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核糖体蛋白基因rpL30和rpL32的启动子对转录因子GABP的比较利用情况

Comparative utilization of transcription factor GABP by the promoters of ribosomal protein genes rpL30 and rpL32.

作者信息

Genuario R R, Kelley D E, Perry R P

机构信息

Institute for Cancer Research, Fox Chase Cancer Center, Philadelphia, PA 19111.

出版信息

Gene Expr. 1993;3(3):279-88.

Abstract

The promoters of two mouse ribosomal protein genes, rpL30 and rpL32, contain a similarly located element, called beta, which was previously shown to interact with the same nuclear protein. This protein has now been identified as the GA-binding protein (GABP) on the basis of studies with recombinant GABP subunits and GABP-specific antibodies. The rpL30 element consists of two contiguous GABP binding sites that can form a tetrameric complex with two alpha and two beta 1 subunits of GABP, as well as dimeric complexes with alpha and either the beta 1 or beta 2 subunit. The rpL32 element consists of a solitary GABP binding site that can form only dimeric complexes with alpha and beta 1 or beta 2. Footprint analysis and a comparison of the effects of mutations in each of the tandem rpL30 binding sites demonstrated that the site nearest to the transcriptional start point is strongly favored for dimeric complex formation and is correspondingly more important for rpL30 promoter function. The contributions to overall promoter activity of the proximal rpL30 site and the solitary rpL32 site are virtually the same. Paradoxically, the potential for tetramer formation afforded by the tandem sites in rpL30 has a relatively minor effect on overall promoter strength. These findings illustrate the subtlety of mechanisms by which fine-tuning of rp promoters is achieved.

摘要

两个小鼠核糖体蛋白基因rpL30和rpL32的启动子含有一个位置相似的元件,称为β,先前已证明它能与同一种核蛋白相互作用。基于对重组GABP亚基和GABP特异性抗体的研究,这种蛋白现已被鉴定为GA结合蛋白(GABP)。rpL30元件由两个相邻的GABP结合位点组成,它们可以与GABP的两个α亚基和两个β1亚基形成四聚体复合物,也可以与α亚基和β1或β2亚基形成二聚体复合物。rpL32元件由一个单独的GABP结合位点组成,它只能与α亚基和β1或β2亚基形成二聚体复合物。足迹分析以及对rpL30串联结合位点中每个位点突变效应的比较表明,最靠近转录起始点的位点强烈有利于二聚体复合物的形成,并且相应地对rpL30启动子功能更重要。rpL30近端位点和单独的rpL32位点对整体启动子活性的贡献几乎相同。矛盾的是,rpL30串联位点提供的四聚体形成潜力对整体启动子强度的影响相对较小。这些发现说明了实现rp启动子微调的机制的微妙之处。

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