4.6 Article

Interplay between BMP4 and IL-7 in human intrathymic precursor cells

期刊

CELL CYCLE
卷 8, 期 24, 页码 4119-4126

出版社

TAYLOR & FRANCIS INC
DOI: 10.4161/cc.8.24.10149

关键词

human thymus; CD34(+) cells; bone morphogenetic proteins; Hedgehog proteins

资金

  1. Ministerio de Educacion y Ciencia [BFU2006-00651, BFU2007-65520]
  2. Instituto de Salud Carlos III [RD06/0010/0003]
  3. Universidad Complutense/Comunidad Autonoma de Madrid [GR74/07910552]
  4. Universidad Complutense/Grupo Santander [PR34/07-15867]

向作者/读者索取更多资源

Bone morphogenetic proteins (BMPs) play a pivotal role during vertebrate embryogenesis and organogenesis, and have also been described to function in regulating cell fate and determination in self-renewing tissues in adults. Recent results have demonstrated that the different components of the BMP2/4 signaling pathway are expressed in the human thymus. In this study, we provide evidence that BMP4 and IL-7 interplay is important in the maintenance of the human thymic progenitor population. Intrathymic CD34(+) cells express BMP receptors (BMPRIA, BMPRIB, ActRIA, BMPRII), signal transduction molecules (Smad1, 5, 8 and 4), and produce BMP4. Neutralization of endogenous BMP4 by treatment with the antagonist Noggin reduces thymic precursor cell survival, and the addition of exogenous BMP4 decreases their proliferation. The treatment of chimeric human-mouse fetal thymus organ cultures with BMP4 inhibits cell expansion, arrests thymocyte differentiation, and leads to the accumulation of human CD34(+) precursor cells. This effect is mainly attributed to the ability of BMP4 to counteract the IL-7-induced proliferation and differentiation of CD34(+) cells. BMP4 downregulates in the precursor cell population the expression of CD127 and inhibits the IL-7-dependent STAT5 phosphorylation. In addition, BMP signaling is promoted by IL-7. Our results also demonstrate that in thymic progenitors BMPs act downstream of Sonic Hedgehog, previously described to function as a maintenance factor for human intrathymic CD34(+) precursor cells.

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