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首页> 外文期刊>Chemical research in toxicology >Contribution of Aldehyde Oxidase,Xanthine Oxidase,and Aldehyde Dehydrogenase on the Oxidation of Aromatic Aldehydes
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Contribution of Aldehyde Oxidase,Xanthine Oxidase,and Aldehyde Dehydrogenase on the Oxidation of Aromatic Aldehydes

机译:醛氧化酶,黄嘌呤氧化酶和醛脱氢酶对芳香醛氧化的贡献

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摘要

Aliphatic aldehydes have a high affinity toward aldehyde dehydrogenase activity but are relatively poor substrates of aldehyde oxidase and xanthine oxidase.In addition,the oxidation of xenobiotic-derived aromatic aldehydes by the latter enzymes has not been studied to any great extent.The present investigation compares the relative contribution of aldehyde dehydrogenase,aldehyde oxidase,and xanthine oxidase activities in the oxidation of substituted benzaldehydes in separate preparations.The incubation of vanillin,isovanillin,and proto-catechuic aldehyde with either guinea pig liver aldehyde oxidase,bovine milk xanthine oxidase,or guinea pig liver aldehyde dehydrogenase demonstrated that the three aldehyde oxidizing enzymes had a complementary substrate specificity.Incubations were also performed with specific inhibitors of each enzyme(isovanillin for aldehyde oxidase,allopurinol for xanthine oxidase,and disulfiram for aldehyde dehydrogenase)to determine the relative contribution of each enzyme in the oxidation of these aldehydes.Under these conditions,vanillin was rapidly oxidized by aldehyde oxidase,isovanillin was predominantly metabolized by aldehyde dehydrogenase activity,and protocatechuic aldehyde was slowly oxidized,possibly by all three enzymes.Thus,aldehyde oxidase activity may be a significant factor in the oxidation of aromatic aldehydes generated from amines and alkyl benzenes during drug metabolism.In addition,this enzyme may also have a role in the catabolism of biogenic amines such as dopamine and noradrenaline where 3-methoxyphenylacetic acids are major metabolites.
机译:脂肪醛对醛脱氢酶的活性具有很高的亲和力,但醛氧化酶和黄嘌呤氧化酶的底物相对较弱。此外,对异种生物源性芳香醛被这些酶的氧化的研究还没有得到很大的研究。醛脱氢酶,醛氧化酶和黄嘌呤氧化酶活性在单独制剂中取代苯甲醛氧化中的相对贡献。香兰素,异香兰素和原儿茶醛与豚鼠肝醛氧化酶,牛乳黄嘌呤氧化酶或豚鼠肝醛脱氢酶证明这三种醛氧化酶具有互补的底物特异性。还用每种酶的特异抑制剂(异丁香醛醛氧化酶,黄嘌呤醇黄嘌呤氧化酶和二硫仑醛脱氢酶)进行了孵育,以确定相对贡献。的在这种条件下,香兰素被醛氧化酶快速氧化,异香兰素主要被醛脱氢酶代谢,而原儿茶醛则被所有三种酶缓慢氧化。因此,醛氧化酶的活性可能是这是在药物代谢过程中胺和烷基苯生成的芳香醛氧化的重要因素。此外,该酶也可能在生物胺(例如多巴胺和去甲肾上腺素)的分解代谢中起作用,其中3-甲氧基苯基乙酸是主要代谢产物。

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