Tutt Andrew N J, van Oostrom Conny Th M, Ross Gillian M, van Steeg Harry, Ashworth Alan
The Breakthrough Toby Robins Breast Cancer Research Centre, Institute of Cancer Research, Fulham Road, London SW3 6JB, UK.
EMBO Rep. 2002 Mar;3(3):255-60. doi: 10.1093/embo-reports/kvf037. Epub 2002 Feb 15.
The breast cancer predisposition gene BRCA2 encodes a protein involved in the repair of DNA double-strand breaks, which arise spontaneously and following exposure to ionizing radiation (IR). To develop a mouse model that examines the effect of BRCA2 mutation and IR exposure on in vivo somatic mutation acquisition, we crossed mice with targeted disruption of Brca2 with a LacZ transgenic mutation reporter strain. Loss of both wild-type Brca2 alleles caused a 2.3-fold increase, equivalent to an extra 100 mutations per cell, in the in vivo acquisition of spontaneous somatic mutation by 2 weeks gestation. IR (4 Gy) had a disproportionate effect on animals homozygous for Brca2 disruption, inducing 3.4-fold more mutations compared with wild-type animals. These data provide the first evidence that loss of Brca2 increases in vivo somatic mutation acquisition and synergizes with IR exposure, with potential attendant implications for mammographic screening and therapeutic IR in mutation carriers.
乳腺癌易感基因BRCA2编码一种参与DNA双链断裂修复的蛋白质,DNA双链断裂可自发产生,也可在暴露于电离辐射(IR)后出现。为了建立一个小鼠模型来研究BRCA2突变和IR暴露对体内体细胞突变获得的影响,我们将Brca2靶向破坏的小鼠与LacZ转基因突变报告菌株进行杂交。在妊娠2周时,野生型Brca2两个等位基因的缺失导致体内自发体细胞突变的获得增加了2.3倍,相当于每个细胞额外增加100个突变。IR(4 Gy)对Brca2破坏纯合子动物有不成比例的影响,与野生型动物相比,诱导的突变多3.4倍。这些数据首次证明,Brca2的缺失会增加体内体细胞突变的获得,并与IR暴露产生协同作用,这对突变携带者的乳腺钼靶筛查和治疗性IR可能具有潜在的附带影响。