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Distribution bias analysis of germline and somatic single-nucleotide variations that impact protein functional site and neighboring amino acids

机译:种系的分布偏见分析,抗冲蛋白功能位点和邻近氨基酸的种系和体细胞单核苷酸变化

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Single nucleotide variations (SNVs) can result in loss or gain of protein functional sites. We analyzed the effects of SNVs on enzyme active sites, ligand binding sites, and various types of post translational modification (PTM) sites. We found that, for most types of protein functional sites, the SNV pattern differs between germline and somatic mutations as well as between synonymous and non-synonymous mutations. From a total of 51,138 protein functional site affecting SNVs (pfsSNVs), a pan-cancer analysis revealed 142 somatic pfsSNVs in five or more cancer types. By leveraging patient information for somatic pfsSNVs, we identified 17 loss of functional site SNVs and 60 gain of functional site SNVs which are significantly enriched in patients with specific cancer types. Of the key pfsSNVs identified in our analysis above, we highlight 132 key pfsSNVs within 17 genes that are found in well-established cancer associated gene lists. For illustrating how key pfsSNVs can be prioritized further, we provide a use case where we performed survival analysis showing that a loss of phosphorylation site pfsSNV at position 105 in MEF2A is significantly associated with decreased pancreatic cancer patient survival rate. These 132 pfsSNVs can be used in developing genetic testing pipelines.
机译:单核苷酸变异(SNV)可以导致蛋白质功能位点的损失或增益。我们分析了SNV对酶活性位点,配体结合位点以及各种类型的翻译改性(PTM)位点的影响。我们发现,对于大多数类型的蛋白质功能位点,SNV图案在种系和体细胞突变之间以及同义词和非同义突变之间不同。从影响SNV的51,138个蛋白质功能位点,泛癌分析显示了五种或更多种癌症类型中的142种体细胞PFSSNV。通过利用针对体细胞的患者信息,我们确定了17个功能部位SNV的丧失和60个功能部位SNV,这些癌症类型的患者显着富集。在我们的分析中识别的关键PFSSNV的关键PFSSNV中,我们在熟悉的癌症相关基因名单中突出显示132个键PFSSNV。为了说明如何进一步优先考虑关键的PFSSNV,我们提供了一种使用情况,我们进行了生存分析,表明MEF2a中位于MEF2A的位置105处的磷酸化位点PFSSNV的丧失显着与胰腺癌患者存活率下降显着相关。这132个PFSSNV可以用于开发基因检测管道。

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