The human hemopoietic progenitor hierarchy producing lymphoid and granulocytic-monocytic (myeloid) lineages is unclear. Multiple progenitor populations produce lymphoid and myeloid cells, but remain incompletely characterized. Here, we demonstrated cord blood lympho-myeloid containing progenitor populations - the lymphoid-primed multi-potential progenitor (LMPP), granulocyte-macrophage progenitor (GMP) and multi-lymphoid progenitor (MLP) - were functionally and transcriptionally distinct and heterogeneous at the clonal level, with progenitors of many different functional potentials present. Though most progenitors had uni-lineage myeloid or lymphoid potential, bi- and rarer multi-lineage progenitors occurred in LMPP, GMP and MLP. This, coupled with single cell expression analyses, suggested a continuum of progenitors execute lymphoid and myeloid differentiation rather than only uni-lineage progenitors being present downstream of stem cells.
Highlights d Biallelic C/EBPa and GATA-2 ZnF1 mutations synergize during leukemogenesis d GATA-2 ZnF1 mutation generates an erythroid-permissive chromatin state d C/EBPa and GATA-2 mutant NMPs show ectopic erythroid lineage potential d Transformed leukemic NMPs are bipotent neutrophilerythroid leukemia-initiating cells
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