| Literature DB >> 31111544 |
Peng Xie1, Yan Wang2, Yuanmei Liao3, Qiu Han4, Zhichao Qiu5, Yinbing Chen6, Xiaohua Zuo7,8.
Abstract
Recent study has reported that microRNA-628-5p (miR-628-5p) is involved in the development of epithelial ovarian cancer; however, the mechanisms of miR-628-5p in glioma remain unclear. In this study, we explored the potential biological roles of miR-628-5p in glioma. First, we found that miR-628-5p was decreased in the tissues and cells (U87 and T98) of glioma. Second, overexpressing miR-628-5p reduced the ability of glioma cells' proliferation and induced glioma cells' cycle arrest in G1. Then, we found that miR-628-5p directly bound to the 3'-untranslated region of DDX59 and decreased the protein level of DDX59. The decrease of DDX59 was found to lead to the decrease of p-AKT. Mechanistic studies revealed that restoring the expression of DDX59 alleviated miR-628-5p-induced inhibition of proliferation of glioma. These findings suggest that the miR-628-5p/DDX59 axis has a key role in the development of glioma, and miR-628-5p might be a new therapeutic target against glioma.Entities:
Keywords: DDX59; cell cycle arrest; glioma; miR-628-5p; proliferation
Year: 2019 PMID: 31111544 DOI: 10.1002/jcb.28991
Source DB: PubMed Journal: J Cell Biochem ISSN: 0730-2312 Impact factor: 4.429