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p53 突变的持续存在以及角质形成细胞对凋亡的抗性与缺乏 XPC 基因的小鼠对紫外线致癌作用的易感性增加有关。

Persistence of p53 mutations and resistance of keratinocytes to apoptosis are associated with the increased susceptibility of mice lacking the XPC gene to UV carcinogenesis.

作者信息

Ananthaswamy H N, Ouhtit A, Evans R L, Gorny A, Khaskina P, Sands A T, Conti C J

机构信息

Department of Immunology, The University of Texas MD Anderson Cancer Center, 1515 Holcombe Blvd., Houston, Texas, TX 77030, USA.

出版信息

Oncogene. 1999 Dec 2;18(51):7395-8. doi: 10.1038/sj.onc.1203147.

Abstract

Like xeroderma pigmentosum (XP) patients, transgenic mice lacking nucleotide excision repair (NER) genes such as XPA and XPC are extremely susceptible to ultraviolet (UV)-induced skin cancer. Because the p53 gene is an important target for UV carcinogenesis and because the p53 protein modulates NER, we investigated the consequences of NER deficiency on UV-induced p53 mutations in XPC-/- mouse skin tumors. Thirty-eight (76%) of 50 UV-induced XPC-/- skin tumor analysed displayed C-->T or CC-->TT transitions at dipyrimidine sites on the untranscribed strand of the p53 gene. A major hot spot for p53 mutation occurred at codon 270, which is also a hot spot in UV-induced skin tumors from NER-proficient C3H and SKH-hr 1 mice. Interestingly, codon 270 mutations were induced in both XPC-/- and +/+ mouse skin after 1 week of UV irradiation, but the mutations persisted only in XPC-/- mouse skin after 3 - 4 weeks of chronic UV. The persistence of UV-induced p53 mutations in XPC-/- mouse skin was associated with decreased apoptosis and increased proliferation of keratinocytes, suggesting that these events may contribute to the accelerated development of UV-induced skin tumors in XPC-/- mice.

摘要

与着色性干皮病(XP)患者一样,缺乏核苷酸切除修复(NER)基因(如XPA和XPC)的转基因小鼠对紫外线(UV)诱导的皮肤癌极为敏感。由于p53基因是UV致癌作用的重要靶点,且p53蛋白可调节NER,我们研究了NER缺陷对XPC-/-小鼠皮肤肿瘤中UV诱导的p53突变的影响。在分析的50个UV诱导的XPC-/-皮肤肿瘤中,有38个(76%)在p53基因非转录链的二嘧啶位点出现了C→T或CC→TT转换。p53突变的一个主要热点出现在密码子270,这也是NER功能正常的C3H和SKH-hr 1小鼠UV诱导的皮肤肿瘤中的一个热点。有趣的是,在UV照射1周后,XPC-/-和+/+小鼠皮肤中均诱导出密码子270突变,但在慢性UV照射3 - 4周后,这些突变仅在XPC-/-小鼠皮肤中持续存在。XPC-/-小鼠皮肤中UV诱导的p53突变的持续存在与角质形成细胞凋亡减少和增殖增加有关,这表明这些事件可能有助于XPC-/-小鼠中UV诱导的皮肤肿瘤加速发展。

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