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MATα1蛋白是一种酵母转录激活因子,它与另一种蛋白协同结合到一组细胞类型特异性基因上。

MAT alpha 1 protein, a yeast transcription activator, binds synergistically with a second protein to a set of cell-type-specific genes.

作者信息

Bender A, Sprague G F

出版信息

Cell. 1987 Aug 28;50(5):681-91. doi: 10.1016/0092-8674(87)90326-6.

Abstract

We show by electrophoresis mobility shift and by DNAase I footprinting assays that the alpha 1 product of the yeast alpha mating-type locus binds to homologous sequences within the control regions of the three known alpha-specific genes. Binding requires both alpha 1 and a second yeast protein(s) (called PRTF) that is present in all three cell types (a, alpha, and a/alpha); neither protein binds alone. Binding and competition experiments using synthetic oligonucleotides indicate that PRTF binds to only part of the homology found at alpha-specific genes and imply that alpha 1 binds to the remainder. Our results suggest that alpha 1 renders gene expression alpha-specific by creating a binding site for PRTF. Similar experiments lead to the idea that PRTF also plays a role in transcription of a-specific genes. Perhaps a-specificity is achieved through the occlusion of the PRTF binding site by alpha 2, the negative regulator encoded by the alpha mating-type locus.

摘要

我们通过电泳迁移率变动分析和DNA酶I足迹分析表明,酵母α交配型基因座的α1产物与三个已知α特异性基因的控制区域内的同源序列结合。这种结合既需要α1,也需要第二种酵母蛋白(称为PRTF),它存在于所有三种细胞类型(a、α和a/α)中;两种蛋白单独都不结合。使用合成寡核苷酸进行的结合和竞争实验表明,PRTF仅与α特异性基因中发现的部分同源性结合,这意味着α1与其余部分结合。我们的结果表明,α1通过为PRTF创造一个结合位点使基因表达具有α特异性。类似的实验提出了PRTF在a特异性基因转录中也起作用的观点。也许a特异性是通过α交配型基因座编码的负调节因子α2对PRTF结合位点的封闭来实现的。

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