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染色体外质粒底物中的同源重组不会被p53抑制。

Homologous recombination in extrachromosomal plasmid substrates is not suppressed by p53.

作者信息

Willers H, McCarthy E E, Hubbe P, Dahm-Daphi J, Powell S N

机构信息

Department of Radiation Oncology, Massachusetts General Hospital, Harvard Medical School, Charlestown, MA 02129, USA.

出版信息

Carcinogenesis. 2001 Nov;22(11):1757-63. doi: 10.1093/carcin/22.11.1757.

Abstract

We and others reported previously that the tumor suppressor p53 down-regulates spontaneous homologous recombination in chromosomally integrating plasmid substrates, but how p53 affects homology-dependent repair of DNA double-strand breaks has not been established. Furthermore, it has been hypothesized that p53 may suppress homologous recombination by direct interaction with recombination intermediates, but it is not known whether p53 directly acts on extrachromosomal plasmid substrates. In the present study, we asked whether p53 can suppress extrachromosomal spontaneous and double-strand break-induced homologous recombination. A plasmid shuttle assay was employed utilizing episomally replicating substrates, which carried mutated tandem repeats of a CAT reporter gene. Spontaneous homologous recombination and homology-dependent repair of double-strand breaks induced by the I-SceI nuclease led to reconstitution of the reporter. Extrachromosomal homologous recombination was found to proceed independently of the p53 status of isogenic mouse fibroblast lines, contrasting the p53-mediated suppression of chromosomal recombination. The lack of p53 effect applied not only to the dominating single-strand annealing pathway, which is Rad51-independent, but also to Rad51-dependent gene conversion events. Comparison of homologous and non-homologous recombination frequencies revealed similar contributions to the repair of I-SceI-induced breaks irrespective of p53 status. Our results are consistent with a model in which the regulation of homologous recombination by p53 is restricted to the highly ordered chromosomal chromatin structure. These data may serve as a cautionary note for future investigations using solely extrachromosomal model systems to address DNA repair in intact cells.

摘要

我们和其他研究人员之前报道过,肿瘤抑制因子p53可下调染色体整合质粒底物中的自发同源重组,但p53如何影响DNA双链断裂的同源依赖性修复尚未明确。此外,有人推测p53可能通过与重组中间体直接相互作用来抑制同源重组,但尚不清楚p53是否直接作用于染色体外质粒底物。在本研究中,我们探究了p53是否能够抑制染色体外自发的以及双链断裂诱导的同源重组。我们采用了一种质粒穿梭试验,利用携带CAT报告基因突变串联重复序列的游离复制底物。I-SceI核酸酶诱导的自发同源重组以及双链断裂的同源依赖性修复导致了报告基因的重构。我们发现,染色体外同源重组的进行与同基因小鼠成纤维细胞系的p53状态无关,这与p53介导的染色体重组抑制形成对比。p53缺乏效应不仅适用于主要的单链退火途径(该途径不依赖Rad51),也适用于依赖Rad51的基因转换事件。同源重组和非同源重组频率的比较显示,无论p53状态如何,它们对I-SceI诱导断裂修复的贡献相似。我们的结果与一个模型一致,即p53对同源重组的调控仅限于高度有序的染色体染色质结构。这些数据可能为未来仅使用染色体外模型系统来研究完整细胞中的DNA修复的研究提供警示。

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