Shukla Sanjeev, Kanwal Rajnee, Shankar Eswar, Datt Manish, Chance Mark R, Fu Pingfu, MacLennan Gregory T, Gupta Sanjay
Department of Urology, Case Western Reserve University & University Hospitals Case Medical Center, Cleveland, Ohio 44106, USA.
The Urology Institute, University Hospitals Case Medical Center, Cleveland, Ohio 44106, USA.
Oncotarget. 2015 Oct 13;6(31):31216-32. doi: 10.18632/oncotarget.5157.
IKKα has been implicated as a key regulator of oncogenesis and driver of the metastatic process; therefore is regarded as a promising therapeutic target in anticancer drug development. In spite of the progress made in the development of IKK inhibitors, no potent IKKα inhibitor(s) have been identified. Our multistep approach of molecular modeling and direct binding has led to the identification of plant flavone apigenin as a specific IKKα inhibitor. Here we report apigenin, in micro molar range, inhibits IKKα kinase activity, demonstrates anti-proliferative and anti-invasive activities in functional cell based assays and exhibits anticancer efficacy in experimental tumor model. We found that apigenin directly binds with IKKα, attenuates IKKα kinase activity and suppresses NF-ĸB/p65 activation in human prostate cancer PC-3 and 22Rv1 cells much more effectively than IKK inhibitor, PS1145. We also showed that apigenin caused cell cycle arrest similar to knockdown of IKKα in prostate cancer cells. Studies in xenograft mouse model indicate that apigenin feeding suppresses tumor growth, lowers proliferation and enhances apoptosis. These effects correlated with inhibition of p-IKKα, NF-ĸB/p65, proliferating cell nuclear antigen and increase in cleaved caspase 3 expression in a dose-dependent manner. Overall, our results suggest that inhibition of cell proliferation, invasiveness and decrease in tumor growth by apigenin are mediated by its ability to suppress IKKα and downstream targets affecting NF-ĸB signaling pathways.
IKKα被认为是肿瘤发生的关键调节因子和转移过程的驱动因素;因此,它被视为抗癌药物开发中一个有前景的治疗靶点。尽管在IKK抑制剂的开发方面取得了进展,但尚未鉴定出有效的IKKα抑制剂。我们通过分子建模和直接结合的多步骤方法,鉴定出植物黄酮芹菜素是一种特异性IKKα抑制剂。在此,我们报告在微摩尔范围内,芹菜素可抑制IKKα激酶活性,在基于功能性细胞的实验中显示出抗增殖和抗侵袭活性,并在实验性肿瘤模型中表现出抗癌功效。我们发现,芹菜素与IKKα直接结合,减弱IKKα激酶活性,并比IKK抑制剂PS1145更有效地抑制人前列腺癌PC-3和22Rv1细胞中的NF-κB/p65激活。我们还表明,芹菜素导致的细胞周期停滞与前列腺癌细胞中IKKα的敲低相似。异种移植小鼠模型研究表明,喂食芹菜素可抑制肿瘤生长、降低增殖并增强细胞凋亡。这些效应与p-IKKα、NF-κB/p65、增殖细胞核抗原的抑制以及裂解的半胱天冬酶3表达的增加呈剂量依赖性相关。总体而言,我们的结果表明,芹菜素对细胞增殖、侵袭的抑制以及肿瘤生长的降低是由其抑制IKKα和影响NF-κB信号通路的下游靶点的能力介导的。