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酵母RAD7和SIR3蛋白的相互作用:对DNA修复和染色质结构的影响。

Interaction of the yeast RAD7 and SIR3 proteins: implications for DNA repair and chromatin structure.

作者信息

Paetkau D W, Riese J A, MacMorran W S, Woods R A, Gietz R D

机构信息

Department of Human Genetics, Faculty of Medicine, University of Manitoba, Winnipeg, Canada.

出版信息

Genes Dev. 1994 Sep 1;8(17):2035-45. doi: 10.1101/gad.8.17.2035.

Abstract

We have used the two-hybrid system to identify proteins that interact with the product of RAD7, a gene involved in DNA repair. A screen of a yeast genomic DNA-GAL4 activation domain (GAD) fusion gene library allowed the isolation of plasmids containing sequences corresponding to the 3' end of the SIR3 gene. This gene is known to be involved in the production of transcriptionally silent DNA at the cryptic mating-type cassettes and at telomeres. The cloned sequences coded for amino acids 307-979 of the Sir3 protein. A sir3 deletion allele, constructed in an isogenic rad7-deletion strain, rescued approximately one-quarter of the UV sensitivity associated with the rad7 deletion, indicating that the two genes interact genetically. Radiolabeled fusion proteins, made with the glutathione S-transferase (GST) gene in the vector pGEX-2T, were purified from Escherichia coli and shown to interact in vitro. This evidence suggests that the Sir3 protein interacts with the Rad7 protein to allow the nucleotide excision repair complex access to transcriptionally inactive chromatin. The proportions of 5-FOA-resistant cells in cultures from isogenic RAD+ and rad7-delta strains containing a telomeric URA3 gene were similar, suggesting that the RAD7 gene is not involved in the production or structure of transcriptionally silent chromatin at the telomeres. RAD7-dependent DNA repair of transcriptionally silent chromatin was shown not to induce expression of a telomeric copy of the URA3 gene, suggesting that repair of transcriptionally silent chromatin differs from transcriptionally active chromatin. Expression of a telomeric copy of the URA3 gene was stimulated in a rad7-delta mutant, suggesting that repair of lesions in the absence of Rad7 can result in the activation of transcriptionally silenced genes.

摘要

我们利用双杂交系统来鉴定与RAD7基因产物相互作用的蛋白质,RAD7基因参与DNA修复。对酵母基因组DNA - GAL4激活结构域(GAD)融合基因文库进行筛选,分离出了含有与SIR3基因3'端相对应序列的质粒。已知该基因参与隐蔽交配型盒及端粒处转录沉默DNA的产生。克隆序列编码Sir3蛋白的307 - 979位氨基酸。在同基因的rad7缺失菌株中构建的sir3缺失等位基因,挽救了约四分之一与rad7缺失相关的紫外线敏感性,表明这两个基因在遗传上相互作用。用载体pGEX - 2T中的谷胱甘肽S - 转移酶(GST)基因制备的放射性标记融合蛋白,从大肠杆菌中纯化出来并显示在体外相互作用。这一证据表明,Sir3蛋白与Rad7蛋白相互作用,使核苷酸切除修复复合物能够接近转录不活跃的染色质。含有端粒URA3基因的同基因RAD + 和rad7 - Δ菌株培养物中5 - FOA抗性细胞的比例相似,表明RAD7基因不参与端粒处转录沉默染色质的产生或结构。转录沉默染色质的RAD7依赖性DNA修复未诱导URA3基因端粒拷贝的表达,表明转录沉默染色质的修复不同于转录活跃染色质。在rad7 - Δ突变体中,URA3基因端粒拷贝的表达受到刺激,表明在没有Rad7的情况下损伤修复可导致转录沉默基因的激活。

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