Center for Cancer Research and Therapeutic Development, Clark Atlanta University, 223 James P. Brawley Dr. SW, Atlanta, GA, 30314, USA.
Integrated Cancer Research Center, School of Biological Sciences, Parker H. Petit Institute for Bioengineering and Bioscience, Georgia Institute of Technology, 315 Ferst Drive, Atlanta, GA, 30309, USA.
Cancer Lett. 2019 Apr 28;448:155-167. doi: 10.1016/j.canlet.2019.02.005. Epub 2019 Feb 11.
JunD, a member of the AP-1 family, is essential for cell proliferation in prostate cancer (PCa) cells. We recently demonstrated that JunD knock-down (KD) in PCa cells results in cell cycle arrest in G-phase concomitant with a decrease in cyclin D1, Ki67, and c-MYC, but an increase in p21 levels. Furthermore, the over-expression of JunD significantly increased proliferation suggesting JunD regulation of genes required for cell cycle progression. Here, employing gene expression profiling, quantitative proteomics, and validation approaches, we demonstrate that JunD KD is associated with distinct gene and protein expression patterns. Comparative integrative analysis by Ingenuity Pathway Analysis (IPA) identified 1) cell cycle control/regulation as the top canonical pathway whose members exhibited a significant decrease in their expression following JunD KD including PRDX3, PEA15, KIF2C, and CDK2, and 2) JunD dependent genes are associated with cell proliferation, with MYC as the critical downstream regulator. Conversely, JunD over-expression induced the expression of the above genes including c-MYC. We conclude that JunD is a crucial regulator of cell cycle progression and inhibiting its target genes may be an effective approach to block prostate carcinogenesis.
JunD 是 AP-1 家族的一员,对前列腺癌 (PCa) 细胞的增殖至关重要。我们最近证明,PCa 细胞中 JunD 的敲低 (KD) 会导致细胞周期在 G 期停滞,同时 cyclin D1、Ki67 和 c-MYC 减少,而 p21 水平增加。此外,JunD 的过表达显著增加了增殖,表明 JunD 调节细胞周期进展所需的基因。在这里,我们采用基因表达谱分析、定量蛋白质组学和验证方法,证明 JunD KD 与独特的基因和蛋白表达模式相关。通过 IPA(Ingenuity Pathway Analysis)的综合比较分析,确定 1)细胞周期控制/调节是最主要的经典途径,其成员在 JunD KD 后表达显著下降,包括 PRDX3、PEA15、KIF2C 和 CDK2;2)JunD 依赖性基因与细胞增殖相关,MYC 是关键的下游调节因子。相反,JunD 的过表达诱导了上述基因包括 c-MYC 的表达。我们得出结论,JunD 是细胞周期进展的关键调节剂,抑制其靶基因可能是阻止前列腺癌发生的有效方法。