circROBO1 promotes prostate cancer growth and enzalutamide resistance via accelerating glycolysis

前列腺癌 恩扎鲁胺 基因敲除 癌症研究 癌症 下调和上调 小RNA 前列腺 医学 生物 内科学 基因 雄激素受体 生物化学
作者
Zhigang Zhou,Jing Qin,Cailu Song,Tao Wu,Qiang Quan,Yan Zhang,Yang Zou,Lingrui Liu,Hailin Tang,Jun Zhao
出处
期刊:Journal of Cancer [Ivyspring International Publisher]
卷期号:14 (13): 2574-2584 被引量:4
标识
DOI:10.7150/jca.86940
摘要

Background and aim: As non-coding RNAs, circular RNAs (circRNAs) contribute to the progression of malignancies by regulating various biological processes. In prostate cancer, however, there is still a lack of understanding regarding the potential molecular pathways and roles of circRNAs. Methods: Loss-off function experiments were performed to investigate the potential biological function of circRNA in the progression of prostate cancer. Western blot, qRT-PCR, and IHC assay were used to examine the expression level of different genes or circRNAs. Further molecular biology experiments were conducted to uncover the molecular mechanism underlying circRNA in prostate cancer using dual luciferase reporter and RNA immunoprecipitation (RIP) assays. Results: A novel circRNA (hsa_circ_0124696, named circROBO1) was identified as a significantly upregulated circRNA in both prostate cancer cells and tissues. Suppression of circROBO1 significantly attenuated the proliferation of prostate cancer cells. In addition, we found that the knockdown of circROBO1 remarkably increased the sensitivity of prostate cancer to enzalutamide treatment. A deceleration in glycolysis rate was observed after inhibition of circROBO1, which could suppress prostate cancer growth and overcome resistance to enzalutamide. Our results revealed that circROBO1 promotes prostate cancer growth and enzalutamide resistance via accelerating glycolysis. Conclusion: Our study identified the biological role of the circROBO1-miR-556-5p-PGK1 axis in the growth and enzalutamide resistance of prostate cancer, which is the potential therapeutic target of prostate cancer.

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