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Single-cell characterization of skin response to a bite by West Nile virus-infected mosquito reveals fibroblast-mediated barrier to transmission
Document de travail   Open Access

Single-cell characterization of skin response to a bite by West Nile virus-infected mosquito reveals fibroblast-mediated barrier to transmission

Hacène Medkour, Federico Bocci, Norman Schneider, Idalba Serrato-Pomar, Félix Rey-Cadilhac, Elliott F Miot, Wilfried Saron, Ashley St John, Ghizlane Maarifi, Yingzi Liu, …
09/01/2026

Résumé

Mouse model Cell-cell communication Antiviral restriction factors LRRC15 Dermal fibroblasts Skin immunology Mosquito bite Single-cell transcriptomics West Nile virus Mosquito bite-initiated skin infection Arbovirus transmission
Cutaneous events determining transmission of mosquito-borne orthoflaviviruses remain largely uncharacterized. Here, we report single-cell RNA-sequencing of skin from immunocompetent mice exposed to West Nile virus-infected mosquitoes, capturing early response at a critical transmission bottleneck. Skin-resident fibroblasts, keratinocytes, and myeloid cells were exposed to infectious saliva. At the bite site, neutrophils and mast cells diminished, while lymphoid cells augmented. Cell-cell communication analysis showed that structural skin cells activate immune signaling targeting myeloid populations, which signal to lymphoid cells. Transcriptional profiling revealed cell subtype-specific responses integrating immune activation, skin repair and metabolic remodeling. Using in vivo gene silencing, we demonstrated that fibroblast-expressed LRRC15 (leucine rich repeat-containing 15) functions as a restriction factor, limiting viral replication in skin, viral dissemination to draining lymph nodes, and disease severity. Collectively, our transcriptomicresolution and functional analyses provide cellular and molecular understanding of bite-initiated arboviral transmission, establishing skin-resident fibroblasts as frontline defender cells.

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