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Heterozygous PALB2 c.1592delT mutation channels DNA double-strand break repair into error-prone pathways in breast cancer patients

机译:杂合子PALB2 c.1592delT突变将DNA双链断裂修复通道转移到乳腺癌患者中易于出错的途径中

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摘要

Hereditary heterozygous mutations in a variety of DNA double-strand break (DSB) repair genes have been associated with increased breast cancer risk. In the Finnish population, PALB2 (partner and localizer of BRCA2) represents a major susceptibility gene for female breast cancer, and so far, only one mutation has been described, c.1592delT, which leads to a sixfold increased disease risk. PALB2 is thought to participate in homologous recombination (HR). However, the effect of the Finnish founder mutation on DSB repair has not been investigated. In the current study, we used a panel of lymphoblastoid cell lines (LCLs) derived from seven heterozygous female PALB2 c.1592delT mutation carriers with variable health status and six wild-type matched controls. The results of our DSB repair analysis showed that the PALB2 mutation causes specific changes in pathway usage, namely increases in error-prone single-strand annealing (SSA) and microhomology-mediated end-joining (MMEJ) compared with wild-type LCLs. These data indicated haploinsufficiency regarding the suppression of error-prone DSB repair in PALB2 mutation carriers. To the contrary, neither reduced HR activities, nor impaired RAD51 filament assembly, nor sensitization to PARP inhibition were consistently observed. Expression of truncated mutant versus wild-type PALB2 verified a causal role of PALB2 c.1592delT in the shift to error-prone repair. Discrimination between healthy and malignancy-presenting PALB2 mutation carriers revealed a pathway shift particularly in the breast cancer patients, suggesting interaction of PALB2 c.1592delT with additional genomic lesions. Interestingly, the studied PALB2 mutation was associated with 53BP1 accumulation in the healthy mutation carriers but not the patients, and 53BP1 was limiting for error-prone MMEJ in patients but not in healthy carriers. Our study identified a rise in error-prone DSB repair as a potential threat to genomic integrity in heterozygous PALB2 mutation carriers. The used phenotypic marker system has the capacity to capture dysfunction caused by polygenic mechanisms and therefore offers new strategies of cancer risk prediction.
机译:多种DNA双链断裂(DSB)修复基因中的遗传性杂合突变与乳腺癌风险增加有关。在芬兰人群中,PALB2(BRCA2的伴侣和定位物)代表着女性乳腺癌的主要易感基因,迄今为止,仅描述了一种突变,即c.1592delT,导致疾病风险增加了六倍。人们认为PALB2参与同源重组(HR)。但是,尚未研究芬兰创始人突变对DSB修复的影响。在当前的研究中,我们使用了一组来自七个杂种的女性PA​​LB2 c.1592delT突变携带者的六种健康状况可变的淋巴母细胞细胞系(LCL),以及六个野生型匹配的对照。我们的DSB修复分析结果表明,与野生型LCL相比,PALB2突变会导致途径使用发生特定变化,即易错单链退火(SSA)和微同源介导的末端连接(MMEJ)增加。这些数据表明在抑制PALB2突变携带者中容易出错的DSB修复方面存在单倍不足。相反,既未观察到降低的HR活性,也未观察到RAD51细丝装配受损,也未观察到对PARP抑制的敏化作用。截短的突变体与野生型PALB2的表达证实了PALB2 c.1592delT在向易错修复的转变中起因果作用。健康和恶性肿瘤患者PALB2突变携带者之间的区别揭示了一种途径转移,尤其是在乳腺癌患者中,这表明PALB2 c.1592delT与其他基因组病变的相互作用。有趣的是,所研究的PALB2突变与健康突变携带者而非患者中的53BP1积累相关,而53BP1限制了患者而非健康携带者中易于出错的MMEJ。我们的研究发现,易错DSB修复的增加是杂合PALB2突变携带者对基因组完整性的潜在威胁。使用的表型标记系统具有捕获由多基因机制引起的功能障碍的能力,因此提供了癌症风险预测的新策略。

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