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Runx1 在造血祖细胞和干细胞中有不同的时间要求。

Distinct temporal requirements for Runx1 in hematopoietic progenitors and stem cells.

机构信息

Abramson Family Cancer Research Institute and Department of Cell and Developmental Biology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.

出版信息

Development. 2013 Sep;140(18):3765-76. doi: 10.1242/dev.094961. Epub 2013 Aug 7.

Abstract

The transcription factor Runx1 is essential for the formation of yolk sac-derived erythroid/myeloid progenitors (EMPs) and hematopoietic stem cells (HSCs) from hemogenic endothelium during embryogenesis. However, long-term repopulating HSCs (LT-HSCs) persist when Runx1 is conditionally deleted in fetal liver cells, demonstrating that the requirement for Runx1 changes over time. To define more precisely when Runx1 transitions from an essential factor to a homeostatic regulator of EMPs and HSCs, and whether that transition requires fetal liver colonization, we performed conditional, timed deletions of Runx1 between E7.5 and E13.5. We determined that Runx1 loss reduces the formation or function of EMPs up through E10.5. The Runx1 requirement in HSCs ends later, as deletion up to E11.5 eliminates HSCs. At E11.5, there is an abrupt transition to Runx1 independence in at least a subset of HSCs that does not require fetal liver colonization. The transition to Runx1 independence in EMPs is not mediated by other core binding factors (Runx2 and/or Runx3); however, deleting the common non-DNA-binding β subunit (CBFβ) severely compromises LT-HSC function. Hence, the requirements for Runx1 in EMP and HSC formation are temporally distinct, and LT-HSC function is highly reliant on continued core binding factor activity.

摘要

转录因子 Runx1 对于胚胎发生过程中从造血内皮细胞形成卵黄囊衍生的红系/髓系祖细胞(EMPs)和造血干细胞(HSCs)是必不可少的。然而,当在胎肝细胞中条件性缺失 Runx1 时,长期重建造血干细胞(LT-HSCs)仍然存在,这表明 Runx1 的需求随时间而变化。为了更精确地定义 Runx1 何时从 EMP 和 HSCs 的必需因子转变为稳态调节因子,以及该转变是否需要胎肝定植,我们在 E7.5 和 E13.5 之间进行了条件性、定时的 Runx1 缺失。我们确定 Runx1 缺失会减少 EMP 的形成或功能,直至 E10.5。HSCs 中 Runx1 的需求结束得更晚,因为直到 E11.5 的缺失会消除 HSCs。在 E11.5,至少在不需要胎肝定植的 HSCs 的一部分中,会突然过渡到 Runx1 独立性。EMPs 向 Runx1 独立性的转变不是由其他核心结合因子(Runx2 和/或 Runx3)介导的;然而,删除常见的非 DNA 结合β亚基(CBFβ)会严重损害 LT-HSC 的功能。因此,Runx1 在 EMP 和 HSC 形成中的需求在时间上是不同的,LT-HSC 的功能高度依赖于持续的核心结合因子活性。

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