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首页> 外文期刊>Japanese Journal of Pharmacology >STUDIES ON AMINE OXIDASE II. REDUCTION OF CYTOCHROME C BY ETHYLENEDIAMINE
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STUDIES ON AMINE OXIDASE II. REDUCTION OF CYTOCHROME C BY ETHYLENEDIAMINE

机译:胺氧化酶的研究II。乙二胺还原细胞色素C

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References(10) Cited-By(2) In the previous report (1) it has been demonstrated that hydrogen or electron from reduced amine oxidase is transferred not only to molecular oxygen but also to cytochrome c in the oxidation process of histamine and some other biological amines. It has also been shown that although ethylenediamine is generally considered not to be qualified as the substrate of amine oxidizing enzyme, it can serve as a hydrogen donor and induces the cytochrome c reduction under both aerobic and anaerobic conditions. Hill et al. (2) reported that ethylenediamine does not serve as the substrate for amine oxidase from pea seedlings. However, they found that when the enzyme is incubated with ethylenediamine under anaerobic conditions, there occur changes in the absorption spectrum. These changes were not restored by oxygenation unlike in the case of other substrates such as putrescine. The present paper describes the result of kinetic and stoichiometric studies on the reduction of cytochrome c induced by ethylenediamine, using amine oxidase from Aspergillus niger purified by Yamada et al. (3). A preliminary short communication of this paper has been published earlier (10).
机译:参考文献(10)Cited-By(2)在先前的报告(1)中,已证明还原胺氧化酶中的氢或电子不仅在组胺的氧化过程中转移到分子氧,而且转移到细胞色素c生物胺。还已经表明,尽管通常认为乙二胺不适合作为胺氧化酶的底物,但它可以作为氢供体并在有氧和厌氧条件下诱导细胞色素c还原。希尔等。 (2)报道乙二胺不能用作豌豆幼苗中胺氧化酶的底物。但是,他们发现,当在厌氧条件下将酶与乙二胺孵育时,吸收光谱会发生变化。与腐胺等其他底物不同,这些变化不能通过氧合作用恢复。本文描述了由Yamada等人纯化的黑曲霉的胺氧化酶对乙二胺诱导的细胞色素c还原的动力学和化学计量研究的结果。 (3)。本文的初步简短交流已在较早之前发表(10)。

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