Centre for Genomic Regulation (CRG), The Barcelona Institute of Science and Technology (BIST), Barcelona, Spain.
Universitat Pompeu Fabra (UPF), Barcelona, Spain.
Nat Commun. 2022 Jun 28;13(1):3724. doi: 10.1038/s41467-022-31483-1.
Somatic mutations are an inevitable component of ageing and the most important cause of cancer. The rates and types of somatic mutation vary across individuals, but relatively few inherited influences on mutation processes are known. We perform a gene-based rare variant association study with diverse mutational processes, using human cancer genomes from over 11,000 individuals of European ancestry. By combining burden and variance tests, we identify 207 associations involving 15 somatic mutational phenotypes and 42 genes that replicated in an independent data set at a false discovery rate of 1%. We associate rare inherited deleterious variants in genes such as MSH3, EXO1, SETD2, and MTOR with two phenotypically different forms of DNA mismatch repair deficiency, and variants in genes such as EXO1, PAXIP1, RIF1, and WRN with deficiency in homologous recombination repair. In addition, we identify associations with other mutational processes, such as APEX1 with APOBEC-signature mutagenesis. Many of the genes interact with each other and with known mutator genes within cellular sub-networks. Considered collectively, damaging variants in the identified genes are prevalent in the population. We suggest that rare germline variation in diverse genes commonly impacts mutational processes in somatic cells.
体细胞突变是衰老的必然组成部分,也是癌症的最重要原因。体细胞突变的速率和类型在个体之间有所不同,但已知的对突变过程具有相对较少的遗传影响。我们使用来自 11000 多名欧洲血统个体的人类癌症基因组,进行了具有多种突变过程的基于基因的罕见变异关联研究。通过结合负担和方差检验,我们确定了 207 个关联,涉及 15 个体细胞突变表型和 42 个基因,在假发现率为 1%的情况下,在独立数据集得到了复制。我们将 MSH3、EXO1、SETD2 和 MTOR 等基因中的罕见遗传性有害变异与两种表型不同的 DNA 错配修复缺陷相关联,并将 EXO1、PAXIP1、RIF1 和 WRN 等基因中的变异与同源重组修复缺陷相关联。此外,我们还确定了与其他突变过程的关联,如 APEX1 与 APOBEC 签名诱变。许多基因相互作用,并在细胞子网络中与已知的诱变基因相互作用。综合考虑,鉴定基因中的破坏性变异在人群中普遍存在。我们认为,不同基因中的罕见种系变异通常会影响体细胞中的突变过程。