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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >ATF4 plays a pivotal role in the development of functional hematopoietic stem cells in mouse fetal liver
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ATF4 plays a pivotal role in the development of functional hematopoietic stem cells in mouse fetal liver

机译:ATF4在小鼠胎儿肝脏功能性造血干细胞的发育中起关键作用

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The fetal liver (FL) serves as a predominant site for expansion of functional hematopoietic stem cells (HSCs) during mouse embryogenesis. However, the mechanisms for HSC development in FL remain poorly understood. In this study, we demonstrate that deletion of activating transcription factor 4 (ATF4) significantly impaired hematopoietic development and reduced HSC self-renewal in FL. In contrast, generation of the first HSC population in the aorta-gonad-mesonephros region was not affected. The migration activity of ATF4(-/-) HSCs was moderately reduced. Interestingly, the HSC-supporting ability of both endothelial and stromal cells in FL was significantly compromised in the absence of ATF4. Gene profiling using RNA-seq revealed downregulated expression of a panel of cytokines in ATF4(-/-) stromal cells, including angiopoietin-like protein 3 (Angptl3) and vascular endothelial growth factor A (VEGFA). Addition of Angptl3, but not VEGFA, partially rescued the repopulating defect of ATF4(-/-) HSCs in the culture. Furthermore, chromatin immunoprecipitation assay in conjunction with silencing RNA-mediated silencing and complementary DNA overexpression showed transcriptional control of Angptl3 by ATF4. To summarize, ATF4 plays a pivotal role in functional expansion and repopulating efficiency of HSCs in developing FL, and it acts through upregulating transcription of cytokines such as Angptl3 in the microenvironment.
机译:胎儿肝脏(FL)是小鼠胚胎发生过程中功能性造血干细胞(HSC)扩增的主要部位。然而,FL中HSC发生的机制仍知之甚少。在这项研究中,我们证明了激活转录因子4(ATF4)的删除显着损害了造血发育并减少了FL中HSC的自我更新。相反,在主动脉-性腺-中肾上腺区域的第一个HSC群体的生成不受影响。 ATF4(-/-)HSC的迁移活动被适度降低。有趣的是,在不存在ATF4的情况下,FL中内皮细胞和基质细胞的HSC支持能力显着降低。使用RNA序列的基因分析揭示了ATF4(-/-)基质细胞,包括血管生成素样蛋白3(Angptl3)和血管内皮生长因子A(VEGFA)中一组细胞因子的表达下调。 Angptl3而不是VEGFA的添加部分挽救了培养物中ATF4(-/-)HSCs的重新填充缺陷。此外,染色质免疫沉淀分析与沉默的RNA介导的沉默和互补的DNA过量表达相结合,显示出ATF4对Angptl3的转录控制。综上所述,ATF4在HSC发育成FL中的功能扩展和再填充效率中起着关键作用,并且它通过在微环境中上调细胞因子(例如Angptl3)的转录起作用。

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