Activation of the Erk/MAPK signaling pathway is a driver for cadmium induced prostate cancer

MAPK/ERK通路 小桶 生物 癌变 细胞周期 癌症研究 细胞生长 信号转导 细胞凋亡 前列腺癌 下调和上调 细胞生物学 分子生物学 癌症 基因表达 基因 遗传学 转录组
作者
Pritha Dasgupta,Priyanka Kulkarni,Nadeem S. Bhat,Shahana Majid,Marisa Shiina,Varahram Shahryari,Soichiro Yamamura,Yuichiro Tanaka,Ravi Gupta,Rajvir Dahiya,Yutaka Hashimoto
出处
期刊:Toxicology and Applied Pharmacology [Elsevier]
卷期号:401: 115102-115102 被引量:23
标识
DOI:10.1016/j.taap.2020.115102
摘要

Cadmium (Cd) is reported to be associated with carcinogenesis. The molecular mechanisms associated with Cd-induced prostate cancer (PCa) remain elusive. RWPE1, PWR1E and DU 145 cells were used. RT2 Profiler Array, real-time-quantitative-PCR, immunofluorescence, cell cycle, apoptosis, proliferation and colony formation assays along with Gene Set Enrichment Analysis (GSEA) were performed. Chronic Cd exposure of non-malignant RWPE1 and PWR1E cells promoted cell survival, proliferation and colony formation with inhibition of apoptosis. Even a two-week Cd exposure of PCa cell line (DU 145) significantly increased the proliferation and decreased apoptosis. RT2 profiler array of 84 genes involved in the Erk/MAPK pathway revealed induction of gene expression in Cd-RWPE1 cells compared to RWPE1. This was confirmed by individual TaqMan gene expression analysis in both Cd-RWPE1 and Cd-PWR1E cell lines. GSEA showed an enrichment of the Erk/MAPK pathway along with other pathways such as KEGG-ERBB, KEGG-Cell Cycle, KEGG-VEGF, KEGG-Pathways in cancer and KEGG-prostate cancer pathway. We randomly selected upregulated genes from Erk/MAPK pathway and performed profile analysis in a PCa data set from the TCGA/GDC data base. We observed upregulation of these genes in PCa compared to normal samples. An increase in phosphorylation of the Erk1/2 and Mek1/2 was observed in Cd-RWPE1 and Cd-PWR1E cells compared to parental cells, confirming that Cd-exposure induces activation of the Erk/MAPK pathway. This study demonstrates that Erk/MAPK signaling is a major pathway involved in Cd-induced malignant transformation of normal prostate cells. Understanding these dominant oncogenic pathways may help develop optimal therapeutic strategies for PCa.
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