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引用次数: 0
摘要
昆虫的三卤糖酶已被确定为有希望控制害虫的新目标。这些关键酶参与三卤糖的水解,在昆虫的生长和发育过程中发挥着重要作用。本研究评估了植物和微生物化合物(即有效霉素 A、苦杏仁苷和蚜灭多)通过抑制三卤糖酶对蚜虫 Acyrthosiphon pisum 的影响。后者属于蚜科,是植物病毒的主要传播媒介,对农作物危害极大。经证实,Validamycin A 是一种出色的三卤酶抑制剂,其半数最大抑制浓度和抑制常数分别为 2.2 × 10-7 M 和 5 × 10-8 M,对 A. pisum 群体的致死率约为 80%。与有效霉素 A 不同的是,苦杏仁苷和氯雷他定对昆虫的致死效力与其对三卤甲烷酶的抑制作用并不一致,这可能是由于它们被昆虫的β-葡萄糖苷酶水解所致。我们的对接研究表明,这三种化合物都不能与trehalase活性位点结合,这与它们的水解对应物(即validoxylamine A、phloretin和prunasin)不同。到目前为止,Validoxylamine A 是最好的 trhalase 结合剂,其次是 phloretin 和 prunasin。
Toxicological, biochemical, and in silico investigations of three trehalase inhibitors for new ways to control aphids
Insect trehalases have been identified as promising new targets for pest control. These key enzymes are involved in trehalose hydrolysis and plays an important role in insect growth and development. In this contribution, plant and microbial compounds, namely validamycin A, amygdalin, and phloridzin, were evaluated for their effect, through trehalase inhibition, on Acyrthosiphon pisum aphid. The latter is part of the Aphididae family, main pests as phytovirus vectors and being very harmful for crops. Validamycin A was confirmed as an excellent trehalase inhibitor with an half maximal inhibitory concentration and inhibitor constant of 2.2 × 10−7 and 5 × 10−8 M, respectively, with a mortality rate of ~80% on a A. pisum population. Unlike validamycin A, the insect lethal efficacy of amygdalin and phloridzin did not correspond to their trehalase inhibition, probably due to their hydrolysis by insect β-glucosidases. Our docking studies showed that none of the three compounds can bind to the trehalase active site, unlike their hydrolyzed counterparts, that is, validoxylamine A, phloretin, and prunasin. Validoxylamine A would be by far the best trehalase binder, followed by phloretin and prunasin.
期刊介绍:
Archives of Insect Biochemistry and Physiology is an international journal that publishes articles in English that are of interest to insect biochemists and physiologists. Generally these articles will be in, or related to, one of the following subject areas: Behavior, Bioinformatics, Carbohydrates, Cell Line Development, Cell Signalling, Development, Drug Discovery, Endocrinology, Enzymes, Lipids, Molecular Biology, Neurobiology, Nucleic Acids, Nutrition, Peptides, Pharmacology, Pollinators, Proteins, Toxicology. Archives will publish only original articles. Articles that are confirmatory in nature or deal with analytical methods previously described will not be accepted.