Specific bone cells produce DLL4 to generate thymus-seeding progenitors from bone marrow

Production of the cells that ultimately populate the thymus to generate α/β T cells has been controversial, and their molecular drivers remain undefined. Here, we report that specific deletion of bone-producing osteocalcin (Ocn)-expressing cells in vivo markedly reduces T-competent progenitors and t...

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Veröffentlicht in:The Journal of experimental medicine 2015-05, Vol.212 (5), p.759-774
Hauptverfasser: Yu, Vionnie W C, Saez, Borja, Cook, Colleen, Lotinun, Sutada, Pardo-Saganta, Ana, Wang, Ying-Hua, Lymperi, Stefania, Ferraro, Francesca, Raaijmakers, Marc H G P, Wu, Joy Y, Zhou, Lan, Rajagopal, Jayaraj, Kronenberg, Henry M, Baron, Roland, Scadden, David T
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Sprache:eng
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Zusammenfassung:Production of the cells that ultimately populate the thymus to generate α/β T cells has been controversial, and their molecular drivers remain undefined. Here, we report that specific deletion of bone-producing osteocalcin (Ocn)-expressing cells in vivo markedly reduces T-competent progenitors and thymus-homing receptor expression among bone marrow hematopoietic cells. Decreased intrathymic T cell precursors and decreased generation of mature T cells occurred despite normal thymic function. The Notch ligand DLL4 is abundantly expressed on bone marrow Ocn(+) cells, and selective depletion of DLL4 from these cells recapitulated the thymopoietic abnormality. These data indicate that specific mesenchymal cells in bone marrow provide key molecular drivers enforcing thymus-seeding progenitor generation and thereby directly link skeletal biology to the production of T cell-based adaptive immunity.
ISSN:0022-1007
1540-9538
DOI:10.1084/jem.20141843