| Literature DB >> 25833697 |
Sihai Yue1, Lihua Wang1, Hui Zhang1, Youhui Min1, Yongli Lou1, Hongshan Sun1, Yu Jiang1, Wenjin Zhang1, Aming Liang1, Yongkun Guo1, Ping Chen1, Guowei Lv1, Liuxiang Wang1, Qinghua Zong1, Yong Li2.
Abstract
Invasion and migration of glioblastoma multiforme (GBM) is a multistep process and an important phenotype that causes this disease to invade surrounding tissues in the brain. Recent studies have highlighted that miRNAs play a pivotal role in controlling GBM cell plasticity. In this report, we used wound healing and transwell assays to identify a novel role of miR-139-5p in inhibition of GBM cell migration and invasion. Bioinformatics coupled with luciferase and Western blot assays also revealed that miR-139-5p inhibited expression of ZEB1 and ZEB2, which are master regulators of tumor metastasis. MiR-139-5p specifically interacts with the 3'-UTR regions of ZEB1 and ZEB2, attenuating their expression in GBM cells. To corroborate this finding, we rescued ZEB1 and ZEB2 expression and found partial but significant increases in miR-139-5p-suppressed invasion of GBM cells. The biological relevance of our study was validated by analyzing levels of miR-139-5p in GBM tissue. We found that its expression significantly downregulated compared to normal tissue and shorter overall survival rates in patients with lower miR-139-5p expression. These results confirm that miR-139-5p suppresses GBM migration and invasion and highlight its potential as a biomarker and therapeutic target for treating GBM.Entities:
Keywords: Cell invasion; Cell migration; GBM; Glioblastoma multiforme; ZEB1; ZEB2; miR-139-5p
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Year: 2015 PMID: 25833697 DOI: 10.1007/s13277-015-3372-8
Source DB: PubMed Journal: Tumour Biol ISSN: 1010-4283