首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Loss of the Gata1 Gene IE Exon Leads to Variant Transcript Expression and the Production of a GATA1 Protein Lacking the N-terminal Domain
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Loss of the Gata1 Gene IE Exon Leads to Variant Transcript Expression and the Production of a GATA1 Protein Lacking the N-terminal Domain

机译:Gata1基因IE外显子的丢失导致变异的转录表达和缺乏N末端域的GATA1蛋白的生产。

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摘要

GATA1 is essential for the differentiation of erythroid cells and megakaryocytes. The Gata1 gene is composed of multiple untranslated first exons and five common coding exons. The erythroid first exon (IE exon) is important for Gata1 gene expression in hematopoietic lineages. Because previous IE exon knockdown analyses resulted in embryonic lethality, less is understood about the contribution of the IE exon to adult hematopoiesis. Here, we achieved specific deletion of the floxed IE exon in adulthood using an inducible Cre expression system. In this conditional knock-out mouse line, the Gata1 mRNA level was significantly down-regulated in the megakaryocyte lineage, resulting in thrombocytopenia with a marked proliferation of megakaryocytes. By contrast, in the erythroid lineage, Gata1 mRNA was expressed abundantly utilizing alternative first exons. Especially, the IEb/c and newly identified IEd exons were transcribed at a level comparable with that of the IE exon in control mice. Surprisingly, in the IE-null mouse, these transcripts failed to produce full-length GATA1 protein, but instead yielded GATA1 lacking the N-terminal domain inefficiently. With low level expression of the short form of GATA1, IE-null mice showed severe anemia with skewed erythroid maturation. Notably, the hematological phenotypes of adult IE-null mice substantially differ from those observed in mice harboring conditional ablation of the entire Gata1 gene. The present study demonstrates that the IE exon is instrumental to adult erythropoiesis by regulating the proper level of transcription and selecting the correct transcription start site of the Gata1 gene.
机译:GATA1对于红系细胞和巨核细胞的分化至关重要。 Gata1基因由多个未翻译的第一个外显子和五个常见的编码外显子组成。红系第一个外显子(IE外显子)对于造血谱系中的Gata1基因表达很重要。因为以前的IE外显子敲低分析导致了胚胎致死性,所以人们对IE外显子对成人造血功能的贡献了解较少。在这里,我们使用诱导型Cre表达系统实现了成年后的IE外显子的特异性缺失。在此条件基因敲除小鼠品系中,巨核细胞谱系中的Gata1 mRNA水平显着下调,导致血小板减少,巨核细胞明显增殖。相比之下,在红系谱系中,利用替代的第一个外显子大量表达了Gata1 mRNA。特别是,在对照小鼠中,以与IE外显子相当的水平转录IEb / c和新近鉴定的IEd外显子。令人惊讶地,在IE无效的小鼠中,这些转录物未能产生全长的GATA1蛋白,而是无效地产生了缺少N末端结构域的GATA1。 IE-null小鼠以短形式的GATA1的低水平表达,表现出严重的贫血和偏红细胞成熟。值得注意的是,成年IE-null小鼠的血液学表型与在携带有条件消融整个Gata1基因的小鼠中观察到的显着不同。本研究表明,通过调节适当的转录水平并选择Gata1基因的正确转录起始位点,IE外显子对成人红细胞生成是有帮助的。

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