| Literature DB >> 19880499 |
Esther Carreras1, Sean Turner, Mark Barton Frank, Nicholas Knowlton, Jeanette Osban, Michael Centola, Chae Gyu Park, Amie Simmons, José Alberola-Ila, Susan Kovats.
Abstract
During inflammation, elevated granulocyte macrophage-colony-stimulating factor (GM-CSF) directs the development of new dendritic cells (DCs). This pathway is influenced by environmental factors, and we previously showed that physiologic levels of estradiol, acting through estrogen receptor alpha (ERalpha), promote the GM-CSF-mediated differentiation of a CD11b(+) DC subset from myeloid progenitors (MPs). We now have identified interferon regulatory factor 4 (IRF4), a transcription factor induced by GM-CSF and critical for CD11b(+) DC development in vivo, as a target of ERalpha signaling during this process. In MPs, ERalpha potentiates and sustains GM-CSF induction of IRF4. Furthermore, retroviral delivery of the Irf4 cDNA to undifferentiated ERalpha(-/-) bone marrow cells restored the development of the estradiol/ERalpha-dependent DC population, indicating that an elevated amount of IRF4 protein substitutes for ERalpha signaling. Thus at an early stage in the MP response to GM-CSF, ERalpha signaling induces an elevated amount of IRF4, which leads to a developmental program underlying CD11b(+) DC differentiation.Entities:
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Year: 2009 PMID: 19880499 PMCID: PMC2808152 DOI: 10.1182/blood-2009-08-236935
Source DB: PubMed Journal: Blood ISSN: 0006-4971 Impact factor: 22.113