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首页> 外文期刊>Frontiers in Molecular Biosciences >The Multi-Level Mechanism of Action of a Pan-Ras Inhibitor Explains its Antiproliferative Activity on Cetuximab-Resistant Cancer Cells
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The Multi-Level Mechanism of Action of a Pan-Ras Inhibitor Explains its Antiproliferative Activity on Cetuximab-Resistant Cancer Cells

机译:Pan-RAS抑制剂的多级作用机制解释了其对抗甘油抗性癌细胞的抗增殖活性

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Ras oncoproteins play a crucial role in the onset, maintenance, and progression of the most common and deadly human cancers. Despite extensive research efforts, only few mutant-specific Ras inhibitors have been reported. We show that cmp4 – previously identified as a water-soluble Ras inhibitor– targets multiple steps in the activation and downstream signaling of different Ras mutants and isoforms. Binding of this pan-Ras inhibitor to an extended Switch II pocket on HRas and KRas proteins induces a conformational change that down-regulates intrinsic and GEF-mediated nucleotide dissociation and exchange and effector binding. A mathematical model of the Ras activation cycle predicts that the inhibitor severely reduces the proliferation of different Ras-driven cancer cells, effectively cooperating with Cetuximab to reduce proliferation even of Cetuximab-resistant cancer cell lines. Experimental data confirm the model prediction, indicating that the pan-Ras inhibitor is an appropriate candidate for medicinal chemistry efforts tailored at improving its currently unsatisfactory affinity.
机译:Ras癌蛋白在最常见和致命的人类癌症的发病,维护和进展中起着至关重要的作用。尽管进行了广泛的研究努力,但仅报告了几种突变特异性的RAS抑制剂。我们表明CMP4 - 以前鉴定为水溶性RAS抑制剂 - 靶向不同RAS突变体和同种型的激活和下游信号传导中的多个步骤。该PAN-RAS抑制剂对HRAS和KRAS蛋白的延长开关II口袋的结合诱导构象变化,下调内在和全套核苷酸解离和交换和效应结合。 RAS活化循环的数学模型预测抑制剂严重降低了不同RAS驱动的癌细胞的增殖,有效地与西妥昔单抗合作,以减少耐柔尾癌细胞系的增殖。实验数据证实了模型预测,表明Pan-Ras抑制剂是在改善目前不令人满意的亲和力时量身定制的药用化学努力的适当候选者。

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