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GATA结合因子(FOG)-1和FOG-2对多个性腺启动子的GATA依赖性活性具有不同的抑制作用。

Friend of GATA (FOG)-1 and FOG-2 differentially repress the GATA-dependent activity of multiple gonadal promoters.

作者信息

Robert Nicholas M, Tremblay Jacques J, Viger Robert S

机构信息

Ontogeny and Reproduction Research Unit, Centre Hospitalier de l'Université Laval (CHUL) Research Centre, Ste-Foy, Québec, Canada G1V 4G2.

出版信息

Endocrinology. 2002 Oct;143(10):3963-73. doi: 10.1210/en.2002-220280.

Abstract

The GATA transcription factors are crucial regulators of cell-specific gene expression in many tissues. GATA proteins are abundantly expressed in gonads of several species. In vertebrates, GATA factors are expressed from the onset of gonadal development and are later found in multiple cell lineages of both the testis and ovary. GATA factors activate transcription of several gonadal genes including the hormone-encoding genes Müllerian inhibiting substance (MIS) and inhibin alpha and genes involved in steroidogenesis like P450 aromatase (Cyp 19) and steroidogenic acute regulatory protein. GATA factors also contribute to cell-specific gonadal gene expression through cooperative interactions with other transcription factors such as the orphan nuclear receptor steroidogenic factor-1. GATA transcriptional activity is also modulated by two multitype zinc finger proteins called the Friend of GATA (FOG) proteins, which were cloned as GATA-specific cofactors. The FOG proteins (FOG-1 and FOG-2) can act as either enhancers or repressors of GATA transcriptional activity, depending on the cell and promoter context. We now report that the FOG proteins are coexpressed with GATA factors in testicular cells in which they differentially repress the promoter activities of several GATA-dependent target genes. These findings implicate the FOG proteins in the regulation of GATA-dependent gene transcription in the gonads.

摘要

GATA转录因子是许多组织中细胞特异性基因表达的关键调节因子。GATA蛋白在多个物种的性腺中大量表达。在脊椎动物中,GATA因子从性腺发育开始就有表达,随后在睾丸和卵巢的多种细胞谱系中被发现。GATA因子可激活多个性腺基因的转录,包括编码激素的苗勒管抑制物质(MIS)和抑制素α基因,以及参与类固醇生成的基因,如P450芳香化酶(Cyp 19)和类固醇生成急性调节蛋白。GATA因子还通过与其他转录因子(如孤儿核受体类固醇生成因子-1)的协同相互作用,促进细胞特异性性腺基因表达。GATA转录活性也受到两种多类型锌指蛋白(称为GATA之友(FOG)蛋白)的调节,这两种蛋白被克隆为GATA特异性辅因子。FOG蛋白(FOG-1和FOG-2)可作为GATA转录活性的增强子或抑制子,具体取决于细胞和启动子环境。我们现在报告,FOG蛋白与GATA因子在睾丸细胞中共表达,在这些细胞中它们差异抑制几个GATA依赖靶基因的启动子活性。这些发现表明FOG蛋白参与性腺中GATA依赖基因转录的调控。

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