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Selective killing of K-ras mutant cancer cells by small molecule inducers of oxidative stress

机译:小分子氧化应激诱导剂选择性杀伤K-ras突变型癌细胞

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摘要

Activating K-RAS mutations are the most frequent oncogenic mutations in human cancer. Numerous downstream signaling pathways have been shown to be deregulated by oncogenic K-ras. However, to date there are still no effective targeted therapies for this genetically defined subset of patients. Here we report the results of a small molecule, synthetic lethal screen using mouse embryonic fibroblasts derived from a mouse model harboring a conditional oncogenic K-rasG12D allele. Among the >50,000 compounds screened, we identified a class of drugs with selective activity against oncogenic K-ras–expressing cells. The most potent member of this class, lanperisone, acts by inducing nonapoptotic cell death in a cell cycle- and translation-independent manner. The mechanism of cell killing involves the induction of reactive oxygen species that are inefficiently scavenged in K-ras mutant cells, leading to oxidative stress and cell death. In mice, treatment with lanperisone suppresses the growth of K-ras–driven tumors without overt toxicity. Our findings establish the specific antitumor activity of lanperisone and reveal oxidative stress pathways as potential targets in Ras-mediated malignancies.
机译:活化的K-RAS突变是人类癌症中最常见的致癌突变。大量下游信号通路已被致癌性K-ras抑制。然而,迄今为止,对于这种遗传定义的患者亚群仍没有有效的靶向疗法。在这里,我们报告使用小鼠胚胎成纤维细胞的小分子合成致死筛选的结果,该小鼠胚胎成纤维细胞源自具有条件致癌K-rasG12D等位基因的小鼠模型。在筛选出的50,000多种化合物中,我们鉴定出了一类对致癌K-ras表达细胞具有选择性活性的药物。此类药物中最有效的成员Lanperisone以细胞周期和翻译非依赖性的方式诱导非凋亡性细胞死亡。细胞杀伤的机制包括诱导活性氧,这些活性氧在K-ras突变细胞中没有被有效清除,从而导致氧化应激和细胞死亡。在小鼠中,lan​​perisone治疗可抑制K-ras驱动的肿瘤的生长,而无明显毒性。我们的发现建立了兰培酮的特定抗肿瘤活性,并揭示了氧化应激途径是Ras介导的恶性肿瘤的潜在靶标。

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