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Recombinant expression and characterization of Lucilia cuprina CYP6G3: Activity and binding properties toward multiple pesticides.

Insect biochemistry and molecular biology (2017-09-18)
Matthew J Traylor, Jong-Min Baek, Katelyn E Richards, Roberto Fusetto, W Huang, Peter Josh, Zhenzhong Chen, Padma Bollapragada, Richard A J O'Hair, Philip Batterham, Elizabeth M J Gillam
RÉSUMÉ

The Australian sheep blowfly, Lucilia cuprina, is a primary cause of sheep flystrike and a major agricultural pest. Cytochrome P450 enzymes have been implicated in the resistance of L. cuprina to several classes of insecticides. In particular, CYP6G3 is a L. cuprina homologue of Drosophila melanogaster CYP6G1, a P450 known to confer multi-pesticide resistance. To investigate the basis of resistance, a bicistronic Escherichia coli expression system was developed to co-express active L. cuprina CYP6G3 and house fly (Musca domestica) P450 reductase. Recombinant CYP6G3 showed activity towards the high-throughput screening substrates, 7-ethoxycoumarin and p-nitroanisole, but not towards p-nitrophenol, coumarin, 7-benzyloxyresorufin, or seven different luciferin derivatives (P450-Glo™ substrates). The addition of house fly cytochrome b

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Supelco
Endosulfan, PESTANAL®, analytical standard
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Dicyclanil, PESTANAL®, analytical standard