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首页> 外文期刊>Oncogene >Rare, functional, somatic variants in gene families linked to cancer genes: GPCR signaling as a paradigm
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Rare, functional, somatic variants in gene families linked to cancer genes: GPCR signaling as a paradigm

机译:与癌症基因相关的基因家族中的罕见,功能性,体细胞变体:GPCR信号作为范式

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摘要

Oncodriver genes are usually identified when mutations recur in multiple tumours. Different drivers often converge in the activation or repression of key cancer-relevant pathways. However, as many pathways contain multiple members of the same gene family, individual mutations might be overlooked, as each family member would necessarily have a lower mutation frequency and thus not identified as significant in any one-gene-at-a-time analysis. Here, we looked for mutated, functional sequence positions in gene families that were mutually exclusive (in patients) with another gene in the same pathway, which identified both known and new candidate oncodrivers. For instance, many inactivating mutations in multiple G-protein (particularly G _(i/o)) coupled receptors, are mutually exclusive with Gα _(s) oncogenic activating mutations, both of which ultimately enhance cAMP signalling. By integrating transcriptomics and interaction data, we show that the G _(s) pathway is upregulated in multiple cancer types, even those lacking known GNAS activating mutations. This suggests that cancer cells may develop alternative strategies to activate adenylate cyclase signalling in multiple cancer types. Our study provides a mechanistic interpretation for several rare somatic mutations in multi-gene oncodrivers, and offers possible explanations for known and potential off-label cancer treatments, suggesting new therapeutic opportunities.
机译:当突变在多种肿瘤中发生突变时通常鉴定oncodriver基因。不同的司机通常会聚在关键癌症相关途径的激活或抑制中。然而,随着许多途径含有同一基因家族的多个成员,可以忽略各个突变,因为每个家庭成员必须具有较低的突变频率,因此在任何一种突变频率下没有被鉴定在任何一种基因 - 在一次 - 在一次 - at-at--TIME分析中。在这里,我们在基因家族中寻找突变,功能序列位置,其在同一途径中与另一个基因相互排斥(在患者)中,其鉴定了已知和新的候选人的割草机。例如,多种G蛋白(特别是G _(I / O))偶联受体中的许多灭活突变与Gα_(S)致癌激活突变相互排斥,其中两者最终增强CAMP信号传导。通过整合转录组物和相互作用数据,我们表明G _(S)途径在多种癌症类型中是上调的,即使缺乏已知的GNA激活突变的疾病。这表明癌细胞可能产生替代策略以在多种癌症类型中激活腺苷酸环酶信号传导。我们的研究为多基因onoDoderiver中的几种罕见的体细胞突变提供了机械解释,并为已知和潜在的癌症癌症治疗提供了可能的解释,表明新的治疗机会。

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