CXCR4 signaling controls dendritic cell location and activation at steady state and in inflammation

Archive ouverte

Gallego, Carmen | Vétillard, Mathias | Calmette, Joseph | Roriz, Mélanie | Marin-Esteban, Viviana | Evrard, Maximilien | Aknin, Marie-Laure | Pionnier, Nicolas | Lefrançois, Manon | Mercier-Nomé, Françoise | Bertrand, Yves | Suarez, Felipe | Donadieu, Jean | Ng, Lai Guan | Balabanian, Karl | Bachelerie, Françoise | Schlecht-Louf, Géraldine

Edité par CCSD ; American Society of Hematology -

International audience. Dendritic cells (DCs) encompass several cell subsets that collaborate to initiate and regulate immune responses. Proper DC localization determines their function and requires the tightly controlled action of chemokine receptors. All DC subsets express CXCR4, but the genuine contribution of this receptor to their biology has been overlooked. We addressed this question using natural CXCR4 mutants resistant to CXCL12-induced desensitization and harboring a gain of function that cause the warts, hypogammaglobulinemia, infections, and myelokathexis (WHIM) syndrome (WS), a rare immunodeficiency associated with high susceptibility to the pathogenesis of human papillomavirus (HPV). We report a reduction in the number of circulating plasmacytoid DCs (pDCs) in WHIM patients, whereas that of conventional DCs is preserved. This pattern was reproduced in an original mouse model of WS, enabling us to show that the circulating pDC defect can be corrected upon CXCR4 blockade and that pDC differentiation and function are preserved, despite CXCR4 dysfunction. We further identified proper CXCR4 signaling as a critical checkpoint for Langerhans cell and DC migration from the skin to lymph nodes, with corollary alterations of their activation state and tissue inflammation in a model of HPV-induced dysplasia. Beyond providing new hypotheses to explain the susceptibility of WHIM patients to HPV pathogenesis, this study shows that proper CXCR4 signaling establishes a migration threshold that controls DC egress from CXCL12-containing environments and highlights the critical and subset-specific contribution of CXCR4 signal termination to DC biology.

Suggestions

Du même auteur

Neutropenic Mice Provide Insight into the Role of Skin-Infiltrating Neutrophils in the Host Protective Immunity against Filarial Infective Larvae

Archive ouverte | Pionnier, Nicolas | CCSD

International audience

Altered chemotactic response to CXCL12 in patients carrying GATA2 mutations

Archive ouverte | Maciejewski-Duval, Anna | CCSD

International audience. Abstract GATA2 deficiency—formerly described as MonoMAC syndrome; dendritic cells, monocytes, B cells, and natural killer cell deficiency; familial myelodysplastic syndrome/acute myeloid leuk...

Altered chemotactic response to CXCL12 in patients carrying GATA2 ă mutations

Archive ouverte | Maciejewski-Duval, Anna | CCSD

International audience. GATA2 deficiency formerly described as MonoMAC syndrome; dendritic ă cells, monocytes, B cells, and natural killer cell deficiency; familial ă myelodysplastic syndrome/acute myeloid leukemia;...

Chargement des enrichissements...