Suppr超能文献

赖氨酸300在玉米多胺氧化酶的催化机制中起主要作用。

Lys300 plays a major role in the catalytic mechanism of maize polyamine oxidase.

作者信息

Polticelli Fabio, Basran Jaswir, Faso Carmen, Cona Alessandra, Minervini Giovanni, Angelini Riccardo, Federico Rodolfo, Scrutton Nigel S, Tavladoraki Paraskevi

机构信息

Department of Biology, University Roma Tre, Viale G. Marconi 446, 00146 Rome, Italy.

出版信息

Biochemistry. 2005 Dec 13;44(49):16108-20. doi: 10.1021/bi050983i.

Abstract

Maize polyamine oxidase (MPAO) is a flavin adenine dinucleotide (FAD)-dependent enzyme that catalyses the oxidation of spermine and spermidine at the secondary amino groups. The structure of MPAO indicates a 30-A long U-shaped tunnel that forms the catalytic site, with residues Glu62 and Glu170 located close to the enzyme-bound FAD and residue Tyr298 in close proximity to Lys300, which in turn is hydrogen-bonded to the flavin N(5) atom via a water molecule (HOH309). To provide insight into the role of these residues in the catalytic mechanism of FAD reduction, we have performed steady-state and stopped-flow studies with wild-type, Glu62Gln, Glu170Gln, Tyr298Phe, and Lys300Met MPAO enzymes. We show that the steady-state enzyme activity is governed by an ionisable group with a macroscopic pK(a) of approximately 5.8. Kinetic analysis of the Glu62Gln, Glu170Gln, and Tyr298Phe MPAO enzymes have indicated (i) only small perturbations in catalytic activity as a result of mutation and (ii) steady-state pH profiles essentially unaltered when compared to the wild-type enzyme, suggesting that these residues do not play a critical role in the reaction mechanism. These kinetic observations are consistent with computational calculations that suggest that Glu62 and Glu170 are protonated over the pH range accessible to kinetic studies. Substitution of Lys300 with Met in MPAO resulted in a 1400-fold decrease in the rate of flavin reduction and a 160-fold decrease in the equilibrium dissociation constant for the Lys300Met-spermidine complex, consistent with a major role for this residue in the mechanism of substrate oxidation. A sizable solvent isotope effect (SIE = 5) accompanies FAD reduction in the wild-type enzyme and steady-state turnover (SIE = 2.3) of MPAO, consistent with the reductive half-reaction of MPAO making a major contribution to rate limitation in steady-state turnover. Studies using the enzyme-monitored turnover method indicate that oxidized FAD is the prominent form during steady-state turnover, consistent with the reductive half-reaction being rate-limiting. Our studies indicate the importance of Lys300 and probable importance of HOH309 to the mechanism of flavin reduction in MPAO. Possible roles for Lys300 and water in the mechanism of flavin reduction are discussed.

摘要

玉米多胺氧化酶(MPAO)是一种依赖黄素腺嘌呤二核苷酸(FAD)的酶,它催化亚精胺和精胺在仲氨基处的氧化反应。MPAO的结构显示有一条30埃长的U形通道形成催化位点,其中Glu62和Glu170残基靠近与酶结合的FAD,Tyr298残基紧邻Lys300,而Lys300又通过一个水分子(HOH309)与黄素的N(5)原子形成氢键。为深入了解这些残基在FAD还原催化机制中的作用,我们对野生型、Glu62Gln、Glu170Gln、Tyr298Phe和Lys300Met MPAO酶进行了稳态和停流研究。我们发现稳态酶活性受一个宏观pK(a)约为5.8的可电离基团调控。对Glu62Gln、Glu170Gln和Tyr298Phe MPAO酶的动力学分析表明:(i)突变导致催化活性仅有微小扰动;(ii)与野生型酶相比,稳态pH曲线基本未改变,这表明这些残基在反应机制中不发挥关键作用。这些动力学观察结果与计算结果一致,计算结果表明在动力学研究可及的pH范围内,Glu62和Glu170处于质子化状态。MPAO中Lys300被Met取代导致黄素还原速率降低1400倍,Lys300 - 亚精胺复合物的平衡解离常数降低160倍,这与该残基在底物氧化机制中起主要作用一致。野生型酶中FAD还原伴随着显著的溶剂同位素效应(SIE = 5)以及MPAO的稳态周转(SIE = 2.3),这与MPAO的还原半反应对稳态周转的速率限制起主要作用一致。使用酶监测周转方法的研究表明,在稳态周转过程中氧化型FAD是主要形式,这与还原半反应是限速反应一致。我们的研究表明Lys300的重要性以及HOH309对MPAO中黄素还原机制可能的重要性。讨论了Lys300和水在黄素还原机制中的可能作用。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验