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Separation of hydrogenase-catalyzed hydrogen-evolution system from electron-donating system by means of enzymic electric cell technique

机译:酶细胞技术分离加氢酶催化的氢演化体系与给电子体系

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摘要

An enzymic electric cell was constructed in which the anode was composed of a zinc plate inserted in aqueous NH4Cl solution and the cathode was composed of an electrode made of a glassy carbon stick inserted in a reaction mixture containing cytochrome c3 hydrogenase (H2:ferricytochrome c3 oxidoreductase, EC 1.12.2.1) and methylviologen under an atmosphere of N2. When the circuit was closed, the electric cell formulated as [Formula: see text] was composed, and hydrogenase-catalyzed H2-evolution was observed in the cathode of the cell with concomitant flow of an electric current. Thus, the hydrogenase-catalyzed reaction and the electron-donating reaction proceeded at different parts of the cell. This enables us to protect the hydrogenase from the byproducts of the electron-donating system, which might be hazardous to the enzyme.
机译:构造了一个酶电池,其中阳极由插入NH4Cl水溶液中的锌板组成,阴极由由玻璃碳棒制成的电极组成,该电极插入含细胞色素c3加氢酶(H2:ferricytochrome c3氧化还原酶)的反应混合物中,EC 1.12.2.1)和甲基紫罗兰在N2气氛下。当电路闭合时,组成被配制为[分子式:见正文]的电池,并且伴随着电流的流动,在电池的阴极中观察到了氢酶催化的H 2的演化。因此,氢化酶催化的反应和给电子反应在细胞的不同部分进行。这使我们能够保护加氢酶免受电子给体系统副产物的影响,这些副产物可能对酶有害。

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  • 作者

    Yagi, Tatsuhiko;

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  • 年度 1976
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  • 原文格式 PDF
  • 正文语种 en
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