克拉斯
癌症研究
癌基因
小分子
癌症
生物
病毒癌基因
癌细胞
突变
突变体
遗传学
结直肠癌
基因
细胞周期
作者
Johannes Popow,William Farnaby,Andreas Gollner,Christiane Kofink,Gerhard W. Fischer,Melanie Wurm,David Zollman,Andre J. Wijaya,Nikolai Mischerikow,Carina Hasenoehrl,Polina Prokofeva,Heribert Arnhof,Silvia Arce-Solano,Sammy Bell,Georg Boeck,Emelyne Diers,Aileen B. Frost,Jake Goodwin‐Tindall,Jale Karolyi‐Oezguer,Shakil Khan
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2024-09-19
卷期号:385 (6715): 1338-1347
被引量:177
标识
DOI:10.1126/science.adm8684
摘要
Mutations in the Kirsten rat sarcoma viral oncogene homolog (KRAS) protein are highly prevalent in cancer. However, small-molecule concepts that address oncogenic KRAS alleles remain elusive beyond replacing glycine at position 12 with cysteine (G12C), which is clinically drugged through covalent inhibitors. Guided by biophysical and structural studies of ternary complexes, we designed a heterobifunctional small molecule that potently degrades 13 out of 17 of the most prevalent oncogenic KRAS alleles. Compared with inhibition, KRAS degradation results in more profound and sustained pathway modulation across a broad range of KRAS mutant cell lines, killing cancer cells while sparing models without genetic KRAS aberrations. Pharmacological degradation of oncogenic KRAS was tolerated and led to tumor regression in vivo. Together, these findings unveil a new path toward addressing KRAS-driven cancers with small-molecule degraders.
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