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[小鼠肝脏中的别嘌呤醇氧化酶]

[Hepatic allopurinol oxidizing enzyme in mice].

作者信息

Huh K, Iwata H, Yamamoto I

出版信息

Nihon Yakurigaku Zasshi. 1975 Mar;71(2):175-83.

PMID:124299
Abstract

The relationship between allopurinol oxidizing enzyme and aldehyde oxidase was investaged in mice. The oxidation of both N-methylnicotinamide and allopurinol appears to be catalized by a single enzyme, aldehyde oxidase (aldehyde-oxygen oxidoreductase EC, 1.2.3.1.). This conclusion is based on the following evidence; The postnatal changes of allopurinol and N-methylnicotinamide oxidizing activities were similar during growth and the levels of both activities increased in a parallel fashion upon the attainment of sexual maturity. The rates of loss of the activities of both enzymes by heat denaturation as well as dexamethasone administration were similar. The inhibitors of allopurinol oxidizing enzyme also suppressed N-methylnicotinamide oxidation. Competition of N-methylnicotineamide and allopurinol for oxidation was demonstrated. The rate of increase of the activities in both enzymes was almost parallel during each step of the purification from mouse liver supernatant. It was ascertained that xanthine oxidase in the enzyme preparation does not influence allopurinol oxidation.

摘要

在小鼠体内研究了别嘌呤醇氧化酶与醛氧化酶之间的关系。N-甲基烟酰胺和别嘌呤醇的氧化似乎均由单一酶——醛氧化酶(醛-氧氧化还原酶,EC 1.2.3.1.)催化。该结论基于以下证据:在生长过程中,别嘌呤醇和N-甲基烟酰胺氧化活性的出生后变化相似,并且在达到性成熟时,两种活性水平以平行方式增加。通过热变性以及给予地塞米松后,两种酶活性丧失的速率相似。别嘌呤醇氧化酶的抑制剂也抑制N-甲基烟酰胺的氧化。证明了N-甲基烟酰胺和别嘌呤醇在氧化方面存在竞争。在从小鼠肝脏上清液进行纯化的每个步骤中,两种酶活性的增加速率几乎平行。已确定酶制剂中的黄嘌呤氧化酶不影响别嘌呤醇的氧化。

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