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EGFR-Mediated Reactivation of MAPK Signaling Induces Acquired Resistance to GSK2118436 in BRAF V600E-Mutant NSCLC Cell Lines

机译:EGFR介导的MAPK信号转导诱导BRAF V600E突变型NSCLC细胞系对GSK2118436的获得性耐药

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摘要

Although treatment of BRAF V600E-mutant non-small cell lung cancer (NSCLCV600E) with GSK2118436 has shown an encouraging efficacy, most patients develop resistance. To investigate the mechanisms of acquired resistance to GSK2118436 in NSCLCV600E, we established GSK2118436-resistant (GSR) cells by exposing MV522 NSCLCV600E to increasing GSK2118436 concentrations. GSR cells displayed activated EGFR-RAS-CRAF signaling with upregulated EGFR ligands and sustained activation of ERK1/2, but not MEK1/2, in the presence of GSK2118436. Treatment of GSR cells with GSK2118436 enhanced EGFR-mediated RAS activity, leading to the formation of BRAF-CRAF dimers and transactivation of CRAF. Interestingly, sustained activation of ERK1/2 was partly dependent on receptor-interacting protein kinase-2 (RIP2) activity, but not on MEK1/2 activity. Combined BRAF and EGFR inhibition blocked reactivation of ERK signaling and improved efficacy in vitro and in vivo. Our findings support the evaluation of combined BRAF and EGFR inhibition in NSCLCV600E with acquired resistance to BRAF inhibitors. (C) 2016 AACR.
机译:尽管用GSK2118436治疗BRAF V600E突变型非小细胞肺癌(NSCLCV600E)表现出令人鼓舞的疗效,但大多数患者仍产生耐药性。为了研究NSCLCV600E中获得性对GSK2118436的抗性机制,我们通过将MV522 NSCLCV600E暴露于增加的GSK2118436浓度来建立了对GSK2118436耐药的(GSR)细胞。在存在GSK2118436的情况下,GSR细胞显示出具有上调的EGFR配体的激活的EGFR-RAS-CRAF信号传导,并持续激活ERK1 / 2,而不是MEK1 / 2。用GSK2118436处理GSR细胞可增强EGFR介导的RAS活性,导致BRAF-CRAF二聚体的形成和CRAF的反式激活。有趣的是,ERK1 / 2的持续活化部分取决于受体相互作用蛋白激酶2(RIP2)的活性,但不取决于MEK1 / 2的活性。结合的BRAF和EGFR抑制作用可阻断ERK信号的重新激活,并改善体内和体外疗效。我们的发现支持评估NSCLCV600E对BRAF和EGFR的联合抑制以及对BRAF抑制剂的获得性耐药。 (C)2016 AACR。

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