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成年微小膜壳绦虫(绦虫纲)的线粒体NADH氧化酶活性。

Mitochondrial NADH oxidase activity of adult Hymenolepis diminuta (Cestoda).

作者信息

Fioravanti C F

出版信息

Comp Biochem Physiol B. 1982;72(4):591-6. doi: 10.1016/0305-0491(82)90511-9.

Abstract
  1. Mitochondria from adult Hymenolepis diminuta displayed a membrane-associated, rotenone-sensitive NADH oxidase and NADH-dependent fumarate reductase system. 2. Both the H. diminuta oxidase and fumarate reductase were relatively insensitive to antimycin A. potassium cyanide and sodium azide, at concentrations which significantly inhibited the NADH oxidase system of rat liver. 3. Malonate effectively depressed the mitochondrial NADH oxidase activity of both H. diminuta and adult Ascaris suum (Nematoda). 4. An involvement of Mn2+ ion, in NADH utilization by the H. diminuta oxidase, was apparent. 5. The utilization of NAD(P)H by H. diminuta, mitochondrial membranes resulted in hydrogen peroxide formation. Succinate utilization also resulted in peroxide accumulation but at a much slower rate than that found for NAD(P)H.
摘要
  1. 来自成年微小膜壳绦虫的线粒体表现出一种与膜相关的、对鱼藤酮敏感的NADH氧化酶和NADH依赖性延胡索酸还原酶系统。2. 微小膜壳绦虫的氧化酶和延胡索酸还原酶对抗霉素A、氰化钾和叠氮化钠相对不敏感,而这些物质在一定浓度下能显著抑制大鼠肝脏的NADH氧化酶系统。3. 丙二酸有效地抑制了微小膜壳绦虫和成年猪蛔虫(线虫纲)线粒体的NADH氧化酶活性。4. 明显有Mn2+离子参与微小膜壳绦虫氧化酶对NADH的利用。5. 微小膜壳绦虫线粒体膜利用NAD(P)H会导致过氧化氢的形成。利用琥珀酸也会导致过氧化物积累,但速度比NAD(P)H慢得多。

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