Sequential BMP7/TGF-β1 signaling and microbiota instruct mucosal Langerhans cell differentiation

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Abstract

Mucosal Langerhans cells (LCs) originate from pre-dendritic cells and monocytes. However, the mechanisms involved in their in situ development remain unclear. Here, we demonstrate that the differentiation of murine mucosal LCs is a two-step process. In the lamina propria, signaling via BMP7-ALK3 promotes translocation of LC precursors to the epithelium. Within the epithelium, TGF-β1 finalizes LC differentiation, and ALK5 is crucial to this process. Moreover, the local microbiota has a major impact on the development of mucosal LCs, whereas LCs in turn maintain mucosal homeostasis and prevent tissue destruction. These results reveal the differential and sequential role of TGF-β1 and BMP7 in LC differentiation and highlight the intimate interplay of LCs with the microbiota.

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Capucha, T., Koren, N., Nassar, M., Heyman, O., Nir, T., Levy, M., … Hovav, A. H. (2018). Sequential BMP7/TGF-β1 signaling and microbiota instruct mucosal Langerhans cell differentiation. Journal of Experimental Medicine, 215(2), 481–500. https://doi.org/10.1084/jem.20171508

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