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野生型人血清对氧磷酶对立体特异性梭曼水解的直接检测。

Direct detection of stereospecific soman hydrolysis by wild-type human serum paraoxonase.

作者信息

Yeung David T, Smith J Richard, Sweeney Richard E, Lenz David E, Cerasoli Douglas M

机构信息

Physiology and Immunology Branch, Research Division, US Army Medical Research Institute of Chemical Defense, 3100 Ricketts Point Road, Aberdeen Proving Ground, MD 21010-5400, USA.

出版信息

FEBS J. 2007 Mar;274(5):1183-91. doi: 10.1111/j.1742-4658.2006.05650.x. Epub 2007 Feb 5.

Abstract

Human serum paraoxonase 1 (HuPON1; EC 3.1.8.1) is a calcium-dependent six-fold beta-propeller enzyme that has been shown to hydrolyze an array of substrates, including organophosphorus (OP) chemical warfare nerve agents. Although recent efforts utilizing site-directed mutagenesis have demonstrated specific residues (such as Phe222 and His115) to be important in determining the specificity of OP substrate binding and hydrolysis, little effort has focused on the substrate stereospecificity of the enzyme; different stereoisomers of OPs can differ in their toxicity by several orders of magnitude. For example, the C+/-P- isomers of the chemical warfare agent soman (GD) are known to be more toxic by three orders of magnitude. In this study, the catalytic activity of HuPON1 towards each of the four chiral isomers of GD was measured simultaneously via chiral GC/MS. The catalytic efficiency (k(cat)/K(m)) of the wild-type enzyme for the various stereoisomers was determined by a simultaneous solution of hydrolysis kinetics for each isomer. Derived k(cat)/K(m) values ranged from 625 to 4130 mm(-1).min(-1), with isomers being hydrolyzed in the order of preference C+P+ > C-P+ > C+P- > C-P-. The results indicate that HuPON1 hydrolysis of GD is stereoselective; substrate stereospecificity should be considered in future efforts to enhance the OPase activity of this and other candidate bioscavenger enzymes.

摘要

人血清对氧磷酶1(HuPON1;EC 3.1.8.1)是一种钙依赖性的六聚体β-螺旋桨酶,已被证明能水解一系列底物,包括有机磷(OP)化学战神经毒剂。尽管最近利用定点诱变的研究表明特定残基(如Phe222和His115)在确定OP底物结合和水解的特异性方面很重要,但很少有研究关注该酶的底物立体特异性;OP的不同立体异构体在毒性上可能相差几个数量级。例如,化学战剂梭曼(GD)的C+/-P-异构体的毒性已知要高三个数量级。在本研究中,通过手性气相色谱/质谱同时测定了HuPON1对GD的四种手性异构体的催化活性。通过同时求解每种异构体的水解动力学来确定野生型酶对各种立体异构体的催化效率(k(cat)/K(m))。推导得到的k(cat)/K(m)值范围为625至4130 mm(-1).min(-1),异构体的水解优先顺序为C+P+ > C-P+ > C+P- > C-P-。结果表明,HuPON1对GD的水解具有立体选择性;在未来提高该酶及其他候选生物清除酶的OPase活性的研究中,应考虑底物立体特异性。

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