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酵母基因编码区内的下游激活序列:RAP1蛋白的体外特异性结合

Downstream activating sequence within the coding region of a yeast gene: specific binding in vitro of RAP1 protein.

作者信息

Fantino E, Marguet D, Lauquin G J

机构信息

IBCN, Bordeaux, France.

出版信息

Mol Gen Genet. 1992 Dec;236(1):65-75. doi: 10.1007/BF00279644.

Abstract

Using a gel retardation assay, a protein factor that specifically interacts with a 33 bp intragenic sequence of the highly expressed and glucose-inducible SRP1 gene of Saccharomyces cerevisiae has been detected. This binding site is located in a transcribed region and within the open reading frame (positions +710 to +743 relative to the first base of the initiation codon). A mutant strain carrying a deletion of this binding site showed a dramatic decrease in steady-state levels of SRP1 transcripts. This decline is not the result of a decrease in mRNA stability, since expression of hybrid genes in which the SRP1 promoter was replaced by the heterologous CYC1 promoter was not affected by the binding site deletion. These findings suggest that the 33 bp sequence contains a cis-acting downstream activating element which is involved in the transcriptional activation of the SRP1 promoter. Sequence comparisons showed similarities between a site located within the 33 bp sequence and the high-affinity consensus binding site of the RAP1/GRF1 (also named TUF) factor and methylation interference experiments confirmed that this site was involved in the protein-DNA interaction. Both the results of competition experiments with upstream activating sequences of ribosomal protein genes (UASrpg), which are targets for RAP1 binding, and determination of the apparent molecular weight of the affinity-purified DNA-binding protein indicated that RAP1 factor recognized the SRP1 33 bp element. The 33 bp sequence was found to be unable to provide UAS activity when placed upstream of the TATA box and transcription start site.

摘要

通过凝胶阻滞试验,已检测到一种与酿酒酵母中高表达且受葡萄糖诱导的SRP1基因的33 bp基因内序列特异性相互作用的蛋白质因子。该结合位点位于转录区域内且在开放阅读框内(相对于起始密码子的第一个碱基为+710至+743位)。携带该结合位点缺失的突变菌株显示SRP1转录本的稳态水平显著下降。这种下降不是mRNA稳定性降低的结果,因为将SRP1启动子替换为异源CYC1启动子的杂交基因的表达不受结合位点缺失的影响。这些发现表明,33 bp序列包含一个顺式作用的下游激活元件,其参与SRP1启动子的转录激活。序列比较显示33 bp序列内的一个位点与RAP1/GRF1(也称为TUF)因子的高亲和力共有结合位点之间存在相似性,甲基化干扰实验证实该位点参与蛋白质-DNA相互作用。与核糖体蛋白基因的上游激活序列(UASrpg)进行竞争实验的结果,UASrpg是RAP1结合的靶点,以及对亲和纯化的DNA结合蛋白的表观分子量的测定均表明RAP1因子识别SRP1的33 bp元件。当33 bp序列置于TATA框和转录起始位点上游时,发现其无法提供UAS活性。

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