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Germline mutations in the proof-reading domains of POLE and POLD1 predispose to colorectal adenomas and carcinomas

机译:在pOLE和pOLD1的校对域种系突变易患结肠腺瘤和癌

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摘要

Many individuals with multiple or large colorectal adenomas, or early-onset colorectal cancer (CRC), have no detectable germline mutations in the known cancer predisposition genes. Using whole-genome sequencing, supplemented by linkage and association analysis, we identified specific heterozygous POLE or POLD1 germline variants in several multiple adenoma and/or CRC cases, but in no controls. The susceptibility variants appear to have high penetrance. POLD1 is also associated with endometrial cancer predisposition. The mutations map to equivalent sites in the proof-reading (exonuclease) domain of DNA polymerases ε and δ, and are predicted to impair correction of mispaired bases inserted during DNA replication. In agreement with this prediction, mutation carriers’ tumours were microsatellite-stable, but tended to acquire base substitution mutations, as confirmed by yeast functional assays. Further analysis of published data showed that the recently-described group of hypermutant, microsatellite-stable CRCs is likely to be caused by somatic POLE exonuclease domain mutations.
机译:许多患有多个或多个大肠腺瘤或早发性大肠癌(CRC)的个体在已知的癌症易感基因中均未检测到种系突变。使用全基因组测序,辅以连锁和关联分析,我们在几个多发性腺瘤和/或CRC病例中,但在没有对照的情况下,发现了特定的杂合POLE或POLD1种系变异体。磁化率变异似乎具有很高的渗透率。 POLD1也与子宫内膜癌易感性有关。突变映射到DNA聚合酶ε和δ的校对(核酸外切酶)域中的等效位点,并被认为会削弱在DNA复制过程中插入的错配碱基的校正。与这一预测相符的是,突变携带者的肿瘤是微卫星稳定的,但倾向于获得碱基取代突变,这一点已通过酵母功能分析得以证实。对已发表数据的进一步分析表明,最近描述的一组高突变,微卫星稳定的CRC可能是由体细胞POLE核酸外切酶域突变引起的。

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