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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >In Vivo Analysis Reveals That the Interdomain Region of the Yeast Proliferating Cell Nuclear Antigen Is Important for DNA Replication and DNA Repair
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In Vivo Analysis Reveals That the Interdomain Region of the Yeast Proliferating Cell Nuclear Antigen Is Important for DNA Replication and DNA Repair

机译:体内分析表明,酵母增殖细胞核抗原的域间区域对于DNA复制和DNA修复很重要

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To identify the regions of the proliferating cell nuclear antigen (PCNA) that are important for function in vivo , we used random mutagenesis to isolate 10 cold-sensitive (Cs?) and 31 methyl methanesulfonate-sensitive (Mmss) mutations of the PCNA gene ( POL30 ) in Saccharomyces cerevisiae . Unlike the Mmss mutations, the CsC mutations are strikingly clustered in the interdomain region of the three-dimensional PCNA monomer structure. At the restrictive temperature, the Cs? pol30 mutants undergo a RAD9 dependent arrest as large-budded cells with a 2c DNA content. Defects in DNA synthesis are suggested by a significant delay in the progression of synchronized pol30 cells through S phase at the restrictive temperature. DNA repair defects are revealed by the observation that Cs? pol30 mutants are very sensitive to the alkylating agent MMS and mildly sensitive to ultraviolet radiation, although they are not sensitive to gamma radiation. Finally, analysis of the chromosomal DNA in pol30 cells by velocity sedimentation gradients shows that pol30 cells accumulate single-stranded DNA breaks at the restrictive temperature. Thus, our results show that PCNA plays an essential role in both DNA replication and DNA repair in vivo .
机译:为了鉴定对体内功能至关重要的增殖细胞核抗原(PCNA)区域,我们使用随机诱变方法分离了PCNA基因的10个冷敏感(Cs?)和31个甲磺酸甲酯(Mmss)突变( POL30)在酿酒酵母中。与Mmss突变不同,CsC突变显着聚集在三维PCNA单体结构的域间区域中。在极限温度下,Cs? pol30突变体作为具有2c DNA含量的大预算细胞经历RAD9依赖的逮捕。在限制性温度下,同步pol30细胞通过S期的进程显着延迟表明DNA合成存在缺陷。 DNA修复缺陷通过Cs? pol30突变体对烷基化剂MMS非常敏感,并且对紫外线具有中等敏感性,尽管它们对γ射线不敏感。最后,通过速度沉降梯度分析pol30细胞中的染色体DNA显示,pol30细胞在限制温度下积累了单链DNA断裂。因此,我们的结果表明PCNA在体内DNA复制和DNA修复中都起着至关重要的作用。

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