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Kit 配体在小鼠卵黄囊和体节-性腺-中肾造血中起着关键作用。

Kit ligand has a critical role in mouse yolk sac and aorta-gonad-mesonephros hematopoiesis.

机构信息

MRC Molecular Hematology Unit, MRC Weatherall Institute of Molecular Medicine, Radcliffe Department of Medicine, University of Oxford, Oxford, UK

MRC Molecular Hematology Unit, MRC Weatherall Institute of Molecular Medicine, Radcliffe Department of Medicine, University of Oxford, Oxford, UK.

出版信息

EMBO Rep. 2018 Oct;19(10). doi: 10.15252/embr.201745477. Epub 2018 Aug 30.

Abstract

Few studies report on the requirement for hematopoietic niche factors in the mammalian embryo. Here, we comprehensively analyze the requirement for Kit ligand (Kitl) in the yolk sac and aorta-gonad-mesonephros (AGM) niche. In-depth analysis of loss-of-function and transgenic reporter mouse models show that Kitl-deficient embryos harbor decreased numbers of yolk sac erythro-myeloid progenitor (EMP) cells, resulting from a proliferation defect following their initial emergence. This EMP defect causes a dramatic decrease in fetal liver erythroid cells prior to the onset of hematopoietic stem cell (HSC)-derived erythropoiesis, and a reduction in tissue-resident macrophages. Pre-HSCs in the AGM require Kitl for survival and maturation, but not proliferation. Although Kitl is expressed widely in all embryonic hematopoietic niches, conditional deletion in endothelial cells recapitulates germline loss-of-function phenotypes in AGM and yolk sac, with phenotypic HSCs but not EMPs remaining dependent on endothelial Kitl upon migration to the fetal liver. In conclusion, our data establish Kitl as a critical regulator in the AGM and yolk sac endothelial niche.

摘要

鲜有研究报道造血龛因子在哺乳动物胚胎中的需求。在这里,我们全面分析了 Kit 配体(Kitl)在卵黄囊和主动脉-性腺-中肾(AGM)龛中的需求。对功能丧失和转基因报告小鼠模型的深入分析表明,Kitl 缺陷胚胎中卵黄囊红髓造血祖细胞(EMP)的数量减少,这是由于它们最初出现后的增殖缺陷所致。这种 EMP 缺陷导致胎儿肝脏中红细胞前体细胞在造血干细胞(HSC)衍生的红细胞生成之前急剧减少,并减少组织驻留巨噬细胞。AGM 中的 Pre-HSC 需要 Kitl 来存活和成熟,但不需要增殖。尽管 Kitl 在所有胚胎造血龛中广泛表达,但内皮细胞的条件性缺失可在 AGM 和卵黄囊中重现生殖系功能丧失表型,表型 HSCs 但不是 EMPs 在迁移到胎儿肝脏后仍然依赖内皮细胞 Kitl。总之,我们的数据确立了 Kitl 作为 AGM 和卵黄囊内皮龛中的关键调节因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b04/6172468/c38d64a7179f/EMBR-19-e45477-g002.jpg

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