Alveolar macrophages and lung dendritic cells sense RNA and drive mucosal IgA responses

J Bessa, A Jegerlehner, HJ Hinton… - The Journal of …, 2009 - journals.aai.org
J Bessa, A Jegerlehner, HJ Hinton, P Pumpens, P Saudan, P Schneider, MF Bachmann
The Journal of Immunology, 2009journals.aai.org
The mechanisms regulating systemic and mucosal IgA responses in the respiratory tract are
incompletely understood. Using virus-like particles loaded with single-stranded RNA as a
ligand for TLR7, we found that systemic vs mucosal IgA responses in mice were differently
regulated. Systemic IgA responses following sc immunization were T cell independent and
did not require TACI or TGFβ, whereas mucosal IgA production was dependent on Th cells,
TACI, and TGFβ. Strikingly, both responses required TLR7 signaling, but systemic IgA …
Abstract
The mechanisms regulating systemic and mucosal IgA responses in the respiratory tract are incompletely understood. Using virus-like particles loaded with single-stranded RNA as a ligand for TLR7, we found that systemic vs mucosal IgA responses in mice were differently regulated. Systemic IgA responses following sc immunization were T cell independent and did not require TACI or TGFβ, whereas mucosal IgA production was dependent on Th cells, TACI, and TGFβ. Strikingly, both responses required TLR7 signaling, but systemic IgA depended upon TLR7 signaling directly to B cells whereas mucosal IgA required TLR7 signaling to lung dendritic cells and alveolar macrophages. Our data show that IgA switching is controlled differently according to the cell type receiving TLR signals. This knowledge should facilitate the development of IgA-inducing vaccines.
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