Das Trinath P, Suman Suman, Papu John A M Sashi, Pal Deeksha, Edwards Angelena, Alatassi Houda, Ankem Murali K, Damodaran Chendil
Department of Urology, University of Louisville, Louisville, KY, USA.
Department of Pathology, University of Louisville, Louisville, KY, USA.
Cancer Lett. 2016 Jul 28;377(2):134-9. doi: 10.1016/j.canlet.2016.04.028. Epub 2016 Apr 25.
The activation of AKT governs many signaling pathways and promotes cell growth and inhibits apoptosis in human malignancies including prostate cancer (CaP). Here, we investigated the molecular association between AKT activation and the function of death-associated protein kinase 3 (DAPK3) in CaP. An inverse correlation of pAKT and DAPK3 expression was seen in a panel of CaP cell lines. Inhibition of AKT by wortmannin/LY294002 or overexpression of DAPK3 reverts the proliferative function of AKT in CaP cells. On the other hand, ectopic expression of AKT inhibited DAPK3 function and induced proliferation of CaP cells. In addition, AKT over-expressed tumors exhibit aggressive growth when compared to control vector in xenograft models. The immunohistochemistry results revealed a down-regulation of DAPK3 expression in AKT over-expressed tumors as compared to control tumors. Finally, we examined the expression pattern of AKT and DAPK3 in human CaP specimens - the expected gradual increase and nuclear localization of pAKT was seen in higher Gleason score samples versus benign hyperplasia (BPH). On the contrary, reduced expression of DAPK3 was seen in higher Gleason stages versus BPH. This suggests that inhibition of DAPK3 may be a contributing factor to the carcinogenesis of the prostate. Understanding the mechanism by which AKT negatively regulates DAPK3 function may suggest whether DAPK3 can be a therapeutic target for CaP.
AKT的激活调控着许多信号通路,在包括前列腺癌(CaP)在内的人类恶性肿瘤中促进细胞生长并抑制细胞凋亡。在此,我们研究了CaP中AKT激活与死亡相关蛋白激酶3(DAPK3)功能之间的分子关联。在一组CaP细胞系中观察到pAKT和DAPK3表达呈负相关。渥曼青霉素/LY294002抑制AKT或过表达DAPK3可逆转AKT在CaP细胞中的增殖功能。另一方面,异位表达AKT会抑制DAPK3功能并诱导CaP细胞增殖。此外,在异种移植模型中,与对照载体相比,过表达AKT的肿瘤表现出侵袭性生长。免疫组织化学结果显示,与对照肿瘤相比,过表达AKT的肿瘤中DAPK3表达下调。最后,我们检测了人CaP标本中AKT和DAPK3的表达模式——在高Gleason评分样本与良性前列腺增生(BPH)相比中,观察到pAKT预期的逐渐增加和核定位。相反,与BPH相比,在高Gleason分期中观察到DAPK3表达降低。这表明抑制DAPK3可能是前列腺癌发生的一个促成因素。了解AKT负向调节DAPK3功能的机制可能提示DAPK3是否可成为CaP的治疗靶点。