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SOX17 integrates HOXA and arterial programs in hemogenic endothelium to drive definitive lympho-myeloid hematopoiesis

机译:SOX17将Hoxa和动脉术中的血液发生,以驱动明确的淋巴 - 髓鞘血液

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SOX17 has been implicated in arterial specification and the maintenance of hematopoietic stem cells (HSCs) in the murine embryo. However, knowledge about molecular pathways and stage-specific effects of SOX17 in humans remains limited. Here, using SOX17-knockout and SOX17-inducible human pluripotent stem cells (hPSCs), paired with molecular profiling studies, we reveal that SOX17 is a master regulator of HOXA and arterial programs in hemogenic endothelium (HE) and is required for the specification of HE with robust lympho-myeloid potential and DLL4 CXCR4 phenotype resembling arterial HE at the sites of HSC emergence. Along with the activation of NOTCH signaling, SOX17 directly activates CDX2 expression, leading to the upregulation of the HOXA cluster genes. Since deficiencies in HOXA and NOTCH signaling contribute to the impaired in?vivo engraftment of hPSC-derived hematopoietic cells, the identification of SOX17 as a key regulator linking arterial and HOXA programs in HE may help to program HSC fate from hPSCs.
机译:SOX17已涉及动脉说明书和鼠胚胎中的造血干细胞(HSC)的维持。然而,有关人类中SOX17的分子途径和阶段特异性效果的知识仍然有限。在这里,使用SOX17-kexpoutout和Sox17-诱导的人多能干细胞(HPSC),与分子分析研究配对,我们揭示了SOX17是血清生物和动脉计划中的血动血管内皮(HE)的常规调节因子,并且需要规格他具有强大的淋巴 - 骨髓潜力和DLL4 CXCR4表型,类似于HSC出现的动脉何。随着缺口信号传导的激活,SOX17直接激活CDX2表达,导致Hoxa群集基因的上调。由于Hoxa和Notch信号传导的缺陷,因此有助于HPSC衍生的造血细胞的体内植入受损,因此SOX17作为连接动脉和Hoxa计划的关键调节器的鉴定可能有助于从HPSC编程HSC命运。

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