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通过对酶反应的质谱监测揭示了涉及氰基丙氨酸中间体的天冬酰胺残基亲核取代的新型催化机制。

Novel catalytic mechanism of nucleophilic substitution by asparagine residue involving cyanoalanine intermediate revealed by mass spectrometric monitoring of an enzyme reaction.

作者信息

Ichiyama S, Kurihara T, Li Y F, Kogure Y, Tsunasawa S, Esaki N

机构信息

Laboratory of Microbial Biochemistry, Institute for Chemical Research, Kyoto University, Uji, Kyoto 611-0011, Japan.

出版信息

J Biol Chem. 2000 Dec 29;275(52):40804-9. doi: 10.1074/jbc.M008065200.

Abstract

l-2-Haloacid dehalogenase from Pseudomonas sp. YL catalyzes the hydrolytic dehalogenation, in which Asp(10) acts as a nucleophile to attack the alpha-carbon of l-2-haloalkanoates to form an ester intermediate, which is subsequently hydrolyzed to produce d-2-hydroxyalkanoates. Surprisingly, replacement of the catalytic residue, Asp(10), by Asn did not result in total inactivation of the enzyme (Kurihara, T., Liu, J.-Q., Nardi-Dei, V., Koshikawa, H., Esaki, N., and Soda, K. (1995) J. Biochem. 117, 1317-1322). In this study, we monitored the D10N mutant enzyme reaction by ion-spray mass spectrometry, and found that the enzyme shows a unique structural change when it was incubated with the substrate, l-2-chloropropionate. LC/MS and tandem MS/MS analyses revealed that Asn(10) attacks the substrate to form an imidate, and a proton and d-lactic acid are eliminated to produce a nitrile (beta-cyanoalanine residue), followed by hydrolysis to reproduce Asn(10). This is the first report of the function of Asn to catalyze nucleophilic substitution through its conversion to beta-cyanoalanine residue as an intermediate structure. Also, these results demonstrate that mass spectrometry is remarkably useful in monitoring enzyme reactions.

摘要

来自假单胞菌属YL菌株的L-2-卤代酸脱卤酶催化水解脱卤反应,其中天冬氨酸(10)作为亲核试剂攻击L-2-卤代链烷酸的α-碳形成酯中间体,该中间体随后水解生成D-2-羟基链烷酸。令人惊讶的是,用天冬酰胺取代催化残基天冬氨酸(10)并没有导致该酶完全失活(栗原,T.,刘,J.-Q.,纳尔迪-代伊,V.,越川,H.,江崎,N.,以及曾田,K.(1995年)《生物化学杂志》117卷,1317 - 1322页)。在本研究中,我们通过离子喷雾质谱监测D10N突变酶反应,发现该酶与底物L-2-氯丙酸孵育时呈现出独特的结构变化。液相色谱/质谱联用和串联质谱/质谱分析表明,天冬酰胺(10)攻击底物形成亚氨酸酯,同时消除一个质子和D-乳酸生成腈(β-氰基丙氨酸残基),随后水解再生天冬酰胺(10)。这是关于天冬酰胺通过转化为β-氰基丙氨酸残基作为中间结构来催化亲核取代功能的首次报道。此外,这些结果表明质谱在监测酶反应方面非常有用。

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