Suppr超能文献

某些苯并噻唑、苯并恶唑和喹啉作为兔肝醛氧化酶底物和抑制剂的动力学

Kinetics of some benzothiazoles, benzoxazoles, and quinolines as substrates and inhibitors of rabbit liver aldehyde oxidase.

作者信息

Gristwood W, Wilson K

机构信息

Glaxo Group Research, Greenford, Middlesex, UK.

出版信息

Xenobiotica. 1988 Aug;18(8):949-54. doi: 10.3109/00498258809167518.

Abstract
  1. Twelve oxygen and sulphur azaheterocycles were studied as potential substrates of rabbit liver aldehyde oxidase. Only benzoxazole and 1,2-benzisoxazole were found to be substrates. 2. Nine of the compounds inhibited the oxidation of quinazoline by aldehyde oxidase and in all cases mixed inhibition kinetics were observed. 3. pi-Excessive heterocycles consisting of a single 5- or 6-membered ring (thiazole, oxazole) were neither substrates or inhibitors. Addition of a carbocyclic ring (benzothiazole, benzoxazole, 1,2-benzisoxazole) allowed binding to the enzyme as a substrate and/or inhibitor. 4. The mixed inhibition exhibited by the pi-excessive azaheterocycles benzothiazole, 1,2-benzisoxazole, and 2-substituted benzoxazoles was characterised by a Ki/KI ratio greater than 1.0, where Ki is the inhibitor constant for binding to the free enzyme and KI is the inhibitor constant for binding to the ES complex. In contrast, five pi-deficient methyl-substituted quinolines, which are known substrates for aldehyde oxidase, exhibited a Ki/KI ratio of less than 1.0. 5. The pi-excessive heterocycles 2,3-benzthiophene and 2,3-benzfuran, which do not contain a nitrogen atom, exhibited weak inhibition with a very high Ki/KI ratio. 6. The results of the study indicated that whilst thiazoles and oxazoles are unlikely to be extensively metabolized by aldehyde oxidase, they may inhibit the metabolism of substrates of the enzyme.
摘要
  1. 研究了12种氧和硫氮杂环化合物作为兔肝醛氧化酶潜在底物的情况。仅发现苯并恶唑和1,2-苯并异恶唑是底物。2. 其中9种化合物抑制醛氧化酶对喹唑啉的氧化,所有情况下均观察到混合抑制动力学。3. 由单个5元或6元环组成的富π杂环(噻唑、恶唑)既不是底物也不是抑制剂。添加一个碳环(苯并噻唑、苯并恶唑、1,2-苯并异恶唑)可使其作为底物和/或抑制剂与酶结合。4. 富π氮杂环苯并噻唑、1,2-苯并异恶唑和2-取代苯并恶唑表现出的混合抑制作用的特征是Ki/KI比值大于1.0,其中Ki是与游离酶结合的抑制常数,KI是与ES复合物结合的抑制常数。相比之下,已知为醛氧化酶底物的5种贫π甲基取代喹啉的Ki/KI比值小于1.0。5. 不含氮原子的富π杂环2,3-苯并噻吩和2,3-苯并呋喃表现出弱抑制作用,Ki/KI比值非常高。6. 研究结果表明,虽然噻唑和恶唑不太可能被醛氧化酶广泛代谢,但它们可能会抑制该酶底物的代谢。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验