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Lamellarin 14 a derivative of marine alkaloids inhibits the T790M/C797S mutant epidermal growth factor receptor

机译:Ladellarin 14是海洋生物碱的衍生物抑制T790M / C797S突变体表皮生长因子受体

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摘要

The emergence of acquired resistance is a major concern associated with molecularly targeted kinase inhibitors. The C797S mutation in the epidermal growth factor receptor (EGFR) confers resistance to osimertinib, a third‐generation EGFR‐tyrosine kinase inhibitor (EGFR‐TKI). We report that the derivatization of the marine alkaloid topoisomerase inhibitor lamellarin N provides a structurally new class of EGFR‐TKIs. One of these, lamellarin 14, is effective against the C797S mutant EGFR. Bioinformatic analyses revealed that the derivatization transformed the topoisomerase inhibitor‐like biological activity of lamellarin N into kinase inhibitor‐like activity. Ba/F3 and PC‐9 cells expressing the EGFR in‐frame deletion within exon 19 (del ex19)/T790M/C797S triple‐mutant were sensitive to lamellarin 14 in a dose range similar to the effective dose for cells expressing EGFR del ex19 or del ex19/T790M. Lamellarin 14 decreased the autophosphorylation of EGFR and the downstream signaling in the triple‐mutant EGFR PC‐9 cells. Furthermore, intraperitoneal administration of 10 mg/kg lamellarin 14 for 17 days suppressed tumor growth of the triple‐mutant EGFR PC‐9 cells in a mouse xenograft model using BALB/c nuu mice. Thus, lamellarin 14 serves as a novel structural backbone for an EGFR‐TKI that prevents the development of cross‐resistance against known drugs in this class.
机译:获得性抗性的出现是与分子靶向激酶抑制剂相关的主要问题。表皮生长因子受体(EGFR)中的C797S突变赋予OSIMERTINIB,第三代EGFR-酪氨酸激酶抑制剂(EGFR-TKI)赋予抗性。我们认为海洋生物碱拓扑异构酶抑制剂层状蛋白抑制剂衍生化提供了结构新的EGFR-TKIS。其中一个层状蛋白14对C797S突变体EGFR有效。生物信息分析表明,衍生化将层状聚合物酶的抑制剂样生物活性转化为LAPLARARIN N的样生物活性进入激酶抑制剂的活性。在外显子19(Del EX19)/ T790M / C797S中表达EGFR内型缺失的BA / F3和PC-9细胞对层状蛋白14的剂量范围敏感,类似于表达EGFR Del EX19或的细胞的有效剂量del ex19 / t790m。层状蛋白14降低了eGFR和三突变体EGFR PC-9细胞中的下游信号传导的自磷酸化。此外,腹膜内给药10mg / kg层状蛋白14℃17天抑制了使用BALB / C Nu / Nu小鼠在小鼠异种移植模型中的三突变型EGFR PC-9细胞的肿瘤生长。因此,LoMellarin 14用作用于EGFR-TKI的新型结构骨架,其防止在该类中产生对已知药物的交叉抗性。

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