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Plasmacytoid dendritic cells protect from viral bronchiolitis and asthma through semaphorin 4a-mediated T reg expansion

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Version 3 2024-06-19, 09:45
Version 2 2024-06-06, 12:41
Version 1 2022-03-21, 08:41
journal contribution
posted on 2024-06-19, 09:45 authored by JP Lynch, RB Werder, Z Loh, MAA Sikder, B Curren, V Zhang, MJ Rogers, K Lane, J Simpson, SB Mazzone, K Spann, J Hayball, K Diener, ML Everard, CC Blyth, C Forstner, PG Dennis, N Murtaza, M Morrison, P Cuív, P Zhang, A Haque, GR Hill, PD Sly, JW Upham, S Phipps
Respiratory syncytial virus–bronchiolitis is a major independent risk factor for subsequent asthma, but the causal mechanisms remain obscure. We identified that transient plasmacytoid dendritic cell (pDC) depletion during primary Pneumovirus infection alone predisposed to severe bronchiolitis in early life and subsequent asthma in later life after reinfection. pDC depletion ablated interferon production and increased viral load; however, the heightened immunopathology and susceptibility to subsequent asthma stemmed from a failure to expand functional neuropilin-1+ regulatory T (T reg) cells in the absence of pDC-derived semaphorin 4a (Sema4a). In adult mice, pDC depletion predisposed to severe bronchiolitis only after antibiotic treatment. Consistent with a protective role for the microbiome, treatment of pDC-depleted neonates with the microbial-derived metabolite propionate promoted Sema4a-dependent T reg cell expansion, ameliorating both diseases. In children with viral bronchiolitis, nasal propionate levels were decreased and correlated with an IL-6high/IL-10low microenvironment. We highlight a common but age-related Sema4a-mediated pathway by which pDCs and microbial colonization induce T reg cell expansion to protect against severe bronchiolitis and subsequent asthma.

History

Journal

Journal of Experimental Medicine

Volume

215

Pagination

537-557

Location

Birmingham, Ala.

Open access

  • Yes

ISSN

0022-1007

eISSN

1540-9538

Language

eng

Publication classification

C1 Refereed article in a scholarly journal

Issue

2

Publisher

Rockefeller University Press