Suppr超能文献

洋葱伯克霍尔德菌3-羟基苯甲酸6-羟化酶:立体化学、同位素效应和动力学机制。

Pseudomonas cepacia 3-hydroxybenzoate 6-hydroxylase: stereochemistry, isotope effects, and kinetic mechanism.

作者信息

Yu Y M, Wang L H, Tu S C

出版信息

Biochemistry. 1987 Feb 24;26(4):1105-10. doi: 10.1021/bi00378a018.

Abstract

A neutral flavin semiquinone species was formed upon photoreduction of Pseudomonas cepacia 3-hydroxybenzoate 6-hydroxylase whereas no flavin radical was detected by anaerobic reduction with NADH in the presence of m-hydroxybenzoate. In the latter case, the formation of flavin semiquinone is apparently thermodynamically unfavorable. A stereospecificity for the abstraction of the 4R-position hydrogen of NADH has been demonstrated for this hydroxylase. Deuterium and tritium isotope effects were observed with (4R)-[4-2H]NADH and (4R)-[4-3H]NADH as substrates. The DV effect indicates the existence of at least one slow step after the isotope-sensitive enzyme reduction by dihydropyridine nucleotide. A minimal kinetic mechanism has been deduced on the basis of initial velocity measurements and studies on deuterium and tritium isotope effects. Following this scheme, m-hydroxybenzoate and NADH bind to the hydroxylase in a random sequence. The flavohydroxylase is reduced by NADH, and NAD+ is released. Oxygen subsequently binds to and reacts with the reduced flavohydroxylase-m-hydroxybenzoate complex. Following the formation and release of water and gentisate, the oxidized holoenzyme is regenerated. The enzyme has a small (approximately 2-fold) preference for the release of NADH over m-hydroxybenzoate from the enzyme-substrates ternary complex.

摘要

洋葱伯克霍尔德菌3-羟基苯甲酸6-羟化酶光还原时会形成一种中性黄素半醌物种,而在间羟基苯甲酸存在下用NADH进行厌氧还原时未检测到黄素自由基。在后一种情况下,黄素半醌的形成显然在热力学上是不利的。已证明该羟化酶对NADH的4R位氢的提取具有立体特异性。以(4R)-[4-2H]NADH和(4R)-[4-3H]NADH为底物时观察到氘和氚同位素效应。DV效应表明在二氢吡啶核苷酸对同位素敏感的酶还原后至少存在一个慢步骤。基于初速度测量以及对氘和氚同位素效应的研究推导了一个最小动力学机制。按照该方案,间羟基苯甲酸和NADH以随机顺序与羟化酶结合。黄素羟化酶被NADH还原,并释放出NAD+。随后氧气与还原的黄素羟化酶-间羟基苯甲酸复合物结合并发生反应。在水和龙胆酸形成并释放后,氧化的全酶得以再生。该酶从酶-底物三元复合物中释放NADH的偏好比释放间羟基苯甲酸的偏好小(约2倍)。

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