Kim Ran-Ju, Bae Eunjin, Hong Young Kwon, Hong Jae Yup, Kim Nam Keun, Ahn Hee Jung, Oh Jong Jin, Park Dong Soo
Laboratory of Cell Regulation and Carcinogenesis, CHA Cancer Institute, CHA University, Seoul, Korea.
Oncology. 2014;87(5):270-9. doi: 10.1159/000363186. Epub 2014 Aug 15.
To demonstrate that the PTEN/PI3K/Akt/NF-κB pathway plays an important role in regulating the prostate cancer stem-like cell population by upregulating ABCG2.
Targeted PTEN knockdown in human prostate DU145 and 22Rv1 cells using a small interfering RNA were confirmed by immunoblot analysis using antibodies of PTEN, phospho-Akt, Akt, and α-tubulin. Knockdown PTEN DU145 and 22Rv1 cells were augmented, and the stem cell-like properties were examined by cell viability and tumor sphere formation and treated by Akt IV inhibitor to provide the signal transduction pathway. Luciferase activity assays were performed.
The knockdown of PTEN in prostate cancer cell lines increased the stem-like properties of the cells, including their sphere-forming ability, stem cell population number, epithelial-mesenchymal transition-related gene expression, and ABCG2 expression. Additionally, PTEN expression was highly associated with elevated expression of phospho-Akt. Treatment with an Akt inhibitor suppressed the PTEN-mediated effects on the properties of these stem-like cells as well as drug resistance, ABCG2 expression, and the NF-κB pathway.
The loss of PTEN in prostate cancer cells resulted in an increased PI3K/Akt pathway. Due to the Akt activation, PTEN loss may play an important role in prostate cancer by promoting cancer stemness through a mechanism that involves enhanced NF-κB signaling.
证明PTEN/PI3K/Akt/NF-κB通路通过上调ABCG2在调节前列腺癌干细胞样细胞群体中发挥重要作用。
使用小干扰RNA在人前列腺DU145和22Rv1细胞中靶向敲低PTEN,通过使用PTEN、磷酸化Akt、Akt和α-微管蛋白抗体的免疫印迹分析进行确认。对敲低PTEN的DU145和22Rv1细胞进行扩增,并通过细胞活力和肿瘤球形成检测其干细胞样特性,并用Akt IV抑制剂处理以提供信号转导途径。进行荧光素酶活性测定。
前列腺癌细胞系中PTEN的敲低增加了细胞的干细胞样特性,包括其成球能力、干细胞群体数量、上皮-间质转化相关基因表达和ABCG2表达。此外,PTEN表达与磷酸化Akt的表达升高高度相关。用Akt抑制剂处理可抑制PTEN介导的对这些干细胞样细胞特性以及耐药性、ABCG2表达和NF-κB通路的影响。
前列腺癌细胞中PTEN的缺失导致PI3K/Akt通路增加。由于Akt激活,PTEN缺失可能通过涉及增强NF-κB信号传导的机制促进癌症干性,从而在前列腺癌中发挥重要作用。