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一种新型锌指蛋白的鉴定,该蛋白结合对Pit-1依赖性生长激素基因表达至关重要的保守元件。

Identification of a novel zinc finger protein binding a conserved element critical for Pit-1-dependent growth hormone gene expression.

作者信息

Lipkin S M, Näär A M, Kalla K A, Sack R A, Rosenfeld M G

机构信息

Eukaryotic Regulatory Biology Program, University of California, San Diego, La Jolla 92093-0648.

出版信息

Genes Dev. 1993 Sep;7(9):1674-87. doi: 10.1101/gad.7.9.1674.

Abstract

The growth hormone (GH) and prolactin genes require the pituitary-specific POU domain transcription factor Pit-1 for their activation. However, additional factors are necessary for the effective expression of these genes. Analysis of evolutionarily conserved sequences in the proximal GH promoter suggests the critical importance of one highly conserved element located between the two Pit-1 response elements. Mutation of this site decreases expression of a transgene in mice > 100-fold. We have identified a major activity binding to this site as a novel member of the Cys/His zinc finger superfamily, referred to as Zn-15. The Zn-15 DNA-binding domain comprises three zinc fingers separated by unusually long linker sequences that would be expected to interrupt specific DNA site recognition. Zn-15 synergizes with Pit-1 to activate the GH promoter in heterologous cell lines in which this promoter is only minimally responsive to Pit-1 alone. Our data suggest that functional interactions between the tissue-specific POU domain factor Pit-1 and this novel zinc finger factor binding to an evolutionarily conserved region in the GH promoter may constitute an important component of the combinatorial code that underlies the effective expression of the GH gene.

摘要

生长激素(GH)和催乳素基因的激活需要垂体特异性的POU结构域转录因子Pit-1。然而,这些基因的有效表达还需要其他因素。对GH近端启动子中进化保守序列的分析表明,位于两个Pit-1反应元件之间的一个高度保守元件至关重要。该位点的突变使小鼠中转基因的表达降低了100倍以上。我们已鉴定出与该位点结合的一种主要活性物质,它是Cys/His锌指超家族的一个新成员,称为Zn-15。Zn-15的DNA结合结构域由三个锌指组成,中间间隔着异常长的连接序列,预计这会干扰对特定DNA位点的识别。在该启动子对单独的Pit-1仅有微弱反应的异源细胞系中,Zn-15与Pit-1协同激活GH启动子。我们的数据表明,组织特异性的POU结构域因子Pit-1与这个结合在GH启动子进化保守区域的新型锌指因子之间的功能相互作用,可能构成了GH基因有效表达所依赖的组合密码的一个重要组成部分。

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