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A G-protein-coupled receptor regulation pathway in cytochrome P450-mediated permethrin-resistance in mosquitoes, Culex quinquefasciatus

机译:蚊子库蚊对细胞色素P450介导的氯菊酯抗性的G蛋白偶联受体调控途径

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Rhodopsin-like G protein-coupled receptors (GPCRs) are known to be involved in the GPCR signal transduction system and regulate many essential physiological processes in organisms. This study, for the first time, revealed that knockdown of the rhodopsin-like GPCR gene in resistant mosquitoes resulted in a reduction of mosquitoes’ resistance to permethrin, simultaneously reducing the expression of two cAMP-dependent protein kinase A genes (PKAs) and four resistance related cytochrome P450 genes. The function of rhodopsin-like GPCR was further confirmed using transgenic lines of Drosophila melanogaster , in which the tolerance to permethrin and the expression of Drosophila resistance P450 genes were both increased. The roles of GPCR signaling pathway second messenger cyclic adenosine monophosphate (cAMP) and downstream effectors PKAs in resistance were investigated using cAMP production inhibitor Bupivacaine HCl and the RNAi technique. Inhibition of cAMP production led to significant decreases in both the expression of four resistance P450 genes and two PKA genes and mosquito resistance to permethrin. Knockdown of the PKA genes had shown the similar effects on permethrin resistance and P450 gene expression. Taken together, our studies revealed, for the first time, the role of the GPCR/cAMP/PKA-mediated regulatory pathway governing P450 gene expression and P450-mediated resistance in Culex mosquitoes.
机译:视紫红质样G蛋白偶联受体(GPCR)参与GPCR信号转导系统,并调节生物体中许多重要的生理过程。这项研究首次显示,敲除抗性蚊子中的视紫红质样GPCR基因导致蚊子对氯菊酯的抗性降低,同时减少了两个cAMP依赖性蛋白激酶A基因(PKAs)和四个抗性相关的细胞色素P450基因。使用果蝇果蝇的转基因品系进一步证实了视紫红质样GPCR的功能,其中对苄氯菊酯的耐受性和果蝇抗性P450基因的表达均增加。使用cAMP产生抑制剂HCl布比卡因和RNAi技术研究了GPCR信号通路第二信使环一磷酸腺苷(cAMP)和下游效应子PKA在耐药中的作用。抑制cAMP的产生导致四个抗性P450基因和两个PKA基因的表达以及蚊子对氯菊酯的抗性均显着降低。击倒PKA基因已显示出对氯菊酯抗性和P450基因表达的相似影响。综上所述,我们的研究首次揭示了GPCR / cAMP / PKA介导的调控途径在库蚊中控制P450基因表达和P450介导的抗性的作用。

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