化学
乙酰化
细胞周期
体外
细胞凋亡
癌症研究
体内
分子生物学
药理学
细胞培养
生物化学
生物
遗传学
基因
生物技术
作者
Sabrina Dallavalle,Loana Musso,Raffaella Cincinelli,Nadine Darwiche,Silvia Gervasoni,Giulio Vistoli,Mario B. Guglielmi,Ilaria La Porta,Maddalena Pizzulo,Elisa Modica,F Prosperi,Giacomo Signorino,Fabiana Colelli,Francesco Cardile,Alessandra Fucci,Egildo Luca D'Andrea,Assunta Riccio,Claudio Pisano
标识
DOI:10.1016/j.ejmech.2021.113971
摘要
Hybrid molecules targeting simultaneously DNA polymerase α (POLA1) and histone deacetylases (HDACs) were designed and synthesized to exploit a potential synergy of action. Among a library of screened molecules, MIR002 and GEM144 showed antiproliferative activity at nanomolar concentrations on a panel of human solid and haematological cancer cell lines. In vitro functional assays confirmed that these molecules inhibited POLA1 primer extension activity, as well as HDAC11. Molecular docking studies also supported these findings. Mechanistically, MIR002 and GEM144 induced acetylation of p53, activation of p21, G1/S cell cycle arrest, and apoptosis. Oral administration of these inhibitors confirmed their antitumor activity in in vivo models. In human non-small cancer cell (H460) xenografted in nude mice MIR002 at 50 mg/kg, Bid (qd × 5 × 3w) inhibited tumor growth (TGI = 61%). More interestingly, in POLA1 inhibitor resistant cells (H460-R9A), the in vivo combination of MIR002 with cisplatin showed an additive antitumor effect with complete disappearance of tumor masses in two animals at the end of the treatment. Moreover, in two human orthotopic malignant pleural mesothelioma xenografts (MM473 and MM487), oral treatments with MIR002 and GEM144 confirmed their significant antitumor activity (TGI = 72-77%). Consistently with recent results that have shown an inverse correlation between POLA1 expression and type I interferon levels, MIR002 significantly upregulated interferon-α in immunocompetent mice.
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