设为首页 | 加入收藏 | 贵大首页
  • 网站首页
  • 实验室概况
  • 平台建设
  • 人才队伍
  • 科学研究
  • 人才培养
  • 开放交流
  • 畜禽资源库
  • 仪器设备
  • 制度建设

miR-31-5p Regulates 14-3-3 ɛ to Inhibit Prostate Cancer 22RV1 Cell Survival and Proliferation via PI3K/AKT/Bcl-2 Signaling Pathway

2021-01-13     浏览次数: 297

作者:

Zhao J., Xu H., Duan Z., Chen X., Ao Z., Chen Y., Ruan Y. & Ni M.

期刊:Cancer management and research

发表年份:2020

摘要:

Introduction: Prostate cancer (PCa) is one of the most common malignancies, and almost all patients with advanced PCa will develop castration-resistant prostate cancer (CRPC) after receiving endocrine therapy. Effective treatment for patients with CRPC has not been established. Novel approaches are needed to identify therapeutic targets for CRPC.
Purpose: Recent research studies have found that members of the 14-3-3 family play an important role in the development and progression of PCa. Previous results have shown that 14-3-3 ɛ is significantly upregulated in several cancers. This study aimed to identify novel miRNAs that regulate 14-3-3 ɛ expression and therapeutic targets for CRPC.
Methods: In this study, we used computation and experimental approaches for the prediction and verification of the miRNAs targeting 14-3-3 ɛ, and investigated the potential roles of 14-3-3 ɛ in the survival and proliferation of 22RV1 cells.
Results: We confirm that mir-31-5p is downregulated in 22RV1 cells and acts as a tumor suppressor by regulating 14-3-3 ɛ. Ectopic expression of miR-31-5p or 14-3-3 ɛ interference significantly inhibits cell proliferation, invasion, and migration in 22RV1 cells, as well as promotes cell apoptosis via the PI3K/AKT/Bcl-2 signaling pathway. Moreover, 14-3-3 ɛ is required for the miR-31-5p-mediated upregulation of the PI3K/AKT/Bcl-2 signaling pathway.
Conclusion: Our findings provide information on the underlying mechanisms of miR-31-5p/14-3-3 ɛ in 22RV1 cell proliferation and apoptosis through the PI3K/AKT/Bcl-2 signaling pathway. These results suggest that miR-31-5p and 14-3-3 ɛ may potentially be utilized as novel prognostic markers and therapeutic targets for PCa treatment.

友情链接:
贵州大学首页 动物科学学院首页 国家留学基金委 国家自然科学基金... 贵州省科技厅官网 教育部官网 科技部官网 农业农村部官网
Copyright © 2021 高原山地动物遗传育种与繁殖教育部重点实验室 版权所有
通讯地址:贵州大学西校区崇学楼 电话:0851-88298005