4.8 Article

MafB/c-Maf Deficiency Enables Self-Renewal of Differentiated Functional Macrophages

Journal

SCIENCE
Volume 326, Issue 5954, Pages 867-871

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.1176056

Keywords

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Funding

  1. Ministere d'Enseignement Superieur et de la Recherche and the Societe Francaise de la Hematologie (SFH)
  2. E. S. from the Leukemia and Lymphoma Society of America [5204-06]
  3. Fondation de France (FdF) [2004004150]
  4. SFH
  5. Association for International Cancer Research [05-0079]
  6. Association pour la Recherche sur le Cancer [3857, 3422]
  7. Agence Biomedecine. M. S. directs an Equipe FRM (Fondation pour la Recherche Medicale) [20071210559]

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In metazoan organisms, terminal differentiation is generally tightly linked to cell cycle exit, whereas the undifferentiated state of pluripotent stem cells is associated with unlimited self-renewal. Here, we report that combined deficiency for the transcription factors MafB and c-Maf enables extended expansion of mature monocytes and macrophages in culture without loss of differentiated phenotype and function. Upon transplantation, the expanded cells are nontumorigenic and contribute to functional macrophage populations in vivo. Small hairpin RNA inactivation shows that continuous proliferation of MafB/c-Maf deficient macrophages requires concomitant up-regulation of two pluripotent stem cell-inducing factors, KLF4 and c-Myc. Our results indicate that MafB/c-MafB deficiency renders self-renewal compatible with terminal differentiation. It thus appears possible to amplify functional differentiated cells without malignant transformation or stem cell intermediates.

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