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The Mutational Landscape of Acute Promyelocytic Leukemia Reveals an Interacting Network of Co-Occurrences and Recurrent Mutations

机译:急性早幼粒细胞白血病的突变景观揭示了共同发生和复发突变的相互作用网络

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摘要

Preliminary Acute Promyelocytic Leukemia (APL) whole exome sequencing (WES) studies have identified a huge number of somatic mutations affecting more than a hundred different genes mainly in a non-recurrent manner, suggesting that APL is a heterogeneous disease with secondary relevant changes not yet defined. To extend our knowledge of subtle genetic alterations involved in APL that might cooperate with PML/RARA in the leukemogenic process, we performed a comprehensive analysis of somatic mutations in APL combining WES with sequencing of a custom panel of targeted genes by next-generation sequencing. To select a reduced subset of high confidence candidate driver genes, further in silico analysis were carried out. After prioritization and network analysis we found recurrent deleterious mutations in 8 individual genes (STAG2, U2AF1, SMC1A, USP9X, IKZF1, LYN, MYCBP2 and PTPN11) with a strong potential of being involved in APL pathogenesis. Our network analysis of multiple mutations provides a reliable approach to prioritize genes for additional analysis, improving our knowledge of the leukemogenesis interactome. Additionally, we have defined a functional module in the interactome of APL. The hypothesis is that the number, or the specific combinations, of mutations harbored in each patient might not be as important as the disturbance caused in biological key functions, triggered by several not necessarily recurrent mutations.
机译:初步急性早幼粒细胞白血病(APL)全外显子组测序(WES)研究已鉴定出大量体细胞突变,主要以非复发方式影响了上百种不同的基因,这表明APL是一种异源性疾病,尚未发生继发相关变化定义。为了扩展我们对可能与PML / RARA在白血病发生过程中协同作用的APL中涉及的微妙遗传改变的认识,我们对WEB与下一代测序对一组目标基因的定制测序相结合,对APL中的体细胞突变进行了全面分析。为了选择减少的高置信度候选驱动基因子集,进行了进一步的计算机分析。经过优先排序和网络分析,我们发现了8个单独的基因(STAG2,U2AF1,SMC1A,USP9X,IKZF1,LYN,MYCBP2和PTPN11)中的经常性有害突变,它们具有参与APL发病机理的强大潜力。我们对多种突变的网络分析提供了一种可靠的方法,可以对基因进行优先级排序以进行其他分析,从而提高了我们对白血病发生相互作用基因组的了解。此外,我们在APL的交互组中定义了一个功能模块。假设是,每个患者中所隐含的突变的数量或特定组合可能不像生物学关键功能所引起的扰动那样重要,后者是由若干未必一定会复发的突变触发的。

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