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一种能够水解含有芳基或杂环基团的有机磷农药的 P-O-Z 部分的异噁草醚水解酶(Imh)。

An isofenphos-methyl hydrolase (Imh) capable of hydrolyzing the P-O-Z moiety of organophosphorus pesticides containing an aryl or heterocyclic group.

机构信息

Department of Microbiology, Key Lab of Microbiological Engineering of Agricultural Environment, Ministry of Agriculture, College of Life Sciences, Nanjing Agricultural University, 210095 Nanjing, Jiangsu Province, People's Republic of China.

出版信息

Appl Microbiol Biotechnol. 2012 Jun;94(6):1553-64. doi: 10.1007/s00253-011-3709-1. Epub 2011 Nov 27.

Abstract

Organophosphorus pesticide (OP) hydrolases play key roles in the degradation and decontamination of agricultural and household OPs and in the detoxification of chemical warfare agents. In this study, an isofenphos-methyl hydrolase gene (imh) was cloned from the isocarbophos-degrading strain of Arthrobacter sp. scl-2 using the polymerase chain reaction method. Isofenphos-methyl hydrolase (Imh) showed 98% sequence identity with the isofenphos hydrolase from Arthrobacter sp. strain B-5. Imh was highly expressed in Escherichia coli BL21 (DE3), and the His(6)-tagged Imh was purified (1.7 mg/ml) with a specific activity of 14.35 U/mg for the substrate isofenphos-methyl. The molecular mass of the denatured Imh is about 44 kDa, and the isoelectric point (pI) value was estimated to be 3.4. The optimal pH and temperature for hydrolysis of isofenphos-methyl were pH 8.0 and 35 °C, respectively. The secondary structure of Imh shows that Imh is a metallo-dependent hydrolase, and it was found that Imh was completely inhibited by the metalloprotease inhibitor 1,10-phenanthroline (0.5 mM), and the catalytic activity was restored by the subsequent addition of Zn(2+). Interestingly, Imh had a relatively broader substrate specificity and was capable of hydrolyzing 12 of the tested oxon and thion OPs with the P-O-Z moiety instead of the P-S(C)-Z moiety. Furthermore, it was found that the existence of an aryl or heterocyclic group in the leaving group (Z) is also important in determining the substrate specificity. Among all the substrates hydrolyzed by Imh, it was assumed that Imh preferred P-O-Z substrates still with a phosphamide bond (P-N), such as isofenphos-methyl, isofenphos, isocarbophos, and butamifos. The newly characterized Imh has a great potential for use in the decontamination and detoxification of agricultural and household OPs and is a good candidate for the study of the catalytic mechanism and substrate specificity of OP hydrolases.

摘要

有机磷农药 (OP) 水解酶在农业和家庭用 OP 的降解和净化以及化学战剂的解毒中起着关键作用。在这项研究中,使用聚合酶链反应方法从解硫磷降解菌株节杆菌属 scl-2 中克隆出了异噁草磷甲基水解酶基因 (imh)。异噁草磷甲基水解酶 (Imh) 与节杆菌属菌株 B-5 的异噁草磷水解酶具有 98%的序列同一性。Imh 在大肠杆菌 BL21 (DE3) 中高度表达,并用 Ni-NTA 亲和层析法纯化了 His(6)-标记的 Imh(1.7 mg/ml),其对底物异噁草磷甲基的比活为 14.35 U/mg。变性 Imh 的分子量约为 44 kDa,等电点 (pI) 值估计为 3.4。水解异噁草磷甲基的最适 pH 和温度分别为 pH 8.0 和 35°C。Imh 的二级结构表明 Imh 是一种金属依赖性水解酶,发现 Imh 被金属蛋白酶抑制剂 1,10-菲咯啉(0.5 mM)完全抑制,随后加入 Zn(2+) 可恢复其催化活性。有趣的是,Imh 具有相对较宽的底物特异性,能够水解 12 种测试的氧代和硫代 OP,其中 P-O-Z 部分而不是 P-S(C)-Z 部分。此外,发现离去基团 (Z) 中芳基或杂环基团的存在对于确定底物特异性也很重要。在 Imh 水解的所有底物中,假设 Imh 仍然更喜欢带有膦酰胺键 (P-N) 的 P-O-Z 底物,例如异噁草磷甲基、异噁草磷、解硫磷和丁胺磷。新表征的 Imh 在农业和家庭用 OP 的净化和解毒方面具有很大的应用潜力,是研究 OP 水解酶催化机制和底物特异性的良好候选物。

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