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miR-494-3p Regulates Cellular Proliferation, Invasion, Migration, and Apoptosis by PTEN/AKT Signaling in Human Glioblastoma Cells.
- Source :
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Cellular and molecular neurobiology [Cell Mol Neurobiol] 2015 Jul; Vol. 35 (5), pp. 679-87. Date of Electronic Publication: 2015 Feb 08. - Publication Year :
- 2015
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Abstract
- Malignant gliomas are the most common primary brain tumors, and the molecular mechanisms involving their progression and recurrence are still largely unclear. Substantial data indicate that the oncogene miR-494-3p is significantly elevated in gliomas, but the molecular functions of miR-494-3p in gliomagenesis are largely unknown. The present study aimed to explore the role of miR-494-3p and its molecular mechanism in human brain gliomas, malignant glioma cell lines, and cancer stem-like cells. The expression level of miR-494-3p in 48 human glioma issues and 8 normal brain tissues was determined using stem-loop real-time polymerase chain reaction (PCR). To study the function of miR-494-3p inhibitor in glioma cells, the miR-494-3p inhibitor lentivirus was used to transfect glioma cells. Transwell invasion system was used to estimate the effects of miR-494-3p inhibitor on the invasiveness of glioma cells. A mouse model was used to test the effect of miR-494-3p inhibitor on glioma proliferation and invasion in vivo. Results showed that the expression of miR-494-3p in human brain glioma tissues was higher than in normal brain tissues. Downregulated expression of miR-494-3p can inhibit the invasion and proliferation and promote apoptosis in glioma cells. Quantitative reverse transcription PCR and Western blotting analysis revealed that the expression of PTEN was increased after downexpression of miR-494-3p in glioma cells (U87 and U251). miR-494-3p inhibitor could prevent migration, invasion, proliferation, and promote apotosis in gliomas through PTEN/AKT pathway. Therefore, the study results have shown that miR-494-3p may act as a therapeutic target in gliomas.
- Subjects :
- Animals
Cell Line, Tumor
Cell Proliferation
Female
Gene Expression Regulation, Neoplastic
Glioblastoma enzymology
Humans
Lentivirus metabolism
Male
Mice, Nude
MicroRNAs genetics
Middle Aged
Neoplasm Invasiveness
PTEN Phosphohydrolase genetics
RNA, Messenger genetics
RNA, Messenger metabolism
Signal Transduction
Transfection
Xenograft Model Antitumor Assays
Apoptosis
Cell Movement
Glioblastoma genetics
Glioblastoma pathology
MicroRNAs metabolism
PTEN Phosphohydrolase metabolism
Proto-Oncogene Proteins c-akt metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 1573-6830
- Volume :
- 35
- Issue :
- 5
- Database :
- MEDLINE
- Journal :
- Cellular and molecular neurobiology
- Publication Type :
- Academic Journal
- Accession number :
- 25662849
- Full Text :
- https://doi.org/10.1007/s10571-015-0163-0