4.7 Article

CYP321A Subfamily P450s Contribute to the Detoxification of Phytochemicals and Pyrethroids in Spodoptera litura

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JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY
卷 71, 期 41, 页码 14989-15002

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AMER CHEMICAL SOC
DOI: 10.1021/acs.jafc.3c05423

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xenobiotic detoxification; molecular docking; transcriptional regulation; CncC

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The induction of CYP321A subfamily members in Spodoptera litura for detoxification is mediated by the activation of CncC and MafK transcription factors, and knockdown of these transcription factors increases larval susceptibility to xenobiotics.
Although the induction of cytochrome P450 monooxygenases involved in insect detoxification has been well documented, the underlying regulatory mechanisms remain obscure. In Spodoptera litura, CYP321A subfamily members were effectively induced by exposure to flavone, xanthotoxin, curcumin, and lambda-cyhalothrin, while knockdown of the CYP321A genes increased larval susceptibility to these xenobiotics. Homology modeling and molecular docking analyses showed that these four xenobiotics could stably bind to the CYP321A enzymes. Furthermore, two transcription factor genes, CncC and MafK, were significantly induced by the xenobiotics. Knockdown of CncC or MafK reduced the expression of four CYP321A genes and increased larval susceptibility to the xenobiotics. Dual-luciferase reporter assays showed that cotransfection of reporter plasmids carrying the CYP321A promoter with CncC and/or MafK-expressing constructs significantly magnified the promoter activity. These results indicate that the induction of CYP321A subfamily members conferring larval detoxification capability to xenobiotics is mediated by the activation of CncC and MafK.

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