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致倦库蚊中参与有机磷抗性的酯酶E3的cDNA克隆、杆状病毒表达及动力学特性

cDNA cloning, baculovirus-expression and kinetic properties of the esterase, E3, involved in organophosphorus resistance in Lucilia cuprina.

作者信息

Newcomb R D, Campbell P M, Russell R J, Oakeshott J G

机构信息

CSIRO, Division of Entomology, Canberra, Australia.

出版信息

Insect Biochem Mol Biol. 1997 Jan;27(1):15-25. doi: 10.1016/s0965-1748(96)00065-3.

Abstract

Resistance to organophosphorus insecticides (OPs) in the sheep blowfly, Lucilia cuprina, is associated with a non-staining phenotype of the carboxylesterase isozyme, E3 (E.C. 3.1.1.1). Here, we show that a member of alpha-esterase multigene family, Lc alpha E7, encodes E3. An Lc alpha E7 cDNA has been isolated from an OP-susceptible strain and expressed in a baculovirus. The expressed product is the same as E3 in its electrophoretic mobility and preference for alpha-over beta-naphthyl acetate as substrate. Its preference (kcat/K(m)) for a range of carboxylester substrates is alpha-naphthyl butyrate > alpha-naphthyl propionate > alpha-naphthyl acetate > methylthiobutyrate > p-nitrophenyl acetate. The enzyme is potently inhibited by OPs (ki [paraoxon] = 6.3 +/- 1.4 x 10(7)/M/min, ki [chlorfenvinphos] = 5.9 +/- 0.6 x 10(7)/M/min) and exhibits a high turnover of methylthiobutyrate (1009/s), consistent with its proposed homology to the ali-esterase that is thought to mutate to confer OP resistance in Musca domestica. E3 shares 64% amino acid identity with its Drosophila melanogaster homologue, Dm alpha E7, and is also closely related to other esterases involved in OP resistance such as the B1 esterase of Culex pipiens (38%) and E4 of Myzus persicae (30%).

摘要

绵羊绿蝇(Lucilia cuprina)对有机磷杀虫剂(OPs)的抗性与羧酸酯酶同工酶E3(E.C. 3.1.1.1)的一种不着色表型相关。在此,我们表明α-酯酶多基因家族的一个成员LcαE7编码E3。已从一个对OP敏感的品系中分离出LcαE7 cDNA,并在杆状病毒中进行表达。表达产物在电泳迁移率以及对α-萘乙酸而非β-萘乙酸作为底物的偏好性方面与E3相同。其对一系列羧酸酯底物的偏好性(kcat/K(m))为:α-萘丁酸>α-萘丙酸>α-萘乙酸>甲硫丁酸>对硝基苯乙酸。该酶受到OPs的强烈抑制(ki[对氧磷] = 6.3±1.4×10⁷/M/min,ki[毒虫畏] = 5.9±0.6×10⁷/M/min),并且对甲硫丁酸表现出高周转率(1009/s),这与其与家蝇中被认为发生突变以赋予对OP抗性的ali-酯酶的推测同源性一致。E3与其黑腹果蝇同源物DmαE7具有64%的氨基酸同一性,并且也与其他参与OP抗性的酯酶密切相关,如致倦库蚊的B1酯酶(38%)和桃蚜的E4(30%)。

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