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首页> 外文期刊>Radiation Research: Official Organ of the Radiation Research Society >Absence of Ku70 gene obliterates X-ray-induced lacZ mutagenesis of small deletions in mouse tissues
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Absence of Ku70 gene obliterates X-ray-induced lacZ mutagenesis of small deletions in mouse tissues

机译:Ku70基因的缺失消除了X射线诱导的小鼠组织中小缺失的lacZ诱变

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With the goal of understanding the role of non-homologous end-joining repair in the maintenance of genetic information at the tissue level, we studied mutations induced by radiation and subsequent repair of DNA double-strand breaks in Ku70 gene-deficient lacZ transgenic mice. The local mutation frequencies and types of mutations were analyzed on a lacZ gene that had been chromosomally integrated, which allowed us to monitor DNA sequence alterations within this 3.1-kbp region. The mutagenic process leading to the development of the most frequently observed small deletions in wild-type mice after exposure to 20 Gy of X rays was suppressed in Ku70(-/-) mice in the three tissues examined: spleen, liver and brain. Examination of DNA break rejoining and the phosphorylation of histone H2AX in Ku70-deficient and -proficient mice revealed that Ku70 deficiency decreased the frequency of DNA rejoining, suggesting that DNA rejoining is one of the causes of radiation-induced deletion mutations. Limited but statistically significant DNA rejoining was found in the liver and brain of Ku70-deficient mice 3.5 days after irradiation, showing the presence of a DNA double-strand break repair system other than non-homologous end joining. These data indicate a predominant role of non-homologous end joining in the production of radiation-induced mutations in vivo. (C) 2008 by Radiation Research Society.
机译:为了了解非同源末端连接修复在组织水平上遗传信息维护中的作用,我们研究了在Ku70基因缺陷型lacZ转基因小鼠中由辐射诱导的突变和随后的DNA双链断裂修复。在已经整合了染色体的lacZ基因上分析了局部突变的频率和突变类型,这使我们能够监测此3.1 kbp区域内的DNA序列变化。致突变过程导致在暴露于20 Gy X射线的野生型小鼠中最常观察到的小缺失的发展,在被检查的三个组织:脾,肝和脑中的Ku70(-/-)小鼠中被抑制。在Ku70缺乏和熟练的小鼠中检查DNA断裂重新结合和组蛋白H2AX的磷酸化表明,Ku70缺乏降低了DNA重新结合的频率,这表明DNA重新结合是辐射诱导的缺失突变的原因之一。照射后3.5天,在Ku70缺陷型小鼠的肝脏和大脑中发现了有限但具有统计学意义的DNA重新结合,表明存在非同源末端连接以外的DNA双链断裂修复系统。这些数据表明非同源末端连接在体内辐射诱导的突变产生中的主要作用。 (C)辐射研究学会,2008年。

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