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用分光光度法检测血浆对氧磷酶/芳基酯酶对毒死蜱和对硫磷活性代谢物的酶促水解作用。

Spectrophotometric assays for the enzymatic hydrolysis of the active metabolites of chlorpyrifos and parathion by plasma paraoxonase/arylesterase.

作者信息

Furlong C E, Richter R J, Seidel S L, Costa L G, Motulsky A G

机构信息

Department of Medicine (Division of Medical Genetics), University of Washington, Seattle 98195.

出版信息

Anal Biochem. 1989 Aug 1;180(2):242-7. doi: 10.1016/0003-2697(89)90424-7.

Abstract

Human serum plasma paraoxonase/arylesterase exhibits a genetic polymorphism for the hydrolysis of paraoxon. One allelic form of the enzyme hydrolyzes paraoxon slowly with a low turnover number and the other(s) hydrolyzes paraoxon rapidly with a high turnover number. Chlorpyrifos-oxon, the active metabolite of the insecticide chlorpyrifos (Dursban), is also hydrolyzed by plasma arylesterase/paraoxonase. A specific assay for measuring hydrolysis of this compound is described. This assay is not subject to interference by the esterase activity of serum albumin. The Km for chlorpyrifos-oxon hydrolysis was 75 microM. Hydrolysis was inhibited by phenyl acetate, EDTA, and organic solvents. Enzyme activity required calcium ions and was stimulated by sodium chloride. Hydrolysis was optimized by using methanol instead of acetone to dissolve substrate. Unlike the multimodal distribution of paraoxonase, the distribution of chlorpyrifos-oxonase activity failed to show clear multimodality. An improvement in the assay for hydrolysis of paraoxon by plasma arylesterase/paraoxonase was achieved by elimination of organic solvents. Plotting chlorpyrifos-oxonase activity vs paraoxonase activity for a human population using the new assay conditions provided an excellent resolution of low activity homozygotes from heterozygotes for this allele. A greater than 40-fold difference in rates of chlorpyrifosoxon hydrolysis observed between rat (low activity) and rabbit sera (high activity) correlated well with the reported large differences in LD50 values for chlorpyrifos in these two animals, consistent with an important role of serum paraoxonase in detoxification of organophosphorus pesticides in vivo.

摘要

人血清对氧磷酶/芳基酯酶在对氧磷水解方面表现出遗传多态性。该酶的一种等位基因形式以低转换数缓慢水解对氧磷,而其他形式则以高转换数快速水解对氧磷。毒死蜱(敌百虫)的活性代谢产物毒死蜱氧磷也可被血浆芳基酯酶/对氧磷酶水解。本文描述了一种用于测量该化合物水解的特异性检测方法。该检测不受血清白蛋白酯酶活性的干扰。毒死蜱氧磷水解的米氏常数为75微摩尔。水解受到苯乙酸、乙二胺四乙酸和有机溶剂的抑制。酶活性需要钙离子,并受到氯化钠的刺激。通过使用甲醇而非丙酮溶解底物来优化水解。与对氧磷酶的多峰分布不同,毒死蜱氧磷酶活性的分布未显示出明显的多峰性。通过消除有机溶剂,改进了血浆芳基酯酶/对氧磷酶对氧磷水解的检测方法。在新的检测条件下,绘制人群中毒死蜱氧磷酶活性与对氧磷酶活性的关系图,能够很好地分辨该等位基因低活性纯合子与杂合子。在大鼠(低活性)和兔血清(高活性)之间观察到的毒死蜱氧磷水解速率相差40倍以上,这与报道的这两种动物中毒死蜱半数致死量的巨大差异密切相关,这表明血清对氧磷酶在体内有机磷农药解毒中起重要作用。

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