4.7 Article

Bid protects the mouse hematopoietic system following hydroxyurea-induced replicative stress

Journal

CELL DEATH AND DIFFERENTIATION
Volume 19, Issue 10, Pages 1602-1612

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/cdd.2012.38

Keywords

Bid; DNA damage response; hematopoiesis; Bcl-2 family

Funding

  1. NIH [R01 HL088347]
  2. Gabrelle's Angel Foundation Scholar award
  3. Kimmel Scholar award
  4. ACS [IRG58-009-47]
  5. NIH
  6. Kimmel Foundation
  7. Gabrielle's Angel Foundation

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Hematopoietic stem cells (HSCs) possess long-term self-renewal capacity and multipotent differentiative capacity, to maintain the hematopoietic system. Long-term hematopoietic homeostasis requires effective control of genotoxic damage to maintain HSC function and prevent propagation of deleterious mutations. Here we investigate the role of the BH3-only Bcl-2 family member Bid in the response of murine hematopoietic cells to long-term replicative stress induced by hydroxyurea (HU). The PI3-like serine/threonine kinase, ATR, initiates the DNA damage response (DDR) to replicative stress. The pro-apoptotic Bcl- 2 family member, Bid, facilitates this response to replicative stress in hematopoietic cells, but the in vivo role of this DDR function of Bid has not been defined. Surprisingly, we demonstrate that long-term HU treatment expands wild-type myeloid progenitor cells (MPCs) and HSC-enriched Lin(-)Sca1 (+) Kit(+) (LSK) cells to maintain bone marrow function as measured by long-term competitive repopulating ability. Bid(-/-) MPCs demonstrate increased sensitivity to HU and are depleted. Bid(-/-) LSK cells demonstrate increased mobilization manifest by increased Bromodeoxyuridine (BrdU) incorporation. Bid(-/-) MPCs and LSK cells are relatively depleted, however, and bone marrow from Bid(-/-) mice demonstrates decreased long-term competitive repopulating ability in both primary and secondary transplants. We thus describe a survival function of Bid in hematopoiesis in the setting of chronic replicative stress. Cell Death and Differentiation (2012) 19, 1602-1612; doi:10.1038/cdd. 2012.38; published online 20 April 2012

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