4.7 Article

Histone acetyltransferase activity of MOF is required for adult but not early fetal hematopoiesis in mice

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BLOOD
卷 129, 期 1, 页码 48-59

出版社

AMER SOC HEMATOLOGY
DOI: 10.1182/blood-2016-05-714568

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资金

  1. CURE Childhood Cancer Research Grant (D.G.V.)
  2. National Institutes of Health (NIH)
  3. National Cancer Institute grants [P01 CA66996, R01 CA140575]
  4. Leukemia and Lymphoma Society
  5. Gabrielle's Angel Research Foundation
  6. Department of Defense Bone Marrow Failure Postdoctoral Fellowship Award [W81XWH-12-1-0568]
  7. NIH, National Cancer Institute grants [R01 CA129537, R01 CA154320]
  8. NIH Memorial Sloan Kettering Cancer Center Support Grant [P30 CA008748]

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K(lysine) acetyltransferase 8 (KAT8, also known as MOF) mediates the acetylation of histone H4 at lysine 16 (H4K16ac) and is crucial for murine embryogenesis. Lysine acetyltransferases have been shown to regulate various stages of normal hematopoiesis. However, the function of MOF in hematopoietic stem cell (HSC) development has not yet been elucidated. We set out to study the role of MOF in general hematopoiesis by using a Vav1-cre-induced conditional murine Mofknockout system and found that MOF is critical for hematopoietic cell maintenance and HSC engraftment capacity in adult hematopoiesis. Rescue experiments with a MOF histone acetyltransferase domain mutant illustrated the requirement for MOF acetyltransferase activity in the clonogenic capacity of HSCs and progenitors. In stark contrast, fetal steadystate hematopoiesis at embryonic day (E) 14.5 was not affected by homozygous Mofdeletion despite dramatic loss of global H4K16ac. Hematopoietic defects start manifesting in late gestation at E17.5. The discovery that MOF and its H4K16ac activity are required for adult but not early and midgestational hematopoiesis supports the notion that multiple chromatin regulators may be crucial for hematopoiesis at varying stages of development. MOF is therefore a developmental-stage-specific chromatin regulator found to be essential for adult but not early fetal hematopoiesis. (Blood. 2017;129(1):48-59)

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