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紫外线照射的哺乳动物细胞的存活与一个必需基因中的高效DNA修复相关。

Survival of UV-irradiated mammalian cells correlates with efficient DNA repair in an essential gene.

作者信息

Bohr V A, Okumoto D S, Hanawalt P C

出版信息

Proc Natl Acad Sci U S A. 1986 Jun;83(11):3830-3. doi: 10.1073/pnas.83.11.3830.

Abstract

The survival of UV-irradiated mammalian cells is not necessarily correlated with their overall capacity to carry out DNA repair. Human cells typically remove 80% of the pyrimidine dimers produced by a UV dose of 5 J/m2 within 24 hr. In contrast, a Chinese hamster ovary (CHO) cell line survives UV irradiation equally well while removing only 15% of the dimers. Using a newly developed technique to measure dimer frequencies in single-copy specific sequences, we find that the CHO cells remove 70% of the dimers from the essential dihydrofolate reductase (DHFR) gene but only 20% from sequences located 30 kilobases or more upstream from the 5' end of the gene in a 24-hr period. Repair-deficient human cells from xeroderma pigmentosum complementation group C (XPC) are similar to the CHO cells in overall repair levels, but they are extremely sensitive to killing by UV irradiation. In the XPC cells, we find little or no repair in the DHFR gene; in contrast, in normal human fibroblasts and epidermal keratinocytes, greater than 80% of the dimers induced in the gene by 20 J/m2 are removed in 24 hr. Since the CHO and normal human cells exhibit similar UV resistance, much higher than that of XPC cells, our findings suggest a correlation between efficient repair of essential genes and resistance to DNA-damaging agents such as UV light.

摘要

紫外线照射的哺乳动物细胞的存活情况与其进行DNA修复的整体能力不一定相关。人类细胞通常在24小时内去除由5 J/m²紫外线剂量产生的80%的嘧啶二聚体。相比之下,中国仓鼠卵巢(CHO)细胞系在紫外线照射下存活情况同样良好,但只去除了15%的二聚体。使用一种新开发的技术来测量单拷贝特定序列中的二聚体频率,我们发现CHO细胞在24小时内从必需的二氢叶酸还原酶(DHFR)基因中去除了70%的二聚体,但从基因5'端上游30千碱基或更远的序列中只去除了20%。来自着色性干皮病互补组C(XPC)的修复缺陷型人类细胞在整体修复水平上与CHO细胞相似,但它们对紫外线照射杀伤极为敏感。在XPC细胞中,我们发现DHFR基因几乎没有修复;相反,在正常人类成纤维细胞和表皮角质形成细胞中,20 J/m²诱导该基因产生的二聚体在24小时内有超过80%被去除。由于CHO细胞和正常人类细胞表现出相似的抗紫外线能力,远高于XPC细胞,我们的研究结果表明必需基因的有效修复与对紫外线等DNA损伤剂的抗性之间存在关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d6c/323617/76c819093f51/pnas00315-0272-a.jpg

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