首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Activities of wildtype and mutant p53 in suppression of homologous recombination as measured by a retroviral vector system.
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Activities of wildtype and mutant p53 in suppression of homologous recombination as measured by a retroviral vector system.

机译:通过逆转录病毒载体系统测量,野生型和突变体p53在抑制同源重组中的活性。

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摘要

DNA repair of double strand breaks, interstrand DNA cross-links, and other types of DNA damage utilizes the processes of homologous recombination and non-homologous end joining to repair the damage. Aberrant homologous recombination is likely to be responsible for a significant fraction of chromosomal deletions, duplications, and translocations that are observed in cancer cells. To facilitate measurement of homologous recombination frequencies in normal cells, mutant cells, and cancer cells, we have developed a high titer retroviral vector containing tandem repeats of mutant versions of a GFP-Zeocin resistance fusion gene and an intact neomycin resistance marker. Recombination between the tandem repeats regenerates a functional GFP-Zeo(R) marker that can be easily scored. This retroviral vector was used to assess homologous recombination frequencies in human cancer cells and rodent fibroblasts with differing dosages of wild type or mutant p53. Absence of wild type p53 stimulated spontaneous and ionizing radiation-induced homologous recombination, confirming previous studies. Moreover, p53(+/-) mouse fibroblasts show elevated levels of homologous recombination compared to their p53(+/+) counterparts following retroviral vector infection, indicating that p53 is haploinsufficient for suppression of homologous recombination. Transfection of vector-containing p53 null Saos-2 cells with various human cancer-associated p53 mutants revealed that these altered p53 proteins retain some recombination suppression function despite being totally inactive for transcriptional transactivation. The retroviral vector utilized in these studies may be useful in performing recombination assays on a wide array of cell types, including those not readily transfected by normal vectors.
机译:双链断裂,链间DNA交联和其他类型的DNA损伤的DNA修复利用同源重组和非同源末端连接的过程来修复损伤。异常的同源重组可能是导致癌细胞中观察到的大部分染色体缺失,重复和易位的原因。为便于测量正常细胞,突变细胞和癌细胞中的同源重组频率,我们开发了一种高滴度逆转录病毒载体,其中含有GFP-Zeocin抗性融合基因突变体的串联重复序列和完整的新霉素抗性标记。串联重复序列之间的重组可重新生成功能性GFP-Zeo标记,可以轻松对其进行评分。该逆转录病毒载体用于评估不同剂量野生型或突变型p53的人类癌细胞和啮齿类成纤维细胞中的同源重组频率。野生型p53的缺乏刺激自发和电离辐射诱导的同源重组,证实了先前的研究。此外,p53(+/-)小鼠成纤维细胞与逆转录病毒载体感染后的p53(+ / +)对应物相比,同源重组水平升高,表明p53在抑制同源重组方面是单倍不足的。用各种人类癌症相关的p53突变体转染含载体的p53 null Saos-2细胞,表明这些改变的p53蛋白保留了一些重组抑制功能,尽管对于转录反式激活完全没有活性。这些研究中使用的逆转录病毒载体可用于对多种细胞类型(包括不易被正常载体转染的细胞)进行重组检测。

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