首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >The Notch1 transcriptional activation domain is required for development and reveals a novel role for Notch1 signaling in fetal hematopoietic stem cells.
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The Notch1 transcriptional activation domain is required for development and reveals a novel role for Notch1 signaling in fetal hematopoietic stem cells.

机译:Notch1转录激活结构域是发育所必需的,它揭示了Notch1信号在胎儿造血干细胞中的新作用。

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摘要

Notch1 is required to generate the earliest embryonic hematopoietic stem cells (HSCs); however since Notch-deficient embryos die early in gestation, additional functions for Notch in embryonic HSC biology have not been described. We used two complementary genetic models to address this important biological question. Unlike Notch1-deficient mice, mice lacking the conserved Notch1 transcriptional activation domain (TAD) show attenuated Notch1 function in vivo and survive until late gestation, succumbing to multiple cardiac abnormalities. Notch1 TAD-deficient HSCs emerge and successfully migrate to the fetal liver but are decreased in frequency by embryonic day 14.5. In addition, TAD-deficient fetal liver HSCs fail to compete with wild-type HSCs in bone marrow transplant experiments. This phenotype is independently recapitulated by conditional knockout of Rbpj, a core Notch pathway component. In vitro analysis of Notch1 TAD-deficient cells shows that the Notch1 TAD is important to properly assemble the Notch1/Rbpj/Maml trimolecular transcription complex. Together, these studies reveal an essential role for the Notch1 TAD in fetal development and identify important cell-autonomous functions for Notch1 signaling in fetal HSC homeostasis.
机译:需要Notch1才能产生最早的胚胎造血干细胞(HSC);然而,由于缺刻缺损的胚胎在妊娠早期死亡,因此尚无描述Notch在胚胎HSC生物学中的其他功能。我们使用了两个互补的遗传模型来解决这个重要的生物学问题。与缺缺Notch1的小鼠不同,缺少保守的Notch1转录激活结构域(TAD)的小鼠在体内显示出Notch1的功能减弱,并存活到妊娠后期,从而导致多种心脏异常。 Notch1 TAD缺陷型HSC出现并成功迁移至胎儿肝脏,但在胚胎第14.5天时频率降低。此外,在骨髓移植实验中,TAD缺陷型胎儿肝脏HSC无法与野生型HSC竞争。该表型通过条件性敲除核心Notch途径组分Rbpj独立地概括。 Notch1 TAD缺陷细胞的体外分析表明,Notch1 TAD对正确组装Notch1 / Rbpj / Maml三分子转录复合物很重要。总之,这些研究揭示了Notch1 TAD在胎儿发育中的重要作用,并确定了胎儿HSC稳态中Notch1信号传导的重要细胞自主功能。

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