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Characterization of Functionally Associated miRNAs in Glioblastoma and their Engineering into Artificial Clusters for Gene Therapy
Published on: October 4, 2019
MiR-30a-5p antisense oligonucleotide suppresses glioma cell growth by targeting SEPT7
Zhifan Jia1, Kun Wang, Guangxiu Wang
1Department of Neurosurgery, Tianjin Medical University, General Hospital, Tianjin Neurolgical Institute, Laboratory of Neuro-Oncology, Key Laboratory of Post-Trauma Neuro-Repair and Regeneration in Central Nervous System, Ministry of Education, Tianjin Key Laboratory of Injuries, Variations and Regeneration of Nervous System, Tianjin, People's Republic of China.
Abstract:
MicroRNAs (miRNAs) are small noncoding RNAs that regulate gene expression by targeting the mRNAs of hundreds of human genes. Variations in miRNA expression levels were shown to be associated with glioma. We have previously found miR-30a-5p overexpression in glioma cell lines and specimens. Bioinformatics analyses predict that several miRNAs, including miR-30a-5p, are involved in the post-transcriptional regulation of SEPT7. SEPT7 is a member of the septin family, which is a highly conserved subfamily of GTPases implicated in exocytosis, apoptosis, synaptogenesis, neurodegeneration and tumorigenesis. Our previous study has also demonstrated that SEPT7 expression is decreased in astrocytic gliomas with different grades and plays a tumor suppressor role. In the present study, we knocked down miR-30a-5p with antisense oligonucleotide (miR-30a-5p AS) in LN229 and SNB19 glioblastoma(GBM) cells, and found that cell growth and invasion were inhibited, while apoptosis was induced. miR-30a-5p AS treated cells showed upregulation of SEPT7 and downregulation of PCNA, cyclin D1, Bcl2, MMP2 and MMP9. In contrast, when miR-30a-5p mimics were transfected into LN229 and SNB19 GBM cells, cell growth and invasion were promoted and the expression of relevant proteins increased. Meanwhile, the effect of miR-30a-5p mimics on glioma cells can be reversed by transfection of SEPT7 construct. Additionaly, miR-30a-5p directly targeting SEPT7 was identified by the reporter gene assay. Our study demonstrates,for the first time, that miR-30a-5p is a bona fide negative regulator of SEPT7 and the oncogenic activity of miR-30a-5p in human gliomas is at least in part through the repression of SEPT7.
Insights
MicroRNAs (miRNAs) regulate gene expression. This study shows miR-30a-5p promotes glioma growth by suppressing SEPT7, a tumor suppressor. Inhibiting miR-30a-5p restores SEPT7 and reduces glioma progression.
Area of Science:
- Molecular Biology
- Genetics
- Oncology
Background:
- MicroRNAs (miRNAs) are key regulators of gene expression, with altered levels linked to glioma.
- SEPT7, a tumor suppressor, is downregulated in gliomas.
- miR-30a-5p is overexpressed in glioma and predicted to target SEPT7.
Purpose of the Study:
- To investigate the regulatory role of miR-30a-5p in glioma.
- To determine if miR-30a-5p targets SEPT7.
- To elucidate the mechanism of miR-30a-5p's oncogenic activity in glioma.
Main Methods:
- ব্যবহার of antisense oligonucleotides (ASO) and mimics to modulate miR-30a-5p levels in glioblastoma cell lines (LN229, SNB19).
- Assessment of cell proliferation, invasion, and apoptosis.
- Western blot analysis for SEPT7, PCNA, cyclin D1, Bcl2, MMP2, and MMP9 expression.
- Reporter gene assays to confirm direct targeting of SEPT7 by miR-30a-5p.
Main Results:
- Knockdown of miR-30a-5p inhibited glioblastoma cell growth and invasion while inducing apoptosis.
- miR-30a-5p knockdown led to increased SEPT7 expression and decreased expression of proliferation markers (PCNA, cyclin D1) and invasion markers (MMP2, MMP9).
- Overexpression of miR-30a-5p promoted cell growth and invasion, effects reversed by SEPT7 re-expression. Reporter assays confirmed direct targeting of SEPT7 by miR-30a-5p.
Conclusions:
- miR-30a-5p acts as a negative regulator of SEPT7 in human gliomas.
- The oncogenic function of miR-30a-5p in glioma is mediated, at least partly, by the repression of SEPT7.
- Targeting miR-30a-5p may represent a therapeutic strategy for glioma.
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