Developmental trajectory of prehematopoietic stem cell formation from endothelium

Author:

Zhu Qin1ORCID,Gao Peng2ORCID,Tober Joanna3ORCID,Bennett Laura3ORCID,Chen Changya2ORCID,Uzun Yasin2ORCID,Li Yan3,Howell Elizabeth D.3ORCID,Mumau Melanie3ORCID,Yu Wenbao2ORCID,He Bing2,Speck Nancy A.3ORCID,Tan Kai124ORCID

Affiliation:

1. Genomics and Computational Biology Graduate Group, University of Pennsylvania, Philadelphia, PA;

2. Department of Biomedical and Health Informatics, The Children’s Hospital of Philadelphia, Philadelphia, PA; and

3. Department of Cell and Developmental Biology, Abramson Family Cancer Research Institute, Perelman School of Medicine, and

4. Department of Pediatrics, University of Pennsylvania, Philadelphia, PA

Abstract

Abstract Hematopoietic stem and progenitor cells (HSPCs) in the bone marrow are derived from a small population of hemogenic endothelial (HE) cells located in the major arteries of the mammalian embryo. HE cells undergo an endothelial to hematopoietic cell transition, giving rise to HSPCs that accumulate in intra-arterial clusters (IAC) before colonizing the fetal liver. To examine the cell and molecular transitions between endothelial (E), HE, and IAC cells, and the heterogeneity of HSPCs within IACs, we profiled ∼40 000 cells from the caudal arteries (dorsal aorta, umbilical, vitelline) of 9.5 days post coitus (dpc) to 11.5 dpc mouse embryos by single-cell RNA sequencing and single-cell assay for transposase-accessible chromatin sequencing. We identified a continuous developmental trajectory from E to HE to IAC cells, with identifiable intermediate stages. The intermediate stage most proximal to HE, which we term pre-HE, is characterized by increased accessibility of chromatin enriched for SOX, FOX, GATA, and SMAD motifs. A developmental bottleneck separates pre-HE from HE, with RUNX1 dosage regulating the efficiency of the pre-HE to HE transition. A distal candidate Runx1 enhancer exhibits high chromatin accessibility specifically in pre-HE cells at the bottleneck, but loses accessibility thereafter. Distinct developmental trajectories within IAC cells result in 2 populations of CD45+ HSPCs; an initial wave of lymphomyeloid-biased progenitors, followed by precursors of hematopoietic stem cells (pre-HSCs). This multiomics single-cell atlas significantly expands our understanding of pre-HSC ontogeny.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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