;(2)H2氧化活性的不可逆作用;(30)调节成分的不可逆抑制讨论了NO可能的作用位点。

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  • 作者

    Hyman, M R; Arp, D J;

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  • 年度 1988
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  • 原文格式 PDF
  • 正文语种 en
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