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丙卡巴肼偶氮氧化物衍生物在醛脱氢酶和黄嘌呤氧化酶作用下的代谢

Metabolism of azoxy derivatives of procarbazine by aldehyde dehydrogenase and xanthine oxidase.

作者信息

Tweedie D J, Fernandez D, Spearman M E, Feldhoff R C, Prough R A

机构信息

Department of Biochemistry, School of Medicine, University of Louisville, KY 40292.

出版信息

Drug Metab Dispos. 1991 Jul-Aug;19(4):793-803.

PMID:1680657
Abstract

Procarbazine, a 1,2-disubstituted hydrazine, is employed therapeutically in the treatment of Hodgkin's disease and a limited number of other neoplasias. The isomeric azoxy metabolites of procarbazine have recently been identified as the precursors of species responsible for both the anti-cancer efficacy and toxic effects mediated by this drug. This study demonstrates that cytosolic enzymes are involved in the metabolism of the azoxy metabolites of procarbazine. Two azoxy procarbazine oxidase activities were resolved by diethylaminoethyl (DEAE)-cellulose chromatography. The activity which did not bind to this column was purified to homogeneity and was identified as a phenobarbital-inducible form of cytosolic aldehyde dehydrogenase. This protein fraction was shown to metabolize only the azoxy 2 procarbazine isomer to yield N-isopropy-p-formylbenzamide (ALD) in a reaction which did not require NAD+ as cofactor. The ALD product formed was also a substrate for a subsequent NAD(+)-dependent reduction reaction catalyzed by that purified protein. The azoxy 2 procarbazine isomer and ALD were shown to be potent inhibitors of both the dehydrogenase and esterase activities of aldehyde dehydrogenase. The second azoxy procarbazine oxidase activity which was retained by the DEAE-cellulose column co-eluted with xanthine oxidase activity. Both the xanthine dehydrogenase/oxidase and azoxy procarbazine oxidase activities of this protein fraction were inhibited by allopurinol, a specific inhibitor of xanthine dehydrogenase. Xanthine dehydrogenase/oxidase was partially purified by an alternative procedure and was shown to metabolize both the azoxy 2 procarbazine isomer and ALD, ultimately producing N-isopropylterephthalamic acid. The ability of xanthine oxidase to metabolize azoxy 2 procarbazine and ALD was confirmed using commercial, purified milk xanthine oxidase.

摘要

丙卡巴肼是一种1,2 - 二取代肼,在治疗霍奇金病和其他少数几种肿瘤中具有治疗用途。丙卡巴肼的异构偶氮氧化合物代谢产物最近被确定为该药物介导的抗癌疗效和毒性作用的相关物质的前体。本研究表明,胞质酶参与丙卡巴肼偶氮氧化合物代谢产物的代谢。通过二乙氨基乙基(DEAE)-纤维素色谱法分离出两种丙卡巴肼偶氮氧化酶活性。未与该柱结合的活性被纯化至同质,并被鉴定为胞质醛脱氢酶的苯巴比妥诱导型。该蛋白质组分仅将偶氮2丙卡巴肼异构体代谢生成N - 异丙基 - 对 - 甲酰基苯甲酰胺(ALD),此反应不需要NAD +作为辅因子。生成的ALD产物也是该纯化蛋白催化的后续NAD(+)依赖性还原反应的底物。偶氮2丙卡巴肼异构体和ALD被证明是醛脱氢酶脱氢酶和酯酶活性的有效抑制剂。保留在DEAE - 纤维素柱上的第二种丙卡巴肼偶氮氧化酶活性与黄嘌呤氧化酶活性共洗脱。该蛋白质组分的黄嘌呤脱氢酶/氧化酶和丙卡巴肼偶氮氧化酶活性均被黄嘌呤脱氢酶的特异性抑制剂别嘌呤醇抑制。黄嘌呤脱氢酶/氧化酶通过另一种方法进行部分纯化,并被证明可代谢偶氮2丙卡巴肼异构体和ALD,最终生成N - 异丙基对苯二甲酰胺酸。使用市售的纯化牛奶黄嘌呤氧化酶证实了黄嘌呤氧化酶代谢偶氮2丙卡巴肼和ALD的能力。

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