Wnt信号通路
蛋白激酶B
癌症研究
癌症干细胞
干细胞
靶向治疗
PI3K/AKT/mTOR通路
细胞生物学
连环素
免疫系统
癌变
祖细胞
生物
免疫学
癌症
信号转导
遗传学
作者
John M. Perry,Tao Fang,Anuradha Roy,Tara L. Lin,Xi He,Shiyuan Chen,Xiuling Lü,Jacqelyn Nemechek,Linhao Ruan,Xiazhen Yu,Debra Dukes,Andrea Moran,Jennifer R. Pace,Kealan Schroeder,Meng Zhao,Aparna Venkatraman,Pengxu Qian,Zhenrui Li,Mark Hembree,Ariel Paulson
标识
DOI:10.1038/s41556-020-0507-y
摘要
Leukaemia stem cells (LSCs) underlie cancer therapy resistance but targeting these cells remains difficult. The Wnt–β-catenin and PI3K–Akt pathways cooperate to promote tumorigenesis and resistance to therapy. In a mouse model in which both pathways are activated in stem and progenitor cells, LSCs expanded under chemotherapy-induced stress. Since Akt can activate β-catenin, inhibiting this interaction might target therapy-resistant LSCs. High-throughput screening identified doxorubicin (DXR) as an inhibitor of the Akt–β-catenin interaction at low doses. Here we repurposed DXR as a targeted inhibitor rather than a broadly cytotoxic chemotherapy. Targeted DXR reduced Akt-activated β-catenin levels in chemoresistant LSCs and reduced LSC tumorigenic activity. Mechanistically, β-catenin binds multiple immune-checkpoint gene loci, and targeted DXR treatment inhibited expression of multiple immune checkpoints specifically in LSCs, including PD-L1, TIM3 and CD24. Overall, LSCs exhibit distinct properties of immune resistance that are reduced by inhibiting Akt-activated β-catenin. These findings suggest a strategy for overcoming cancer therapy resistance and immune escape. Targeting resistant stem cells in leukaemia, Perry et al. show that doxorubicin at low doses decreases Akt-mediated β-catenin activity, downregulates expression of multiple immune-checkpoint genes and dampens tumorigenesis of leukaemia stem cells.
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