Title | Ash1l controls quiescence and self-renewal potential in hematopoietic stem cells. |
Publication Type | Journal Article |
Year of Publication | 2015 |
Authors | Jones M, Chase J, Brinkmeier M, Xu J, Weinberg DN, Schira J, Friedman A, Malek S, Grembecka J, Cierpicki T, Dou Y, Camper SA, Maillard I |
Journal | J Clin Invest |
Volume | 125 |
Issue | 5 |
Pagination | 2007-20 |
Date Published | 2015 May |
ISSN | 1558-8238 |
Keywords | Anemia, Aplastic, Animals, Animals, Newborn, Bone Marrow Diseases, Bone Marrow Failure Disorders, Bone Marrow Transplantation, Cell Cycle, Cell Division, Colony-Forming Units Assay, DNA-Binding Proteins, Fluorouracil, Gene Expression Regulation, Developmental, Graft Survival, Hematopoiesis, Hematopoietic Stem Cells, Hemoglobinuria, Paroxysmal, Histone-Lysine N-Methyltransferase, Liver, Liver Transplantation, Mice, Mice, Inbred C57BL, Mice, Transgenic, Multipotent Stem Cells, Myeloid-Lymphoid Leukemia Protein, Proto-Oncogene Proteins, Radiation Chimera, Stem Cell Niche |
Abstract | Rapidly cycling fetal and neonatal hematopoietic stem cells (HSCs) generate a pool of quiescent adult HSCs after establishing hematopoiesis in the bone marrow. We report an essential role for the trithorax group gene absent, small, or homeotic 1-like (Ash1l) at this developmental transition. Emergence and expansion of Ash1l-deficient fetal/neonatal HSCs were preserved; however, in young adult animals, HSCs were profoundly depleted. Ash1l-deficient adult HSCs had markedly decreased quiescence and reduced cyclin-dependent kinase inhibitor 1b/c (Cdkn1b/1c) expression and failed to establish long-term trilineage bone marrow hematopoiesis after transplantation to irradiated recipients. Wild-type HSCs could efficiently engraft when transferred to unirradiated, Ash1l-deficient recipients, indicating increased availability of functional HSC niches in these mice. Ash1l deficiency also decreased expression of multiple Hox genes in hematopoietic progenitors. Ash1l cooperated functionally with mixed-lineage leukemia 1 (Mll1), as combined loss of Ash1l and Mll1, but not isolated Ash1l or Mll1 deficiency, induced overt hematopoietic failure. Our results uncover a trithorax group gene network that controls quiescence, niche occupancy, and self-renewal potential in adult HSCs. |
DOI | 10.1172/JCI78124 |
Alternate Journal | J. Clin. Invest. |
PubMed ID | 25866973 |
PubMed Central ID | PMC4463197 |
Grant List | P30-CA46592 / CA / NCI NIH HHS / United States P30 CA046592 / CA / NCI NIH HHS / United States R01 GM082856 / GM / NIGMS NIH HHS / United States R37-HD30428 / HD / NICHD NIH HHS / United States R01 AI091627 / AI / NIAID NIH HHS / United States R01 HD030428 / HD / NICHD NIH HHS / United States GM07863 / GM / NIGMS NIH HHS / United States T32 HD007505 / HD / NICHD NIH HHS / United States T32 GM007863 / GM / NIGMS NIH HHS / United States R37 HD030428 / HD / NICHD NIH HHS / United States HD007505 / HD / NICHD NIH HHS / United States GM007315 / GM / NIGMS NIH HHS / United States R01-AI091627 / AI / NIAID NIH HHS / United States T32 GM007315 / GM / NIGMS NIH HHS / United States |
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