Integrative Single-Cell RNA-Seq and ATAC-Seq Analysis of Human Developmental Hematopoiesis

Anna Maria Ranzoni(Wellcome/MRC Cambridge Stem Cell Institute), Andrea Tangherloni(Wellcome/MRC Cambridge Stem Cell Institute), Ivan Berest(European Molecular Biology Laboratory), Simone G. Riva(Wellcome/MRC Cambridge Stem Cell Institute), Brynelle Myers(Wellcome/MRC Cambridge Stem Cell Institute), Paulina M. Strzelecka(University of Cambridge), Jiarui Xu(Wellcome/MRC Cambridge Stem Cell Institute), Elisa Panada(Wellcome/MRC Cambridge Stem Cell Institute), Irina Mohorianu(Wellcome/MRC Cambridge Stem Cell Institute), Judith B. Zaugg(European Molecular Biology Laboratory), Ana Cvejic(Wellcome/MRC Cambridge Stem Cell Institute)
Cell stem cell
December 21, 2020
Cited by 333Open Access
Full Text

Abstract

Regulation of hematopoiesis during human development remains poorly defined. Here we applied single-cell RNA sequencing (scRNA-seq) and single-cell assay for transposase-accessible chromatin sequencing (scATAC-seq) to over 8,000 human immunophenotypic blood cells from fetal liver and bone marrow. We inferred their differentiation trajectory and identified three highly proliferative oligopotent progenitor populations downstream of hematopoietic stem cells (HSCs)/multipotent progenitors (MPPs). Along this trajectory, we observed opposing patterns of chromatin accessibility and differentiation that coincided with dynamic changes in the activity of distinct lineage-specific transcription factors. Integrative analysis of chromatin accessibility and gene expression revealed extensive epigenetic but not transcriptional priming of HSCs/MPPs prior to their lineage commitment. Finally, we refined and functionally validated the sorting strategy for the HSCs/MPPs and achieved around 90% enrichment. Our study provides a useful framework for future investigation of human developmental hematopoiesis in the context of blood pathologies and regenerative medicine.


Related Papers

No related papers found

Powered by citation graph analysis