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Functionally distinct subsets of lineage-biased multipotent progenitors control blood production in normal and regenerative condition

机译:在正常和再生条件下,沿袭偏向的多能祖细胞在功能上各不相同的子集控制着血液的产生

摘要

Despite great advances in understanding the mechanisms underlying blood production, lineage specification at the level of multipotent progenitors (MPPs) remains poorly understood. Here, we show that MPP2 and MPP3 are distinct myeloid-biased MPP subsets that work together with lymphoid-primed MPP4 cells to control blood production. We find that all MPPs are produced in parallel by hematopoietic stem cells (HSCs), but with different kinetics and at variable levels depending on hematopoietic demands. We also show that the normally rare myeloid-biased MPPs are transiently overproduced by HSCs in regenerating conditions, hence supporting myeloid amplification to rebuild the hematopoietic system. This shift is accompanied by a reduction in self-renewal activity in regenerating HSCs and reprogramming of MPP4 fate toward the myeloid lineage. Our results support a dynamic model of blood development in which HSCs convey lineage specification through independent production of distinct lineage-biased MPP subsets that, in turn, support lineage expansion and differentiation.
机译:尽管在了解血液产生机理方面取得了很大的进步,但在多能祖细胞(MPPs)水平上的血统规范仍然知之甚少。在这里,我们显示MPP2和MPP3是与髓样MPP4细胞一起控制血液生成的独特的,偏重于髓样的MPP子集。我们发现所有MPP都是由造血干细胞(HSC)并行产生的,但具有不同的动力学,并且根据造血需求的不同而不同。我们还显示,正常情况下,稀有的偏于骨髓的MPP在再生条件下会短暂地被HSC过度生产,从而支持髓样扩增以重建造血系统。这种转变伴随着再生HSCs和MPP4命运向髓系谱系的重新编程中自我更新活性的降低。我们的结果支持血液发育的动态模型,在该模型中,HSC通过独立产生不同谱系偏倚的MPP子集来表达谱系规范,进而支持谱系扩展和分化。

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