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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Chromatin occupancy analysis reveals genome-wide GATA factor switching during hematopoiesis
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Chromatin occupancy analysis reveals genome-wide GATA factor switching during hematopoiesis

机译:染色质占有率分析显示造血过程中全基因组GATA因子转换

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There are many examples of transcription factor families whose members control gene expression profiles of diverse cell types. However, the mechanism by which closely related factors occupy distinct regulatory elements and impart lineage specificity is largely undefined. Here we demonstrate on a genome wide scale that the hematopoietic GATA factors GATA-1 and GATA-2 bind overlapping sets of genes, often at distinct sites, as a means to differentially regulate target gene expression and to regulate the balance between proliferation and differentiation. We also reveal that the GATA switch, which entails a chromatin occupancy exchange between GATA2 and GATA1 in the course of differentiation, operates on more than one-third of GATA1 bound genes. The switch is equally likely to lead to transcriptional activation or repression; and in general, GATA1 and GATA2 act oppo-sitely on switch target genes. In addition, we show that genomic regions cooccupied by GATA2 and the ETS factor ETS1 are strongly enriched for regions marked by H3K4me3 and occupied by Pol II. Finally, by comparing GATA1 occupancy in erythroid cells and megakaryocytes, we find that the presence of ETS factor motifs is a major discriminator of megakaryocyte versus red cell specification.
机译:有许多转录因子家族的实例,其成员控制着多种细胞类型的基因表达谱。但是,密切相关的因素占据不同的调控元件并赋予谱系特异性的机制在很大程度上尚不清楚。在这里,我们在基因组范围内证明了造血GATA因子GATA-1和GATA-2经常在不同的位点结合重叠的基因集,以此作为差异调节靶基因表达和调节增殖与分化之间平衡的一种手段。我们还揭示了GATA开关(在分化过程中需要在GATA2和GATA1之间进行染色质占据交换)对GATA1结合的基因的三分之一以上起作用。转换同样有可能导致转录激活或抑制。通常,GATA1和GATA2相反地作用于转换靶基因。此外,我们表明,由GATA2和ETS因子ETS1共同占据的基因组区域对于由H3K4me3标记并由Pol II占据的区域而言非常丰富。最后,通过比较红系细胞和巨核细胞中GATA1的占有率,我们发现ETS因子基序的存在是巨核细胞与红细胞规格的主要区别。

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