| Literature DB >> 32494198 |
Ning Lin1, Wentao Li2, Xiefeng Wang2, Shiqiang Hou1, Dong Yu1, Xingyuan Zhao1, Chunjing Jin3, Guoquan Yao1, Wei Yan2, Yongping You2.
Abstract
BACKGROUND: Epithelial-mesenchymal Transition (EMT) is involved in various cancers including glioblastoma. Our previous study has shown that miR-340 negatively correlated with EMT process in glioblastoma.Entities:
Keywords: EMT; c-MET; glioblastoma; miR-340
Year: 2020 PMID: 32494198 PMCID: PMC7229788 DOI: 10.2147/CMAR.S250772
Source DB: PubMed Journal: Cancer Manag Res ISSN: 1179-1322 Impact factor: 3.989
Figure 1Expression pattern and clinical significance of miR-340 in GBM samples. (A) miR-340 was significantly up-regulated in the Proneural subtype (PN) compared with the other subtypes: Classical (CL), Mesenchymal (ME) and Neural (NE) in TCGA dataset. (B) EMT process associated genes were more enriched in the GBM patients with low expression level of miR-340 via GSEA analysis in TCGA dataset. (C) High level of miR-340 predicts a better prognosis in TCGA GBM patients. (D) The expression level of miR-340 was lower in recurrent GBM than those in primary cases. (E) miR-340 was significantly down-regulated in GBM cells (U87, U251 and LN229 cell lines) compared to normal glial cell line (NHA). * P <0.05, **P<0.01.
Figure 2miR-340 overexpression inhibited cell invasion and proliferation in vitro. (A) miR-340 decreased the cell invasion of GBM cells. (B) The growth curve of GBM cells transduced with miR-340 and Negative controls. (C) The proliferative ability was suppressed by miR-340 via colony formation assays. (D) miR-340 altered the expression of EMT associated genes and some classical oncogenes. ** P <0.01.
Figure 3C-MET is a direct downstream target of miR-340. (A) Schematic of the construction of wild-type or mutant c-MET 3ʹ-UTR vectors is illustrated. (B) Relative luciferase activity was analyzed in U251 and LN229 cells. Firefly luciferase vector was used as an internal control. (C) Western blot results of c-MET protein in U251 and LN229 cells transduced with miR-340 and negative control. (D) The representative IHC pictures showed the c-MET protein expression in tissue with high or low miR-340 expression. (E) The relative expression level of c-MET by IHC in groups with high or low miR-340. **P<0.01.
Figure 4Restoring c-MET expression counteracted miR-340’s suppression on cell invasion and EMT process in GBM cells. (A and B) The cell proliferative ability suppressed by miR-340 was recovered by transduction of c-MET by CCK8 assays and Colony formation assays. (C) The cell invasion ability suppressed by miR-340 was recovered by transduction of c-MET. (D) The expression levels of EMT associated markers and oncogenes altered by miR-340 were restored by c-MET overexpression. **P<0.01.
Figure 5miR-340 suppressed glioma tumor growth in orthotopic models. (A) miR-340-treated GBM cells displayed a marked reduction of tumor volume compared with negative controls. (B) Kaplan–Meier survival curve of mice injected with bearing miR-340 and NC transfected GBM cells. (C) and (D) Western blot analysis of EMT associated markers and oncogenes in intracranial tumors of nude mice. (E) IHC analysis of EMT associated markers in intracranial tumors of nude mice.