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Gata1 5' 区域含有独特的顺式调控模块,可在红系细胞中指导基因激活,在 HSCs 中指导基因失活。

The Gata1 5' region harbors distinct cis-regulatory modules that direct gene activation in erythroid cells and gene inactivation in HSCs.

机构信息

Department of Medical Biochemistry and.

出版信息

Blood. 2013 Nov 14;122(20):3450-60. doi: 10.1182/blood-2013-01-476911. Epub 2013 Sep 10.

Abstract

GATA1 is a master regulator of hematopoietic differentiation, but Gata1 expression is inactivated in hematopoietic stem cells (HSCs). Using a bacterial artificial chromosome containing the Gata1 gene modified with green fluorescent protein (GFP) reporter, we explored the function of the 3.7-kb Gata1 upstream region (GdC region) that harbors 3 core cis-elements: Gata1 hematopoietic enhancer, double GATA-motif, and CACCC-motif. Transgenic GFP expression directed by the Gata1-BAC faithfully recapitulated the endogenous Gata1 expression pattern. However, deletion of the GdC-region eliminated reporter expression in all hematopoietic cells. To test whether the combination of the core cis-elements represents the regulatory function of the GdC-region, we replaced the region with a 659-bp minigene that linked the three cis-elements (MG-GFP). The GFP reporter expression directed by the MG-GFP BAC fully recapitulated the erythroid-megakaryocytic Gata1 expression. However, the GFP expression was aberrantly increased in the HSCs and was associated with decreases in DNA methylation and abundant GATA2 binding to the transgenic MG-GFP allele. The 3.2-kb sequences interspaced between the Gata1 hematopoietic enhancer and the double GATA-motif were able to recruit DNA methyltransferase 1, thereby exerting a cis-repressive function in the HSC-like cell line. These results indicate that the 3.2-kb interspacing sequences inactivate Gata1 by maintaining DNA-methylation in the HSCs.

摘要

GATA1 是造血分化的主要调节因子,但 Gata1 表达在造血干细胞 (HSCs) 中被失活。使用含有绿色荧光蛋白 (GFP) 报告基因修饰的 Gata1 基因的细菌人工染色体,我们探索了含有 3 个核心顺式元件的 3.7kb Gata1 上游区域 (GdC 区域) 的功能:Gata1 造血增强子、双 GATA 基序和 CACCC 基序。由 Gata1-BAC 指导的转基因 GFP 表达忠实地再现了内源性 Gata1 的表达模式。然而,GdC 区域的缺失消除了所有造血细胞中的报告基因表达。为了测试核心顺式元件的组合是否代表 GdC 区域的调节功能,我们用一个连接三个顺式元件的 659bp 小基因 (MG-GFP) 替换了该区域。由 MG-GFP BAC 指导的 GFP 报告基因表达完全再现了红系巨核细胞 Gata1 的表达。然而,GFP 表达在 HSCs 中异常增加,并伴随着 DNA 甲基化减少和大量 GATA2 结合到转基因 MG-GFP 等位基因。散布在 Gata1 造血增强子和双 GATA 基序之间的 3.2kb 序列能够募集 DNA 甲基转移酶 1,从而在 HSC 样细胞系中发挥顺式抑制功能。这些结果表明,3.2kb 间隔序列通过维持 HSCs 中的 DNA 甲基化来使 Gata1 失活。

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