克拉斯
癌症研究
结直肠癌
合理设计
癌症治疗
天然产物
化学
计算生物学
抄写(语言学)
堆积
癌基因
DNA
转录因子
癌症
G-四倍体
生物
氢键
结构-活动关系
联合疗法
医学
立体化学
结合位点
生物化学
靶向治疗
细胞生物学
内科学
组合化学
大肠腺癌
作者
Lulu Zhang,Kang Han,Xiaozhe Wang,Xiaolin Yu,Yongqiang Zhang,Sihan He,Zhiwei Han,Yushuang Liu,Jun‐Cheng Su,J Zhou,Shengen Yi,Shengtao Xu,Jinlei Bian,Kewei Zheng,Ling‐Yi Kong,K Y Wang
摘要
Targeting oncogene promoter G-quadruplexes (G4s) is a compelling therapeutic strategy against human malignancies. However, clinical progress has been hindered by the lack of potent and structurally diverse G4-targeting ligands. Herein, using parallel KRAS proximal promoter G4 (KRAS-G4) as a model system, we screened an in-house natural product library and identified dehydroevodiamine (DEE) as a novel G4 stabilizer. Although DEE showed only modest anticancer activity, structural analyses determined its predominant binding mode to KRAS-G4. Leveraging these structural insights, we rationally designed and synthesized 15 DEE analogues. Among them, compound 7i emerged as the lead candidate, demonstrating a 9-fold higher binding affinity and up to 20-fold improvement in antiproliferative activity over DEE. We further determined the high-resolution NMR structure of the KRAS-G4-7i complex, uncovering a distinct dual-binding mode, featuring extensive π-π stacking interactions with outer G-tetrads and specific hydrogen bonding within groove regions. Functional analysis showed 7i effectively suppressed transcription of several G4-containing oncogenes, induced genome-wide G4 formation, and triggered DNA damage in colorectal cancer cells. Moreover, 7i significantly inhibited the growth of patient-derived colorectal tumor organoids. Overall, our findings establish a structural framework for rational design of parallel G4-targeting ligands and emphasize an alternative G4-based therapeutic strategy for KRAS-driven cancers.
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