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结构和动力学研究胆碱氧化酶 Ser101Ala 变异体:妥协催化。

Structural and kinetic studies on the Ser101Ala variant of choline oxidase: catalysis by compromise.

机构信息

Department of Chemistry, Georgia State University, Atlanta, GA 30302-4098, USA.

出版信息

Arch Biochem Biophys. 2010 Sep 15;501(2):207-13. doi: 10.1016/j.abb.2010.06.014. Epub 2010 Jun 16.

Abstract

The oxidation of choline catalyzed by choline oxidase includes two reductive half-reactions where FAD is reduced by the alcohol substrate and by an aldehyde intermediate transiently formed in the reaction. Each reductive half-reaction is followed by an oxidative half-reaction where the reduced flavin is oxidized by oxygen. Here, we have used mutagenesis to prepare the Ser101Ala mutant of choline oxidase and have investigated the impact of this mutation on the structural and kinetic properties of the enzyme. The crystallographic structure of the Ser101Ala enzyme indicates that the only differences between the mutant and wild-type enzymes are the lack of a hydroxyl group on residue 101 and a more planar configuration of the flavin in the mutant enzyme. Kinetics established that replacement of Ser101 with alanine yields a mutant enzyme with increased efficiencies in the oxidative half-reactions and decreased efficiencies in the reductive half-reactions. This is accompanied by a significant decrease in the overall rate of turnover with choline. Thus, this mutation has revealed the importance of a specific residue for the optimization of the overall turnover of choline oxidase, which requires fine-tuning of four consecutive half-reactions for the conversion of an alcohol to a carboxylic acid.

摘要

胆碱氧化酶催化的胆碱氧化包括两个还原半反应,其中黄素腺嘌呤二核苷酸(FAD)被醇底物和反应中瞬时形成的醛中间物还原。每个还原半反应之后是一个氧化半反应,其中还原的黄素被氧气氧化。在这里,我们使用突变来制备胆碱氧化酶的 Ser101Ala 突变体,并研究了该突变对酶的结构和动力学性质的影响。Ser101Ala 酶的晶体结构表明,突变酶和野生型酶之间的唯一区别是 101 位残基上缺少一个羟基和突变酶中黄素的更平面构型。动力学研究表明,用丙氨酸取代 Ser101 会导致氧化半反应的效率增加,而还原半反应的效率降低。这伴随着与胆碱的总周转率的显著下降。因此,该突变揭示了特定残基对胆碱氧化酶整体周转率优化的重要性,这需要对四个连续的半反应进行微调,以将醇转化为羧酸。

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