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直系同源酯酶中的相同氨基酸取代赋予家蝇和一种丽蝇对有机磷酸酯的抗性。

The same amino acid substitution in orthologous esterases confers organophosphate resistance on the house fly and a blowfly.

作者信息

Claudianos C, Russell R J, Oakeshott J G

机构信息

Division of Entomology, Commonwealth Scientific and Industrial Research Organisation, Canberra, Australia.

出版信息

Insect Biochem Mol Biol. 1999 Aug;29(8):675-86. doi: 10.1016/s0965-1748(99)00035-1.

Abstract

Organophosphate (OP) insecticide resistance in certain strains of Musca domestica is associated with reduction in the carboxylesterase activity of a particular esterase isozyme. This has been attributed to a 'mutant ali-esterase hypothesis', which invokes a structural mutation to an ali-esterase resulting in the loss of its carboxylesterase activity but acquisition of OP hydrolase activity. It has been shown that the mutation in Lucilia cuprina is a Gly137-->Asp substitution in the active site of an esterase encoded by the Lc alpha E7 gene (Newcomb, R.D., Campbell, P.M., Ollis, D.L., Cheah, E., Russell, R.J., Oakeshott, J.G., 1997. A single amino acid substitution converts a carboxylesterase to an organophosphate hydrolase and confers insecticide resistance on a blowfly. Proc. Natl. Acad. Sci. USA 94, 7464-7468). We now report the cloning and characterisation of the orthologous M. domestica Md alpha E7 gene, including the sequencing of cDNAs from the OP resistant Rutgers and OP susceptible sbo and WHO strains. The Md alpha E7 gene has the same intron structure as Lc alpha E7 and encodes a protein with 76% amino acid identity to Lc alpha E7. Comparisons between susceptible and resistance alleles show resistance in M. domestica is associated with the same Gly137-->Asp mutation as in L. cuprina. Bacterial expression of the Rutgers allele shows its product has OP hydrolase activity. The data indicate identical catalytic mechanisms have evolved in orthologous Md alpha E7 and Lc alpha E7 molecules to endow diazinon-type resistance on the two species of higher Diptera.

摘要

家蝇某些品系对有机磷酸酯(OP)杀虫剂的抗性与一种特定酯酶同工酶的羧酸酯酶活性降低有关。这归因于“突变的异酯酶假说”,该假说认为异酯酶发生结构突变,导致其羧酸酯酶活性丧失,但获得了OP水解酶活性。研究表明,铜绿丽蝇中的突变是Lc alpha E7基因编码的酯酶活性位点上的甘氨酸137被天冬氨酸取代(纽科姆,R.D.,坎贝尔,P.M.,奥利,D.L.,谢,E.,拉塞尔,R.J.,奥克肖特,J.G.,1997年。单个氨基酸取代将羧酸酯酶转化为有机磷酸酯水解酶,并赋予一种丽蝇对杀虫剂的抗性。美国国家科学院院刊94,7464 - 7468)。我们现在报告家蝇直系同源Md alpha E7基因的克隆和特性分析,包括来自对OP有抗性的罗格斯品系以及对OP敏感的sbo和世卫组织品系的cDNA测序。Md alpha E7基因具有与Lc alpha E7相同的内含子结构,编码一种与Lc alpha E7氨基酸同一性为76%的蛋白质。敏感等位基因与抗性等位基因的比较表明,家蝇中的抗性与铜绿丽蝇中相同的甘氨酸137被天冬氨酸取代有关。罗格斯等位基因的细菌表达表明其产物具有OP水解酶活性。数据表明,直系同源的Md alpha E7和Lc alpha E7分子中进化出了相同的催化机制,使这两种双翅目高等物种具有对二嗪农型杀虫剂的抗性。

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