首页> 美国卫生研究院文献>Frontiers in Genetics >Mutational Signatures Are Critical for Proper Estimation of Purifying Selection Pressures in Cancer Somatic Mutation Data When Using the dN/dS Metric
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Mutational Signatures Are Critical for Proper Estimation of Purifying Selection Pressures in Cancer Somatic Mutation Data When Using the dN/dS Metric

机译:使用dN / dS度量标准时突变签名对于正确估计纯化癌症体细胞突变数据中的选择压力至关重要。

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摘要

Large cancer genome sequencing initiatives have led to the identification of cancer driver genes based on signals of positive selection in somatic mutation data. Additionally, the identification of purifying (negative) selection has the potential to identify essential genes that may be of therapeutic interest. The most widely used way of quantifying selection pressures in protein-coding genes is the dN/dS metric, which compares non-synonymous to synonymous substitution rates. In this study, we examine whether and how this metric is influenced by the mutational processes that have been active during tumor evolution. We use exome sequencing data from six different cancer types from The Cancer Genome Atlas (TCGA) and demonstrate that dN/dS in its basic form, where uniform base substitution probabilities are assumed, is in fact strongly biased by these mutational processes. This is particularly true in malignant melanoma, where the mutational signature is characterized by a high amount of UV-induced cytosine to thymine mutations at dipyrimidine dinucleotides. This increases the likelihood of random synonymous mutations occurring in hydrophobic amino acid codons, leading to reduced dN/dS ratios in genes encoding membrane proteins and falsely suggesting purifying selection in these genes. When this effect is corrected for by taking mutational signature-derived substitution probabilities into account, purifying selection was found to be limited and similar in all cancer types studied. Our results demonstrate that it is crucial to take mutational signatures into account when applying the dN/dS metric to cancer somatic mutation data.
机译:大规模的癌症基因组测序计划已经根据体细胞突变数据中的阳性选择信号确定了癌症驱动基因。另外,纯化(阴性)选择的鉴定具有鉴定可能具有治疗意义的必需基因的潜力。量化蛋白质编码基因中选择压力的最广泛使用的方法是dN / dS指标,该指标将非同义替换率与同义替换率进行比较。在这项研究中,我们检查了该指标是否以及如何受到肿瘤进化过程中活跃的突变过程的影响。我们使用了来自癌症基因组图谱(TCGA)的六种不同癌症类型的外显子组测序数据,证明了假设突变基础的dN / dS基本形式实际上被假定为基本碱基替代概率,而这些突变过程实际上对它们有很大的偏见。这在恶性黑色素瘤中尤其如此,其中突变特征的特征在于在二嘧啶二核苷酸处大量的紫外线诱导的胞嘧啶-胸腺嘧啶突变。这增加了在疏水氨基酸密码子中发生随机同义突变的可能性,导致编码膜蛋白的基因中的dN / dS比降低,并错误地暗示了对这些基因的纯化选择。当通过考虑突变特征来源的替代概率来纠正这种影响时,发现在所有研究的癌症类型中纯化选择是有限的,并且相似。我们的结果表明,在将dN / dS指标应用于癌症体细胞突变数据时,考虑突变特征至关重要。

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