eLife · 2021 · 27 citations · 66 references
Adult Stem CellMouse HscsTranscriptional RegulationSingle Cell SequencingStem Cell MobilizationLong Non-coding RnaHematopoietic Stem CellsExternal StressorsStem CellsCell TransplantationHealth SciencesExternal SignalsGene ExpressionSingle-cell AnalysisFunctional GenomicsCell BiologyInduced Pluripotent Stem CellDevelopmental BiologyStem Cell ResearchSystems BiologyMedicineEmbryonic Stem Cell
Hematopoietic stem cells (HSCs) must ensure adequate blood cell production following distinct external stressors. A comprehensive understanding of in vivo heterogeneity and specificity of HSC responses to external stimuli is currently lacking. We performed single-cell RNA sequencing (scRNA-Seq) on functionally validated mouse HSCs and LSK (Lin-, c-Kit+, Sca1+) progenitors after in vivo pharmacological perturbation of niche signals interferon, granulocyte colony-stimulating factor (G-CSF), and prostaglandin. We identified six HSC states that are characterized by enrichment but not exclusive expression of marker genes. External signals induced rapid transitions between HSC states but transcriptional response varied both between external stimulants and within the HSC population for a given perturbation. In contrast to LSK progenitors, HSCs were characterized by a greater link between molecular signatures at baseline and in response to external stressors. Chromatin analysis of unperturbed HSCs and LSKs by scATAC-Seq suggested some HSC-specific, cell intrinsic predispositions to niche signals. We compiled a comprehensive resource of HSC- and LSK progenitor-specific chromatin and transcriptional features that represent determinants of signal receptiveness and regenerative potential during stress hematopoiesis.
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