造血
生物
祖细胞
细胞生物学
干细胞
红细胞生成
细胞分化
人口
细胞命运测定
血细胞
祖细胞
干细胞因子
免疫学
遗传学
转录因子
基因
社会学
内科学
人口学
贫血
医学
作者
Betsabeh Khoramian Tusi,Samuel L. Wolock,Caleb Weinreb,Yung Hwang,Daniel Hidalgo,Rapolas Žilionis,Ari Waisman,Jun R. Huh,Allon M. Klein,Merav Socolovsky
出处
期刊:Nature
[Springer Nature]
日期:2018-02-21
卷期号:555 (7694): 54-60
被引量:337
摘要
The formation of red blood cells begins with the differentiation of multipotent haematopoietic progenitors. Reconstructing the steps of this differentiation represents a general challenge in stem-cell biology. Here we used single-cell transcriptomics, fate assays and a theory that allows the prediction of cell fates from population snapshots to demonstrate that mouse haematopoietic progenitors differentiate through a continuous, hierarchical structure into seven blood lineages. We uncovered coupling between the erythroid and the basophil or mast cell fates, a global haematopoietic response to erythroid stress and novel growth factor receptors that regulate erythropoiesis. We defined a flow cytometry sorting strategy to purify early stages of erythroid differentiation, completely isolating classically defined burst-forming and colony-forming progenitors. We also found that the cell cycle is progressively remodelled during erythroid development and during a sharp transcriptional switch that ends the colony-forming progenitor stage and activates terminal differentiation. Our work showcases the utility of linking transcriptomic data to predictive fate models, and provides insights into lineage development in vivo.
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