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Q代谢物及相关化合物对线粒体琥珀酸和NADH氧化酶系统的影响。

Effects of Q metabolites and related compounds on mitochondrial succinate and NADH oxidase systems.

作者信息

Okamoto K, Kawada M, Watanabe M, Kobayashi S, Imada I, Morimoto H

出版信息

Biochim Biophys Acta. 1982 Oct 18;682(1):145-51. doi: 10.1016/0005-2728(82)90128-1.

Abstract

The effects of Q metabolites (Q acid-I, Q acid-II) and related compounds (dihydro Q acid-I, dehydro Q acid-II, QS-n, and their esters) on mitochondrial succinate and NADH oxidase systems were investigated. The activity restoring succinate oxidation in acetone-treated beef heart mitochondria was found to decrease with descending order of carbon number (n) of the side chain of the Q metabolites; activity was restored with Q acid-I (n = 7) to one-third as much as that with Q-7 and Q-10, but Q acid-II (n = 5) did not restore any activity. Of the related compounds with a carboxyalkyl group (QS-n), QS-16-QS-18 (n = 16-18) were found to be most active, and their activities were also correlated with n. The relationship between the restoration of activity and the partition coefficient was considered. NADH oxidation in pentane-treated beef heart submitochondrial particles could be restored with esters of low molecular weight quinones to the same extent as with Q-10, but not with the metabolites.

摘要

研究了Q代谢物(Q酸-I、Q酸-II)及相关化合物(二氢Q酸-I、脱氢Q酸-II、QS-n及其酯类)对线粒体琥珀酸和NADH氧化酶系统的影响。发现在丙酮处理的牛心线粒体中恢复琥珀酸氧化的活性随着Q代谢物侧链碳原子数(n)的递减而降低;Q酸-I(n = 7)恢复的活性为Q-7和Q-10恢复活性的三分之一,但Q酸-II(n = 5)未恢复任何活性。在具有羧烷基的相关化合物(QS-n)中,发现QS-16 - QS-18(n = 16 - 18)活性最高,其活性也与n相关。考虑了活性恢复与分配系数之间的关系。戊烷处理的牛心亚线粒体颗粒中的NADH氧化可用低分子量醌的酯类恢复到与Q-10相同的程度,但代谢物不能恢复。

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