Alwhaibi Abdulrahman, Kolhe Ravindra, Gao Fei, Cobran Ewan K, Somanath Payaningal R
Clinical and Experimental Therapeutics, College of Pharmacy, University of Georgia and Charlie Norwood VA Medical Center, Augusta, GA 30912.
Department of Pathology, Augusta University, Augusta, GA 30912.
Oncoscience. 2019 Jul 2;6(5-6):317-336. doi: 10.18632/oncoscience.482. eCollection 2019 May.
Recent studies conducted in the mouse and cellular models suggest a stage-specific, differential effect of Akt activity modulation on tumor growth and metastasis in various cancers. In prostate cancer (PCa), although the deletion of Akt1 gene in a neuroendocrine model of TRansgenic Adenocarcinoma of the Mouse Prostate (TRAMP) blunted oncogenic transformation and tumor growth, Akt1 suppression in the advanced PCa resulted in the activation of transforming growth factor-β pathway and enhanced metastasis to the lungs. Such a dual role for the Akt isoforms and its signaling partners has not been investigated in human PCa. In the current study, we performed genomic database analysis of Akt isoforms and associated pathway molecules in human prostate adenocarcinoma, castration-resistant PCa, neuroendocrine PCa and metastatic PCa for mutations, genetic alterations, mRNA and protein expressions and activating phosphorylations from cBioportal. Results from the protein data analysis from the cBioportal were compared to the results of our data on human PCa tissue analysis and the cellular effects of Akt1 suppression using MK-2206 on PCa cell aggressiveness. Our study indicates the existence of a dual role for Akt1 in PCa and warrants a large-scale analysis of the early and advanced stage PCa clinical samples for further clarity.
最近在小鼠和细胞模型中进行的研究表明,Akt活性调节对各种癌症的肿瘤生长和转移具有阶段特异性的差异效应。在前列腺癌(PCa)中,尽管在小鼠前列腺转基因腺癌(TRAMP)的神经内分泌模型中删除Akt1基因会减弱致癌转化和肿瘤生长,但在晚期PCa中抑制Akt1会导致转化生长因子-β途径的激活,并增强肺转移。Akt亚型及其信号传导伙伴的这种双重作用尚未在人类PCa中进行研究。在本研究中,我们对人类前列腺腺癌、去势抵抗性PCa、神经内分泌PCa和转移性PCa中的Akt亚型及相关途径分子进行了基因组数据库分析,以了解其突变、基因改变、mRNA和蛋白质表达以及来自cBioportal的激活磷酸化情况。将cBioportal的蛋白质数据分析结果与我们关于人类PCa组织分析的数据以及使用MK-2206抑制Akt1对PCa细胞侵袭性的细胞效应结果进行了比较。我们的研究表明Akt1在PCa中存在双重作用,有必要对早期和晚期PCa临床样本进行大规模分析以进一步明确。