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内切酶 PvuII 和 EcoRV 诱导的平末端 DNA 双链断裂在酿酒酵母中是修复的不良底物。

Blunt-ended DNA double-strand breaks induced by endonucleases PvuII and EcoRV are poor substrates for repair in Saccharomyces cerevisiae.

机构信息

Laboratory of Molecular Genetics, National Institute of Environmental Health Sciences, NIH, Research Triangle Park, NC 27709, USA.

出版信息

DNA Repair (Amst). 2010 Jun 4;9(6):617-26. doi: 10.1016/j.dnarep.2010.02.008. Epub 2010 Mar 30.

Abstract

Most mechanistic studies of repair of DNA double-strand breaks (DSBs) produced by in vivo expression of endonucleases have utilized enzymes that produce cohesive-ended DSBs such as HO, I-SceI and EcoRI. We have developed systems for expression of PvuII and EcoRV, nucleases that produce DSBs containing blunt ends, using a modified GAL1 promoter that has reduced basal activity. Expression of PvuII and EcoRV caused growth inhibition and strong cell killing in both haploid and diploid yeast cells. Surprisingly, there was little difference in sensitivities of wildtype cells and mutants defective in homologous recombination, nonhomologous end-joining (NHEJ), or both pathways. Physical analysis using standard and pulsed field gel electrophoresis demonstrated time-dependent breakage of chromosomal DNA within cells. Although ionizing radiation-induced DSBs were largely repaired within 4h, no repair of PvuII-induced breaks could be detected in diploid cells, even after arrest in G2/M. Rare survivors of PvuII expression had an increased frequency of chromosome XII deletions, an indication that a fraction of the induced DSBs could be repaired by an error-prone process. These results indicate that, unlike DSBs with complementary single-stranded DNA overhangs, blunt-ended DSBs in yeast chromosomes are poor substrates for repair by either NHEJ or recombination.

摘要

大多数通过体内表达内切酶产生的 DNA 双链断裂(DSB)的机制研究都利用了产生粘性末端 DSB 的酶,如 HO、I-SceI 和 EcoRI。我们开发了使用改良的 GAL1 启动子表达 PvuII 和 EcoRV 的系统,该启动子具有降低的基础活性。PvuII 和 EcoRV 的表达导致了酵母单倍体和二倍体细胞的生长抑制和强烈的细胞杀伤。令人惊讶的是,野生型细胞和同源重组、非同源末端连接(NHEJ)或两条途径缺陷的突变体之间的敏感性几乎没有差异。使用标准和脉冲场凝胶电泳的物理分析表明,细胞内的染色体 DNA 存在时间依赖性断裂。尽管电离辐射诱导的 DSB 在 4 小时内大部分得到修复,但在二倍体细胞中甚至在 G2/M 期被阻断后,也无法检测到 PvuII 诱导的断裂修复。PvuII 表达的稀有幸存者中,染色体 XII 的缺失频率增加,表明诱导的 DSB 中有一部分可以通过易错过程进行修复。这些结果表明,与具有互补单链 DNA 突出端的 DSB 不同,酵母染色体中的平末端 DSB 是 NHEJ 或重组修复的不良底物。

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