Dengue virus susceptibility in Aedes aegypti linked to natural cytochrome P450 promoter variants
Abstract
Abstract The mosquito Aedes aegypti is the primary vector for dengue virus (DENV), which infects millions of people annually. Variability in DENV susceptibility among wild Ae. aegypti populations is governed by genetic factors, but specific causal variants are unknown. Here, we identify a cytochrome P450-encoding gene (CYP4G15) whose genetic variants drive differences in DENV susceptibility in a natural Ae. aegypti population. CYP4G15 is transiently upregulated in DENV-resistant midguts, while knockdown increases susceptibility, and transgenic overexpression enhances resistance. A naturally occurring 18-base-pair promoter deletion reduces CYP4G15 expression and confers higher DENV susceptibility. The unexpected role of a cytochrome P450 in DENV susceptibility challenges the long-standing focus on canonical immune pathways and opens new avenues for understanding antiviral defense and DENV transmission in mosquitoes.
Article Details
Authors (17)
Sarah H. Merkling
Elodie Couderc
Anna B. Crist
Stéphanie Dabo
Josquin Daron
Natapong Jupatanakul
Myriam Burckbuchler
Thomas Vial
Odile Sismeiro
Rachel Legendre
Adrien Pain
Hugo Varet
Davy Jiolle
Diego Ayala
Christophe Paupy
Éric Marois
Institute of Molecular and Cellular Biology, University of Strasbourg, CNRS, Inserm
Louis Lambrechts