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Regulation of P450-mediated permethrin resistance in Culex quinquefasciatus by the GPCR/Gαs/AC/cAMP/PKA signaling cascade

机译:通过GPCR /Gαs/ AC / cAMP / PKA信号级联反应调控西洋参库克斯岛中P450介导的苄氯菊酯抗性

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This study explores the role of G-protein-coupled receptor-intracellular signaling in the development of P450-mediated insecticide resistance in mosquitoes, Culex quinquefasciatus , focusing on the essential function of the GPCRs and their downstream effectors of Gs alpha subunit protein (Gαs) and adenylyl cyclase (ACs) in P450-mediated insecticide resistance of Culex mosquitoes. Our RNAi-mediated functional study showed that knockdown of Gαs caused the decreased expression of the downstream effectors of ACs and PKAs in the GPCR signaling pathway and resistance P450 genes, whereas knockdown of ACs decreased the expression of PKAs and resistance P450 genes. Knockdown of either Gαs or ACs resulted in an increased susceptibility of mosquitoes to permethrin. These results add significantly to our understanding of the molecular basis of resistance P450 gene regulation through GPCR/Gαs/AC/cAMP-PKA signaling pathways in the insecticide resistance of mosquitoes. The temporal and spatial dynamic analyses of GPCRs, Gαs, ACs, PKAs, and P450s in two insecticide resistant mosquito strains revealed that all the GPCR signaling pathway components tested, namely GPCRs, Gαs, ACs and PKAs, were most highly expressed in the brain for both resistant strains, suggesting the role played by these genes in signaling transduction and regulation. The resistance P450 genes were mainly expressed in the brain, midgut and malpighian tubules (MTs), suggesting their critical function in the central nervous system and importance for detoxification. The temporal dynamics analysis for the gene expression showed a diverse expression profile during mosquito development, indicating their initially functional importance in response to exposure to insecticides during their life stages. Graphical abstract Display Omitted Highlights ? GPCR, Gs alpha subunit protein (Gαs), adenylyl cyclase (ACs), and protein kinase A (PKAs) regulates resistance P450 gene expression and the development of insecticide resistance in mosquitoes, Culex quinquefasciatus. ? GPCR, Gαs, ACs, and PKAs, are highly expressed in the brain of mosquitoes, corresponding their role in signaling transduction, and regulation. ? GPCR, Gαs, ACs, PKAs, and P450s are expressed in the different life stages of mosquitoes, revealing their functional importance in response to exposure to insecticides during mosquito life stages.
机译:这项研究探讨了G蛋白偶联受体细胞内信号转导在蚊子库蚊(P. quinquefasciatus)的P450介导的杀虫剂抗性发展中的作用,着重于GPCR的基本功能及其Gsα亚基蛋白(Gαs)的下游效应子。和腺苷酸环化酶(ACs)在库蚊(Plex)蚊虫的P450介导的抗药性中。我们的RNAi介导的功能研究表明,Gα的敲低会导致GPCR信号通路和抗性P450基因中AC和PKA的下游效应子表达降低,而AC的敲低会降低PKA和抗性P450基因的表达。击倒Gαs或ACs会导致蚊子对氯菊酯的敏感性增加。这些结果大大增加了我们对通过GPCR /Gαs/ AC / cAMP-PKA信号传导途径在蚊子的杀虫剂抗性中抗性P450基因调控的分子基础的了解。对两种抗药性蚊子菌株中的GPCR,Gα,AC,PKA和P450进行时空动态分析,发现测试的所有GPCR信号通路成分,即GPCR,Gα,AC和PKA,在脑中的表达最高。两种抗性菌株,提示这些基因在信号转导和调控中发挥了作用。抗性P450基因主要在脑,中肠和马尔帕蒂小管(MTs)中表达,表明它们在中枢神经系统中的关键功能以及对排毒的重要性。基因表达的时间动态分析表明,在蚊子发育过程中,表达谱具有多样性,表明它们在生命阶段对接触杀虫剂起初的功能重要性。图形摘要显示省略的突出显示? GPCR,Gs alpha亚基蛋白(Gαs),腺苷酸环化酶(ACs)和蛋白激酶A(PKAs)调节蚊子Cuquin quinquefasciatus的抗性P450基因表达和杀虫剂抗性的发展。 ? GPCR,Gα,AC和PKA在蚊子的大脑中高度表达,与其在信号转导和调节中的作用相对应。 ? GPCR,Gα,AC,PKA和P450在蚊子的不同生命阶段表达,揭示了它们在蚊子生命阶段对暴露于杀虫剂的反应中的功能重要性。

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