DNMT1型
癌症研究
表观遗传学
DNA甲基转移酶
甲基转移酶
癌变
化学
生物
DNA甲基化
甲基化
癌症
基因表达
生物化学
遗传学
DNA
基因
作者
Leticia Colyn,Marina Bárcena‐Varela,Gloria Álvarez‐Sola,María U. Latasa,Iker Uriarte,Eva Santamaría,José M. Herranz,Álvaro Santos‐Laso,María Arechederra,Mikel Ruiz de Gauna,Patricia Aspichueta,Matteo Canale,Andrea Casadei‐Gardini,Maria Francesconi,Simone Carotti,S. Morini,Leonard J. Nelson,María J. Iraburu,Chaobo Chen,Bruno Sangro
出处
期刊:Hepatology
[Lippincott Williams & Wilkins]
日期:2020-11-22
卷期号:73 (6): 2380-2396
被引量:66
摘要
Background and Aims Cholangiocarcinoma (CCA) is a devastating disease often detected at advanced stages when surgery cannot be performed. Conventional and targeted systemic therapies perform poorly, and therefore effective drugs are urgently needed. Different epigenetic modifications occur in CCA and contribute to malignancy. Targeting epigenetic mechanisms may thus open therapeutic opportunities. However, modifications such as DNA and histone methylation often coexist and cooperate in carcinogenesis. We tested the therapeutic efficacy and mechanism of action of a class of dual G9a histone‐methyltransferase and DNA‐methyltransferase 1 (DNMT1) inhibitors. Approach and Results Expression of G9a , DNMT1 , and their molecular adaptor, ubiquitin‐like with PHD and RING finger domains‐1 ( UHRF1 ), was determined in human CCA. We evaluated the effect of individual and combined pharmacological inhibition of G9a and DNMT1 on CCA cell growth. Our lead G9a/DNMT1 inhibitor, CM272, was tested in human CCA cells, patient‐derived tumoroids and xenograft, and a mouse model of cholangiocarcinogenesis with hepatocellular deletion of c‐Jun‐N‐terminal‐kinase (Jnk)‐1/2 and diethyl‐nitrosamine (DEN) plus CCl 4 treatment (Jnk Δhepa + DEN + CCl 4 mice). We found an increased and correlative expression of G9a , DNMT1 , and UHRF1 in CCAs. Cotreatment with independent pharmacological inhibitors G9a and DNMT1 synergistically inhibited CCA cell growth. CM272 markedly reduced CCA cell proliferation and synergized with Cisplatin and the ERBB‐targeted inhibitor, Lapatinib. CM272 inhibited CCA tumoroids and xenograft growth and significantly antagonized CCA progression in Jnk Δhepa + DEN + CCl 4 mice without apparent toxicity. Mechanistically, CM272 reprogrammed the tumoral metabolic transcriptome and phenotype toward a differentiated and quiescent status. Conclusions Dual targeting of G9a and DNMT1 with epigenetic small molecule inhibitors such as CM272 is a potential strategy to treat CCA and/or enhance the efficacy of other systemic therapies.
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