首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Bioenergetics in clinical medicine: prevention by forms of coenzyme Q of the inhibition by adriamycin of coenzyme Q10-enzymes in mitochondria of the myocardium.
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Bioenergetics in clinical medicine: prevention by forms of coenzyme Q of the inhibition by adriamycin of coenzyme Q10-enzymes in mitochondria of the myocardium.

机译:临床医学中的生物能学:通过辅酶Q的形式预防心肌线粒体中阿霉素对辅酶Q10酶的抑制作用。

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摘要

Adriamycin inhibits the succinoxidase system and the NADH-oxidase system. Both of the intact mitocondrial enzymes and the pentane-extracted preparations are inhibited. The inhibition can be prevented by a molar ratio of coenzyme to adriamycin of 3:1 for coenzyme Q10 (ubiquinone), 5:1 for coenzyme Q7, and 5:1 for coenzyme Q4. Prevention of inhibition was observed in the decreasing order of coenzyme Q10 greater than coenzyme Q7 greater than H6 coenzyme Q4 greater than coenzyme Q4. Adriamycinone was three times more inhibitory than adriamycin, which is compatible with a less polar fragment necessary to inhibit the lipoidal coenzyme Q10. Daunomycinone was not inhibitory at a concentration at which adriamycinone is effective, indicating that the hydroxyl group of the latter could be binding at the receptor, since it should not influence electron transfer or rings B and C.
机译:阿霉素抑制琥珀氧化酶系统和NADH-氧化酶系统。完整的线粒体酶和戊烷提取的制剂均被抑制。辅酶Q10(泛醌)的辅酶与阿霉素的摩尔比为3:1,辅酶Q7为5:1,辅酶Q4为5:1,可以防止这种抑制作用。观察到抑制作用的抑制作用是:辅酶Q10的降序大于辅酶Q7大于H6辅酶Q4大于辅酶Q4。阿霉素的抑制作用是阿霉素的三倍,阿霉素与抑制脂类辅酶Q10所需的极性较小的片段相容。道诺霉素在阿霉素有效的浓度下没有抑制作用,表明后者的羟基可能与受体结合,因为它不会影响电子传递或环B和C。

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