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造血特异性基因在scl基因缺失的胚胎干细胞体外分化过程中未被诱导表达。

Hematopoietic-specific genes are not induced during in vitro differentiation of scl-null embryonic stem cells.

作者信息

Elefanty A G, Robb L, Birner R, Begley C G

机构信息

The Walter and Eliza Hall Institute of Medical Research, Royal Melbourne Hospital, Parkville, Victoria, Australia.

出版信息

Blood. 1997 Aug 15;90(4):1435-47.

PMID:9269761
Abstract

The helix-loop-helix transcription factor, scl, plays an essential role in hematopoietic development. Embryos in which the gene has been disrupted fail to develop yolk sac erythropoiesis, and scl-null embryonic stem cells do not contribute to hematopoiesis in chimeric mice. To analyze the molecular consequences of scl deficiency, we compared the gene expression profiles of control (wild-type and scl-heterozygous) and scl-null embryonic stem cells differentiated in vitro for up to 12 days. In control and scl-null embryoid bodies the temporal expression pattern of genes associated with the formation of ventral mesoderm, such as Brachyury, bone morphogenetic protein-4, and flk-1, was identical. Similarly, GATA-2, CD34, and c-kit, which are coexpressed in endothelial and hematopoietic lineages, were expressed normally in scl-null embryonic stem cell lines. However, hematopoietic-restricted genes, including the transcription factors GATA-1, EKLF, and PU.1 as well as globin genes and myeloperoxidase, were only expressed in wild-type and scl-heterozygous embryonic stem cells. Indirect immunofluorescence was used to confirm the observations that GATA-1 and globins were only present in control embryoid bodies but that CD34 was found on both control and scl-null embryoid bodies. These data extend the previous gene ablation studies and support a model whereby scl is absolutely required for commitment of a putative hemangioblast to the hematopoietic lineage but that it is dispensable for endothelial differentiation.

摘要

螺旋-环-螺旋转录因子scl在造血发育过程中起着至关重要的作用。该基因被破坏的胚胎无法发育出卵黄囊红细胞生成,并且scl基因缺失的胚胎干细胞在嵌合小鼠中无法参与造血过程。为了分析scl缺乏的分子后果,我们比较了体外分化长达12天的对照(野生型和scl杂合型)和scl基因缺失的胚胎干细胞的基因表达谱。在对照和scl基因缺失的类胚体中,与腹侧中胚层形成相关的基因,如短尾蛋白、骨形态发生蛋白-4和flk-1的时间表达模式是相同的。同样,在内皮和造血谱系中共同表达的GATA-2、CD34和c-kit在scl基因缺失的胚胎干细胞系中也正常表达。然而,包括转录因子GATA-1、EKLF和PU.1以及珠蛋白基因和髓过氧化物酶在内的造血限制性基因仅在野生型和scl杂合型胚胎干细胞中表达。间接免疫荧光用于证实以下观察结果:GATA-1和珠蛋白仅存在于对照类胚体中,而CD34在对照和scl基因缺失的类胚体中均有发现。这些数据扩展了先前的基因敲除研究,并支持了一种模型,即scl对于假定的成血管细胞向造血谱系的定向分化是绝对必需的,但对于内皮分化则是可有可无的。

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