首页> 外文期刊>Journal of biochemical and molecular toxicology >Purification and characterization of a phosphoric triester hydrolase from the tufted apple bud moth, Platynota idaeusalis (Walker).
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Purification and characterization of a phosphoric triester hydrolase from the tufted apple bud moth, Platynota idaeusalis (Walker).

机译:簇绒苹果芽蛾,Platynota Idaeusalis(Walker)纯化和表征磷酸三酯水解酶。

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摘要

Whole body homogenates from azinphosmethyl-resistant fifth instars of the tufted apple bud moth demonstrated 11.8-fold elevated phosphoric triester hydrolase (methyl paraoxonase) activity as compared to susceptible insects of the same species. Elevated phosphoric triester hydrolase (PTEH) activity associated with resistance was also found in the Colorado potato beetle but not in the German cockroach or tobacco budworm. Phosphoric triester hydrolase activity in the tufted apple bud moth was minimal in resistant and susceptible third instars and in adult males and females and was highest in whole body homogenates and in the alimentary canal of resistant fifth instars. A microtiterplate assay was developed, which successfully diagnosed resistance in individual fifth instars based on increased phosphoric triester hydrolase (methyl paraoxonase) activity. Phosphoric triester hydrolase was purified 289-fold from fifth instars of resistant bud moths, but any additional resolution resulted in the loss of enzyme activity. Phosphoric triester hydrolase demonstrated an apparent molecular weight of 41,000 with an isoelectric point of 5.28. Methyl paraoxonase activity was increased by calcium, cobalt, manganese, and octylthio-1,1,1-trifluoro-2-propanone and decreased by mercury, phosphate ions, tin, and ethylenediaminetetraacetic acid. Iron, potassium chloride, lithium, magnesium, sodium chloride, and lead had no effect.
机译:与易受相同物种的易感昆虫相比,簇生苹果芽蛾的全身匀浆来自簇绒苹果芽蛾的第五次胰岛均匀呈11.8倍升高的磷酸酯水解酶(甲基亚氧基酶)活性。在科罗拉多土豆甲虫中也发现了与抗性相关的磷酸三酯水解酶(PTEH)活性,但不在德国蟑螂或烟草芽中发现。簇生苹果芽蛾中的磷三酯水解酶活性在抗性和敏感的第三龄和女性和女性中是最小的,并且在整个身体匀浆中以及在抗性第五龄的消化道中最高。显微滴定塑料测定的开发,基于增加的磷酸酯水解酶(甲基酰亚肟酶)活性成功地诊断出各个第五仪器的抗性。磷酸三酯水解酶从抗性芽飞机的第五龄溶液纯化289倍,但任何额外的分辨率导致酶活性的损失。磷酸三酯水解酶表现出明显的分子量为41,000,等电点为5.28。通过钙,钴,锰和辛基硫醚-1,1-三氟-2-丙酮增加甲基亚氧基酶活性,并通过汞,磷酸根离子,锡和乙二胺四乙酸降低。铁,氯化钾,锂,镁,氯化钠和铅没有效果。

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