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转录因子GATA-1对红系基因表达的全局调控

Global regulation of erythroid gene expression by transcription factor GATA-1.

作者信息

Welch John J, Watts Jason A, Vakoc Christopher R, Yao Yu, Wang Hao, Hardison Ross C, Blobel Gerd A, Chodosh Lewis A, Weiss Mitchell J

机构信息

The Children's Hospital of Philadelphia, Division of Hematology, University of Pennsylvania, Philadelphia, PA 19104, USA.

出版信息

Blood. 2004 Nov 15;104(10):3136-47. doi: 10.1182/blood-2004-04-1603. Epub 2004 Aug 5.

Abstract

Transcription factor GATA-1 is required for erythropoiesis, yet its full actions are unknown. We performed transcriptome analysis of G1E-ER4 cells, a GATA-1-null erythroblast line that undergoes synchronous erythroid maturation when GATA-1 activity is restored. We interrogated more than 9000 transcripts at 6 time points representing the transition from late burst forming unit-erythroid (BFU-E) to basophilic erythroblast stages. Our findings illuminate several new aspects of GATA-1 function. First, the large number of genes responding quickly to restoration of GATA-1 extends the repertoire of its potential targets. Second, many transcripts were rapidly down-regulated, highlighting the importance of GATA-1 in gene repression. Third, up-regulation of some known GATA-1 targets was delayed, suggesting that auxiliary factors are required. For example, induction of the direct GATA-1 target gene beta major globin was late and, surprisingly, required new protein synthesis. In contrast, the gene encoding Fog1, which cooperates with GATA-1 in beta globin transcription, was rapidly induced independently of protein synthesis. Guided by bioinformatic analysis, we demonstrated that selected regions of the Fog1 gene exhibit enhancer activity and in vivo occupancy by GATA-1. These findings define a regulatory loop for beta globin expression and, more generally, demonstrate how transcriptome analysis can be used to generate testable hypotheses regarding transcriptional networks.

摘要

转录因子GATA-1是红细胞生成所必需的,但其全部作用尚不清楚。我们对G1E-ER4细胞进行了转录组分析,这是一种GATA-1缺失的成红细胞系,当GATA-1活性恢复时,它会经历同步的红细胞成熟过程。我们在6个时间点对9000多个转录本进行了研究,这些时间点代表了从晚期红细胞爆式形成单位(BFU-E)到嗜碱性成红细胞阶段的转变。我们的发现揭示了GATA-1功能的几个新方面。首先,大量对GATA-1恢复迅速做出反应的基因扩展了其潜在靶标的范围。其次,许多转录本迅速下调,突出了GATA-1在基因抑制中的重要性。第三,一些已知GATA-1靶标的上调延迟,表明需要辅助因子。例如,直接GATA-1靶基因β-珠蛋白的诱导较晚,而且令人惊讶的是,需要新的蛋白质合成。相比之下,与GATA-1在β-珠蛋白转录中协同作用的Fog1编码基因则独立于蛋白质合成而迅速被诱导。在生物信息学分析的指导下,我们证明了Fog1基因的选定区域具有增强子活性,并在体内被GATA-1占据。这些发现定义了β-珠蛋白表达的调控环,更普遍地说,证明了转录组分析如何可用于生成关于转录网络的可测试假设。

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