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在缺乏DNA错配修复的情况下,有两种主要的突变过程发挥作用。

Two main mutational processes operate in the absence of DNA mismatch repair.

作者信息

Németh Eszter, Lovrics Anna, Gervai Judit Z, Seki Masayuki, Rospo Giuseppe, Bardelli Alberto, Szüts Dávid

机构信息

Institute of Enzymology, Research Centre for Natural Sciences, 1117 Budapest, Hungary.

Department of Biochemistry, Tohoku Medical & Pharmaceutical University, Miyagi 981-8558, Japan.

出版信息

DNA Repair (Amst). 2020 May;89:102827. doi: 10.1016/j.dnarep.2020.102827. Epub 2020 Feb 25.

Abstract

The analysis of tumour genome sequences has demonstrated high rates of base substitution mutagenesis upon the inactivation of DNA mismatch repair (MMR), and the resulting somatic mutations in MMR deficient tumours appear to significantly enhance the response to immune therapy. A handful of different algorithmically derived base substitution mutation signatures have been attributed to MMR deficiency in tumour somatic mutation datasets. In contrast, mutation data obtained from whole genome sequences of isogenic wild type and MMR deficient cell lines in this study, as well as from published sources, show a more uniform experimental mutation spectrum of MMR deficiency. In order to resolve this discrepancy, we reanalysed mutation data from MMR deficient tumour whole exome and whole genome sequences. We derived two base substitution signatures using non-negative matrix factorisation, which together adequately describe mutagenesis in all tumour and cell line samples. The two new signatures broadly resemble COSMIC signatures 6 and 20, but perform better than existing COSMIC signatures at identifying MMR deficient tumours in mutation signature deconstruction. We show that the contribution of the two identified signatures, one of which is dominated by C to T mutations at CpG sites, is biased by the different sequence composition of the exome and the whole genome. We further show that the identity of the inactivated MMR gene, the tissue type, the mutational burden or the patient's age does not influence the mutation spectrum, but that a tendency for a greater contribution by the CpG mutational process is observed in tumours as compared to cultured cells. Our analysis suggest that two separable mutational processes operate in the genomes of MMR deficient cells.

摘要

肿瘤基因组序列分析表明,DNA错配修复(MMR)失活时碱基替换诱变率很高,MMR缺陷肿瘤中产生的体细胞突变似乎显著增强了对免疫治疗的反应。在肿瘤体细胞突变数据集中,少数几种通过算法得出的不同碱基替换突变特征已被归因于MMR缺陷。相比之下,本研究中从同基因野生型和MMR缺陷细胞系的全基因组序列以及已发表来源获得的突变数据显示,MMR缺陷的实验突变谱更为一致。为了解决这一差异,我们重新分析了MMR缺陷肿瘤全外显子组和全基因组序列的突变数据。我们使用非负矩阵分解得出了两个碱基替换特征,它们共同充分描述了所有肿瘤和细胞系样本中的诱变情况。这两个新特征大致类似于COSMIC特征6和20,但在突变特征解构中识别MMR缺陷肿瘤方面比现有的COSMIC特征表现更好。我们表明,所确定的两个特征的贡献,其中一个以CpG位点的C到T突变为主要特征,受到外显子组和全基因组不同序列组成的影响。我们进一步表明,失活的MMR基因的身份、组织类型、突变负荷或患者年龄不会影响突变谱,但与培养细胞相比,在肿瘤中观察到CpG突变过程的贡献有更大的趋势。我们的分析表明,两个可分离的突变过程在MMR缺陷细胞的基因组中起作用。

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