Targeting cyclin dependent kinase 5 in hepatocellular carcinoma – A novel therapeutic approach

细胞周期蛋白依赖激酶5 癌症研究 肝细胞癌 激酶 DNA损伤 细胞周期 生物 医学 癌症 DNA修复 体内 细胞周期蛋白依赖激酶 细胞周期蛋白D1 细胞周期蛋白依赖激酶2 细胞生物学 蛋白激酶A DNA 内科学 生物技术 遗传学
作者
Sandra M. Ehrlich,Johanna Liebl,Maximilian A. Ardelt,Thorsten Lehr,Enrico N. De Toni,Doris Mayr,Lydia Brandl,Thomas Kirchner,Stefan Zahler,Alexander L. Gerbes,Angelika M. Vollmar
出处
期刊:Journal of Hepatology [Elsevier]
卷期号:63 (1): 102-113 被引量:54
标识
DOI:10.1016/j.jhep.2015.01.031
摘要

For a long time cyclin dependent kinase 5 (Cdk5) was thought to be exclusively important in neuronal cells. However, increasing evidence recently suggests a function of Cdk5 in cancer progression. In this study, we examined the role of Cdk5 and its therapeutic accessibility in hepatocellular carcinoma (HCC), a highly chemoresistant cancer with poor prognosis and paramount clinical importance in order to develop novel targeted therapies for systemic treatment.Expression and activity of Cdk5 was analyzed in a human HCC tissue microarray, human patient samples and HCC cell lines. To characterize Cdk5 functions and signaling pathways in HCC, we applied genetic downregulation and pharmacologic inhibition in various approaches including cell based assays and mouse xenograft models.Expression and activity of Cdk5 was increased in human HCC tissues as compared to normal liver tissues. Functional ablation of Cdk5 significantly decreased HCC cell proliferation and clonogenic survival. Moreover, genetic and pharmacological inhibition of Cdk5 showed in vivo efficacy in HCC xenograft mouse models. Investigating the mechanisms behind these functional effects revealed that Cdk5 is most active in the nucleus of cells in G2/M phase. Cdk5 regulates DNA damage response by phosphorylating ataxia telangiectasia mutated (ATM) kinase and thereby influencing its downstream cascade. Consequently, combination of Cdk5 inhibition with DNA-damage-inducing chemotherapeutics synergistically inhibited HCC tumor progression in vitro and in vivo.In summary, we introduce Cdk5 as a novel drugable target for HCC treatment and suggest the combination of Cdk5 inhibition and DNA damaging agents as a novel therapeutic approach.
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