PO.ET03.08 · 实验与分子治疗
解构癌基因协同作用的范式:靶向MYC以增强对KRAS抑制剂的响应并克服耐药
Deconstructing the paradigm of oncogene cooperation: Targeting MYC to enhance response and overcome resistance to KRAS inhibitors
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:KRAS的激活性突变,尤其是第G12密码子处的突变,常见于非小细胞肺癌(NSCLC,约30%)、胰腺导管腺癌(PDAC,约90%)和结直肠癌(CRC,约35%)。尽管sotorasib和adagrasib等KRAS-G12C抑制剂(KRASi)已获批用于NSCLC,但其临床获益常因固有和获得性耐药而受限。MYC是KRAS下游的关键转录因子,在癌症中常发生失调,并参与肿瘤发生和治疗耐药。Omomyc(OMO-103)是目前唯一处于II期临床试验的直接MYC抑制剂,为评估MYC阻断对KRAS驱动型肿瘤的影响提供了独特机会。
方法:我们使用NSCLC、CRC和PDAC肿瘤细胞系以及患者来源异种移植(PDX)模型,表征KRAS依赖性信号传导,并评估KRASi、Omomyc及其联合对增殖、细胞周期进程和凋亡的影响。机制研究包括Western印迹和RNA-seq分析。
结果:在各模型中,KRAS与MYC的双重抑制协同地损害了增殖并诱导了强烈的凋亡。Omomyc使对KRASi具有固有耐药的KRAS突变型细胞恢复敏感性,并在获得性耐药模型中恢复了药物应答。转录组和蛋白质组分析揭示,联合治疗后致癌通路发生了广泛重编程。在体内,OMO-103与KRASi的联合治疗使肿瘤消退显著大于任一单药治疗。
结论:这些发现证明了MYC与KRAS在驱动肿瘤存活及对KRAS抑制耐药方面的关键协同作用。直接阻断MYC可增强KRAS抑制剂的治疗活性,是克服多种KRAS突变型癌症中固有和获得性耐药的一种有前景的策略。
查看英文原文 English abstract
Background: Activating mutations in KRAS , particularly at codon G12, are common in non-small cell lung cancer (NSCLC, ~30%), pancreatic ductal adenocarcinoma (PDAC, ~90%), and colorectal cancer (CRC, ~35%). Although KRAS-G12C inhibitors (KRASi) such as sotorasib and adagrasib are approved for NSCLC, their clinical benefit is frequently limited by intrinsic and acquired resistance. MYC, a key transcription factor downstream of KRAS, is often deregulated in cancer and contributes to tumorigenesis and therapeutic resistance. Omomyc (OMO-103), the only direct MYC inhibitor currently in Phase II clinical trials, offers a unique opportunity to evaluate the impact of MYC blockade in KRAS-driven tumors.
Methods: We used NSCLC, CRC, and PDAC tumor cell lines and patient-derived xenograft (PDX) models to characterize KRAS-dependent signaling and to assess the effects of KRASi, Omomyc, and their combination on proliferation, cell-cycle progression, and apoptosis. Mechanistic studies included Western blotting and RNA-seq analyses.
Results: Dual KRAS and MYC inhibition synergistically impaired proliferation and induced robust apoptosis across models. Omomyc sensitized KRAS-mutant cells with intrinsic resistance to KRASi and restored drug responsiveness in models with acquired resistance. Transcriptomic and proteomic analyses revealed extensive reprogramming of oncogenic pathways upon combination therapy. In vivo, co-treatment with OMO-103 and KRASi resulted in significantly greater tumor regression than either monotherapy.
Conclusions: These findings demonstrate critical cooperation between MYC and KRAS in driving tumor survival and resistance to KRAS inhibition. Direct MYC blockade enhances the therapeutic activity of KRAS inhibitors and represents a promising strategy to overcome both intrinsic and acquired resistance in multiple KRAS-mutant cancer types.
利益披露 Disclosure
D. Capitán-Leo, None..
Í. González-Larreategui, None.
M. Arnal,
Peptomyc S.L. Employment.
J. Grueso,
Peptomyc S.L. Employment.
L. Sansegundo-Barbosa, None.
H. Thabussot,
Peptomyc S.L Employment.
I. Ferrer, None.
S. Vicent,
Revolution Medicines ).
Roche ).
LiberaBio Other, Research Advisor.
M. Beaulieu,
Peptomyc S.L. Employment, Stock, Other Business Ownership, CDO & Peptomyc S.L. co-founder.
S. Casacuberta-Serra,
Peptomyc S.L. Employment, Stock.
L. Soucek,
Peptomyc S.L. Employment, Stock, Other Business Ownership, CSO & Peptomyc S.L. co-founder.