The central role of mosquito cytochrome P450 CYP6Zs in insecticide detoxification revealed by functional expression and structural modelling

Author:

Chandor-Proust Alexia1,Bibby Jaclyn2,Régent-Kloeckner Myriam1,Roux Jessica1,Guittard-Crilat Emilie3,Poupardin Rodolphe14,Riaz Muhammad Asam15,Paine Mark4,Dauphin-Villemant Chantal36,Reynaud Stéphane1,David Jean-Philippe1

Affiliation:

1. Laboratoire d’Ecologie Alpine (LECA), UMR 5553 CNRS, Université de Grenoble, Grenoble 38041, France

2. Institute of Integrative Biology, University of Liverpool, Liverpool L69 7ZB, U.K.

3. Université Pierre et Marie Curie, CNRS, Paris 75005, France

4. Liverpool School of Tropical Medicine, Liverpool L3 5QA, U.K.

5. Department of Agri-Entomology, University College of Agriculture, University of Sargodha, Sargodha, Pakistan

6. Department of Ecology and Evolution, University of Lausanne, Lausanne 1015, Switzerland

Abstract

The resistance of mosquitoes to chemical insecticides is threatening vector control programmes worldwide. Cytochrome P450 monooxygenases (CYPs) are known to play a major role in insecticide resistance, allowing resistant insects to metabolize insecticides at a higher rate. Among them, members of the mosquito CYP6Z subfamily, like Aedes aegypti CYP6Z8 and its Anopheles gambiae orthologue CYP6Z2, have been frequently associated with pyrethroid resistance. However, their role in the pyrethroid degradation pathway remains unclear. In the present study, we created a genetically modified yeast strain overexpressing Ae. aegypti cytochrome P450 reductase and CYP6Z8, thereby producing the first mosquito P450–CPR (NADPH-cytochrome P450-reductase) complex in a yeast recombinant system. The results of the present study show that: (i) CYP6Z8 metabolizes PBAlc (3-phenoxybenzoic alcohol) and PBAld (3-phenoxybenzaldehyde), common pyrethroid metabolites produced by carboxylesterases, producing PBA (3-phenoxybenzoic acid); (ii) CYP6Z8 transcription is induced by PBAlc, PBAld and PBA; (iii) An. gambiae CYP6Z2 metabolizes PBAlc and PBAld in the same way; (iv) PBA is the major metabolite produced in vivo and is excreted without further modification; and (v) in silico modelling of substrate–enzyme interactions supports a similar role of other mosquito CYP6Zs in pyrethroid degradation. By playing a pivotal role in the degradation of pyrethroid insecticides, mosquito CYP6Zs thus represent good targets for mosquito-resistance management strategies.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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