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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
An axis involving SNAI1, microRNA-128 and SP1 modulates glioma progression
Qingsheng Dong1, Ning Cai1, Tao Tao2
1Department of Neurosurgery, The First Affiliated Hospital of Nanjing Medical University, Nanjing, China.
Background:
Glioblastoma is an extraordinarily aggressive disease that requires more effective therapeutic options. Snail family zinc finger 1, dysregulated in many neoplasms, has been reported to be involved in gliomas. However, the biological mechanisms underlying SNAI1 function in gliomas need further investigation.
Methods:
Quantitative real-time PCR was used to measure microRNA-128 (miR-128) expression level and western blot was performed to detect protein expression in U87 and U251 cells and human brain tissues. Cell cycle, CCK-8, transwell and wound-healing assays were performed. Dual-luciferase reporter assay was used for identifying the mechanism of SNAI1 and miR-128b regulation. The mechanism of miR-128 targeting SP1 was also tested by luciferase reporter assay. Immunohistochemistry and in situ hybridisation staining were used for quantifying SNAI1, SP1 and miR-128 expression levels in human glioma samples.
Results:
The Chinese Glioma Genome Atlas (CGGA) data revealed that SNAI1 was up-regulated in glioma and we confirmed the findings in normal and glioma tissues. SNAI1 depletion by shRNA retarded the cell cycle and suppressed proliferation and invasion in glioma cell lines. The CGGA data showed that the Pearson correlation index between SNAI1 and miR-128 was negatively correlated. SNAI1 suppressed miR-128b expression by binding to the miR-128b specific promoter motif, and miR-128 targeted SP1 via binding to the 3'-untranslated region of SP1. Moreover, introduction of miR-128 anti-sense oligonucleotide alleviated the cell cycle retardation, proliferation and invasion inhibition induced by SNAI1 shRNA. Immunohistochemistry and in situ hybridisation analysis of SNAI1, SP1 and miR-128 unraveled their expression levels and correlations in glioma samples.
Conclusions:
We propose that the SNAI1/miR-128/SP1 axis, which plays a vital role in glioma progression, may come to be a clinically relevant therapeutic target.
Insights
The SNAI1/miR-128/SP1 axis is crucial in glioblastoma progression. Targeting this pathway may offer new therapeutic strategies for this aggressive brain cancer.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Glioblastoma is an aggressive brain cancer with limited treatment options.
- Snail family zinc finger 1 (SNAI1) is implicated in various cancers, including gliomas, but its precise role is unclear.
- Investigating SNAI1's biological mechanisms in gliomas is critical for developing new therapies.
Purpose of the Study:
- To elucidate the role of SNAI1 in glioma progression.
- To investigate the regulatory relationship between SNAI1, microRNA-128 (miR-128), and SP1.
- To identify potential therapeutic targets within the SNAI1/miR-128/SP1 axis.
Main Methods:
- Quantitative real-time PCR and Western blot to assess SNAI1, miR-128, and SP1 expression.
- Cell cycle, proliferation (CCK-8), and invasion (Transwell, wound-healing) assays.
- Dual-luciferase reporter assays to confirm regulatory interactions.
- Immunohistochemistry and in situ hybridization on human glioma samples.
Main Results:
- SNAI1 expression is elevated in glioma tissues and promotes cell cycle progression, proliferation, and invasion.
- SNAI1 negatively regulates miR-128 expression by binding to its promoter.
- miR-128 directly targets SP1 by binding to its 3'-untranslated region.
- Restoring miR-128 function counteracted the pro-tumorigenic effects of SNAI1.
Conclusions:
- The SNAI1/miR-128/SP1 axis significantly contributes to glioma progression.
- This axis represents a promising therapeutic target for glioblastoma treatment.
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