Individual cells take lineage commitment decisions in a way that is not necessarily uniform. We address this issue by characterising transcriptional changes in cord blood-derived CD34+ cells at the single-cell level and integrating data with cell division history and morphological changes determined by time-lapse microscopy. We show that major transcriptional changes leading to a multilineage-primed gene expression state occur very rapidly during the first cell cycle. One of the 2 stable lineage-primed patterns emerges gradually in each cell with variable timing. Some cells reach a stable morphology and molecular phenotype by the end of the first cell cycle and transmit it clonally. Others fluctuate between the 2 phenotypes over several cel...
Molecular regulation of cell fate decisions underlies health and disease. To identify molecules that...
International audienceBackground: Mature blood cells arise from hematopoietic stem cells in the bone...
Gene expression heterogeneity in the pluripotent state of mouse embryonic stem cells (mESCs) has bee...
<div><p>Individual cells take lineage commitment decisions in a way that is not necessarily uniform....
Blood stem cells need to both perpetuate themselves (self-renew) and differentiate into all mature b...
How the molecular programs of differentiated cells develop as cells transit from multipotency throug...
Despite intensively studies, the fundamental mechanisms of cell fate decision during cellular differ...
International audienceWhen human cord blood–derived CD34+ cells are induced to differentiate, they u...
Understanding how differentiation programs originate from the gene-expression 'landscape' of hematop...
Blood formation is believed to occur through stepwise progression of haematopoietic stem cells (HSCs...
Lineage tracing reveals hematopoietic stem cell (HSC) fates, while single-cell RNA sequencing identi...
Hematopoiesis provides an accessible system for studying the principles underlying cell-fate decisio...
Hematopoietic stem and progenitor cells employ circuits of regulatory genes to integrate development...
Maintenance of the blood system requires balanced cell-fate decisions of haematopoietic stem and pro...
Human hematopoiesis is a dynamic process that starts in utero 18–21 days post-conception. Understand...
Molecular regulation of cell fate decisions underlies health and disease. To identify molecules that...
International audienceBackground: Mature blood cells arise from hematopoietic stem cells in the bone...
Gene expression heterogeneity in the pluripotent state of mouse embryonic stem cells (mESCs) has bee...
<div><p>Individual cells take lineage commitment decisions in a way that is not necessarily uniform....
Blood stem cells need to both perpetuate themselves (self-renew) and differentiate into all mature b...
How the molecular programs of differentiated cells develop as cells transit from multipotency throug...
Despite intensively studies, the fundamental mechanisms of cell fate decision during cellular differ...
International audienceWhen human cord blood–derived CD34+ cells are induced to differentiate, they u...
Understanding how differentiation programs originate from the gene-expression 'landscape' of hematop...
Blood formation is believed to occur through stepwise progression of haematopoietic stem cells (HSCs...
Lineage tracing reveals hematopoietic stem cell (HSC) fates, while single-cell RNA sequencing identi...
Hematopoiesis provides an accessible system for studying the principles underlying cell-fate decisio...
Hematopoietic stem and progenitor cells employ circuits of regulatory genes to integrate development...
Maintenance of the blood system requires balanced cell-fate decisions of haematopoietic stem and pro...
Human hematopoiesis is a dynamic process that starts in utero 18–21 days post-conception. Understand...
Molecular regulation of cell fate decisions underlies health and disease. To identify molecules that...
International audienceBackground: Mature blood cells arise from hematopoietic stem cells in the bone...
Gene expression heterogeneity in the pluripotent state of mouse embryonic stem cells (mESCs) has bee...