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GATA2 依赖性和区域特异性调节小鼠中脑 Gata2 转录。

GATA2-dependent and region-specific regulation of Gata2 transcription in the mouse midbrain.

机构信息

Center for Tsukuba Advanced Research Alliance, University of Tsukuba, 1-1-1 Tennodai, Tsukuba 305-8577, Japan.

出版信息

Genes Cells. 2009 May;14(5):569-82. doi: 10.1111/j.1365-2443.2009.01289.x. Epub 2009 Apr 13.

Abstract

Transcription factor GATA2 is expressed in numerous mammalian tissues, including neural, hematopoietic, cardiovascular and urogenital systems, and yet it plays important roles in the regulation of tissue-restricted gene expression. The Gata2 gene itself is also under stringent tissue-specific control and multiple cis-regulatory domains have been identified in the Gata2 locus. In this study we sought out and then examined in detail the domains that regulate Gata2 in the midbrain. We identified two discrete domains in the Gata2 promoter that direct midbrain expression; these distal 5H and proximal 2H regulatory domains are located 3.0 and 1.9 kbp, respectively, upstream of the transcriptional initiation site. Importantly, both domains contain GATA factor binding sites. Our analyses further revealed that GATA2 is essential for Gata2 gene expression in the midbrain, whereas GATA3 is not. Both the 2H and 5H domains have the independent ability to activate Gata2 gene expression in the midbrain superior colliculus, whereas the distal-5H domain is additionally capable of activating Gata2 transcription in the inferior colliculus. These results demonstrate that two distinct regulatory domains contribute to the Gata2 gene expression in the mouse midbrain and that Gata2 midbrain transcription is under positive autoregulation.

摘要

转录因子 GATA2 在许多哺乳动物组织中表达,包括神经、造血、心血管和泌尿生殖系统,但其在调节组织特异性基因表达方面起着重要作用。Gata2 基因本身也受到严格的组织特异性控制,在 Gata2 基因座中已经鉴定出多个顺式调控区。在这项研究中,我们寻找并详细研究了调节中脑 Gata2 的区域。我们在 Gata2 启动子中鉴定出两个离散的区域,这些区域分别位于转录起始位点上游 3.0 和 1.9 kbp,可指导中脑表达;这些远侧 5H 和近侧 2H 调控区。重要的是,这两个区域都包含 GATA 因子结合位点。我们的分析进一步表明,GATA2 对于中脑 Gata2 基因表达是必需的,而 GATA3 则不是。2H 和 5H 两个区域都具有在中脑上丘中激活 Gata2 基因表达的独立能力,而远侧 5H 区域还具有在下丘中激活 Gata2 转录的能力。这些结果表明,两个不同的调控区有助于小鼠中脑 Gata2 基因的表达,并且 Gata2 中脑转录受到正反馈调节。

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