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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Down-regulation of GATA1 uncouples STAT5-induced erythroid differentiation from stem/progenitor cell proliferation.
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Down-regulation of GATA1 uncouples STAT5-induced erythroid differentiation from stem/progenitor cell proliferation.

机译:GATA1的下调使STAT5诱导的红系分化与干细胞/祖细胞增殖脱钩。

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Previously, we have shown that overexpression of an activated mutant of signal transducer and activator of transcription-5 (STAT5) induces erythropoiesis, impaired myelopoiesis, and an increase in long-term proliferation of human hematopoietic stem/progenitor cells. Because GATA1 is a key transcription factor involved in erythropoiesis, the involvement of GATA1 in STAT5-induced phenotypes was studied by shRNA-mediated knockdown of GATA1. CD34(+) cord blood cells were double transduced with a conditionally active STAT5 mutant and a lentiviral vector expressing a short hairpin against GATA1. Erythropoiesis was completely abolished in the absence of GATA1, indicating that STAT5-induced erythropoiesis is GATA1-dependent. Furthermore, the impaired myelopoiesis in STAT5-transduced cells was restored by GATA1 knockdown. Interestingly, early cobblestone formation was only modestly affected, and long-term growth of STAT5-positive cells was increased in the absence of GATA1, whereby high progenitor numbers were maintained. Thus, GATA1 down-regulation allowed the dissection of STAT5-induced differentiation phenotypes from the effects on long-term expansion of stem/progenitor cells. Gene expression profiling allowed the identification of GATA1-dependent and GATA1-independent STAT5 target genes, and these studies revealed that several proliferation-related genes were up-regulated by STAT5 independent of GATA1, whereas several erythroid differentiation-related genes were found to be GATA1 as well as STAT5 dependent.
机译:以前,我们已经表明,信号转导子和转录激活子5(STAT5)的激活突变体的过表达诱导红细胞生成,骨髓生成受损以及人类造血干/祖细胞的长期增殖增加。因为GATA1是参与红细胞生成的关键转录因子,所以通过shRNA介导的GATA1敲除研究了GATA1在STAT5诱导的表型中的参与。 CD34(+)脐血细胞用条件激活的STAT5突变体和表达针对GATA1的短发夹的慢病毒载体双重转导。在没有GATA1的情况下,红细胞生成被完全消除,这表明STAT5诱导的红细胞生成是GATA1依赖性的。此外,STAT5转导的细胞中的骨髓生成受损可通过GATA1敲低恢复。有趣的是,在不存在GATA1的情况下,早期鹅卵石的形成仅受到了中等程度的影响,并且STAT5阳性细胞的长期生长得以增加,从而保持了高祖细胞数量。因此,GATA1的下调允许从对干细胞/祖细胞长期扩展的影响中分离出STAT5诱导的分化表型。基因表达谱分析可以鉴定出依赖于GATA1和不依赖于GATA1的STAT5靶基因,这些研究表明,与STAT5无关,STAT5上调了几个与增殖相关的基因,而与红系分化相关的基因就是GATA1。以及STAT5相关。

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