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Publication : Cell-intrinsic regulation of murine epidermal Langerhans cells by protein S.

First Author  Tabib Y Year  2018
Journal  Proc Natl Acad Sci U S A Volume  115
Issue  25 Pages  E5736-E5745
PubMed ID  29871951 Mgi Jnum  J:263961
Mgi Id  MGI:6164424 Doi  10.1073/pnas.1800303115
Citation  Tabib Y, et al. (2018) Cell-intrinsic regulation of murine epidermal Langerhans cells by protein S. Proc Natl Acad Sci U S A 115(25):E5736-E5745
abstractText  AXL, a member of the TYRO3, AXL, and MERTK (TAM) receptor tyrosine kinase family, has been shown to play a role in the differentiation and activation of epidermal Langerhans cells (LCs). Here, we demonstrate that growth arrest-specific 6 (GAS6) protein, the predominant ligand of AXL, has no impact on LC differentiation and homeostasis. We thus examined the role of protein S (PROS1), the other TAM ligand acting primarily via TYRO3 and MERTK, in LC function. Genetic ablation of PROS1 in keratinocytes resulted in a typical postnatal differentiation of LCs; however, a significant reduction in LC frequencies was observed in adult mice due to increased apoptosis. This was attributed to altered expression of cytokines involved in LC development and tissue homeostasis within keratinocytes. PROS1 was then excised in LysM(+) cells to target LCs at early embryonic developmental stages, as well as in adult monocytes that also give rise to LCs. Differentiation and homeostasis of LCs derived from embryonic precursors was not affected following Pros1 ablation. However, differentiation of LCs from bone marrow (BM) precursors in vitro was accelerated, as was their capability to reconstitute epidermal LCs in vivo. These reveal an inhibitory role for PROS1 on BM-derived LCs. Collectively, this study highlights a cell-specific regulation of LC differentiation and homeostasis by TAM signaling.
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