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Vitamin A-Retinoic Acid Signaling Regulates Hematopoietic Stem Cell Dormancy. | LitMetric

AI Article Synopsis

  • Dormant hematopoietic stem cells (dHSCs) play a crucial role in blood formation, but their characteristics and regulation are not fully understood.
  • Recent research using single-cell RNA sequencing reveals that the transition from dormancy to active cell division is gradual and involves increased biosynthesis instead of a series of distinct steps.
  • The study also finds that low Myc levels and high retinoic acid program expression are specific to dHSCs, and that vitamin A affects their response to stress, with a vitamin A deficiency leading to loss of stem cells and disrupted dormancy.

Article Abstract

Dormant hematopoietic stem cells (dHSCs) are atop the hematopoietic hierarchy. The molecular identity of dHSCs and the mechanisms regulating their maintenance or exit from dormancy remain uncertain. Here, we use single-cell RNA sequencing (RNA-seq) analysis to show that the transition from dormancy toward cell-cycle entry is a continuous developmental path associated with upregulation of biosynthetic processes rather than a stepwise progression. In addition, low Myc levels and high expression of a retinoic acid program are characteristic for dHSCs. To follow the behavior of dHSCs in situ, a Gprc5c-controlled reporter mouse was established. Treatment with all-trans retinoic acid antagonizes stress-induced activation of dHSCs by restricting protein translation and levels of reactive oxygen species (ROS) and Myc. Mice maintained on a vitamin A-free diet lose HSCs and show a disrupted re-entry into dormancy after exposure to inflammatory stress stimuli. Our results highlight the impact of dietary vitamin A on the regulation of cell-cycle-mediated stem cell plasticity. VIDEO ABSTRACT.

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Source
http://dx.doi.org/10.1016/j.cell.2017.04.018DOI Listing

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