Abstract
AbstractHematopoietic stem cells (HSCs) have the capacity to differentiate into vastly different types of mature blood cells. The epigenetic mechanisms regulating the multilineage ability, or multipotency, of HSCs are not well understood. To test the hypothesis that cis-regulatory elements that control fate decisions for all lineages are primed in HSCs, we used ATAC-seq to compare chromatin accessibility of HSCs with five unipotent cell types. We observed the highest similarity in accessibility profiles between megakaryocyte progenitors and HSCs, whereas B cells had the greatest number of regions with de novo gain in accessibility during differentiation. Despite these differences, we identified cis-regulatory elements from all lineages that displayed epigenetic priming in HSCs. These findings provide new insights into the regulation of stem cell multipotency, as well as a resource to identify functional drivers of lineage fate.
Funder
National Heart, Lung, and Blood Institute
California Institute for Regenerative Medicine
National Human Genome Research Institute
National Institute of General Medical Sciences
Baskin School of Engineering, UC Santa Cruz
Ken and Glory Levy Fund for RNA Biology
Publisher
Springer Science and Business Media LLC
Subject
Genetics,Molecular Biology
Cited by
24 articles.
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