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A genetic interaction analysis identifies cancer drivers that modify EGFR dependency

机译:遗传互动分析识别癌症驱动程序,用于修改EGFR依赖性

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A large number of cancer drivers have been identified through tumor sequencing efforts, but how they interact and the degree to which they can substitute for each other have not been systematically explored. To comprehensively investigate how cancer drivers genetically interact, we searched for modifiers of epidermal growth factor receptor (EGFR) dependency by performing CRISPR, shRNA, and expression screens in a non-small cell lung cancer (NSCLC) model. We elucidated a broad spectrum of tumor suppressor genes (TSGs) and oncogenes (OGs) that can genetically modify proliferation and survival of cancer cells when EGFR signaling is altered. These include genes already known to mediate EGFR inhibitor resistance as well as many TSGs not previously connected to EGFR and whose biological functions in tumorigenesis are not well understood. We show that mutation of PBRM1, a subunit of the SWI/SNF complex, attenuates the effects of EGFR inhibition in part by sustaining AKT signaling. We also showthat mutation of Capicua (CIC), a transcriptional repressor, suppresses the effects of EGFR inhibition by partially restoring the EGFR-promoted gene expression program, including the sustained expression of Ets transcription factors such as ETV1. Together, our data provide strong support for the hypothesis that many cancer drivers can substitute for each other in certain contexts and broaden our understanding of EGFR regulation.
机译:已经通过肿瘤测序努力确定了大量癌症司机,但它们如何互动以及他们可以替代对方的程度尚未得到系统探索。全面调查癌症司机的遗传交互方式,我们通过在非小细胞肺癌(NSCLC)模型中进行表皮生长因子受体(EGFR)依赖性的改性剂。我们阐明了广谱的肿瘤抑制基因(TSG)和血管生成(OGS),当EGFR信号传导改变时,可转基因癌细胞的增殖和存活。这些包括已经已知的基因介导EGFR抑制剂抗性以及以前未以预先连接到EGFR的许多TSG,并且其在肿瘤发生中的生物学功能尚不清楚。我们表明,通过维持AKT信号传导,PBRM1的突变是SWI / SNF复合物的亚基,抑制EGFR抑制的影响。我们还显示Capicua(CIC),转录阻遏物的突变,抑制EGFR抑制的影响,通过部分恢复EGFR促进的基因表达程序,包括ETS转录因子如ETV1的持续表达。我们的数据在一起,为假设提供了强大的支持,即许多癌症司机可以在某些情况下互相替代,并扩大我们对EGFR监管的理解。

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