首页> 外文期刊>Journal of Medical Entomology >Acetylcholinesterase of Haematobia irritans (Diptera: Muscidae): Baculovirus Expression, Biochemical Properties, and Organophosphate Insensitivity of the G262A Mutant
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Acetylcholinesterase of Haematobia irritans (Diptera: Muscidae): Baculovirus Expression, Biochemical Properties, and Organophosphate Insensitivity of the G262A Mutant

机译:嗜血性血友病(双翅目:蝇科)的乙酰胆碱酯酶:杆状病毒的表达,生化特性和G262A突变体的有机磷酸盐不敏感性。

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摘要

This study reports the baculovirus expression and biochemical characterization of recombinant acetylcholinesterase from Haematobia irritans (L.) (rHiAChE) and the effect of the previously described G262A mutation on enzyme activity and sensitivity to selected organophosphates. The rHiAChE was confirmed to be an insect AChE2-type enzyme with substrate preference for acetylthiocholine (K-m 31.3 mu M) over butyrylthiocholine (K-m 63.4 mu M) and inhibition at high substrate concentration. Enzyme activity was strongly inhibited by eserine (2.3 x 10(-10) M), BW284c51 (3.4 x 10(-8) M), malaoxon (3.6 x 10(-8) M), and paraoxon (1.8 x 10(-7) M), and was less sensitive to the butyrylcholinesterase inhibitors ethopropazine (1.1 x 10(-6) M) and iso-OMPA (4.1 x 10(-4) M). rHiAChE containing the G262A substitution exhibited decreased substrate affinity for both acetylthiocholine (K-m 40.9 mu M) and butyrylthiocholine (K-m 96.3 mu M), and exhibited eight-fold decreased sensitivity to paraoxon, and similar to 1.5- to 3-fold decreased sensitivity to other inhibitors. The biochemical kinetics are consistent with previously reported bioassay analysis, suggesting that the G262A mutation contributes to, but is not solely responsible for observed phenotypic resistance to diazinon or other organophosphates.
机译:这项研究报告杆状病毒表达和生化特征的重组乙酰胆碱酯酶的血红蛋白(L.)(rHiAChE)和先前描述的G262A突变对酶活性和对选定的有机磷酸盐的敏感性的影响。证实rHiAChE是昆虫AChE2型酶,其底物优先于乙酰基硫代胆碱(K-m 31.3μM),而不是丁硫基胆碱(K-m 63.4μM),并且在高底物浓度下具有抑制作用。酶活性被色氨酸(2.3 x 10(-10)M),BW284c51(3.4 x 10(-8)M),马拉松(3.6 x 10(-8)M)和对氧磷(1.8 x 10(- 7)M),对丁酰胆碱酯酶抑制剂乙丙嗪(1.1 x 10(-6)M)和iso-OMPA(4.1 x 10(-4)M)较不敏感。含有G262A取代的rHiAChE对乙酰基硫代胆碱(Km 40.9μM)和丁酰硫代胆碱(Km 96.3μM)的底物亲和力均降低,对对氧磷的敏感性降低了8倍,对其他对氧磷的敏感性降低了1.5至3倍抑制剂。生物化学动力学与先前报道的生物测定分析一致,表明G262A突变有助于但不单单引起观察到的对二嗪农或其他有机磷酸酯的表型抗性。

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