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Published on: October 4, 2019
ADAMTS9-AS1 Long Non‑coding RNA Sponges miR‑128 and miR-150 to Regulate Ras/MAPK Signaling Pathway in Glioma
Amir-Reza Javanmard1, Amin Jahanbakhshi2, Hossein Nemati1
1Genetics Department, Faculty of Biological Sciences, School of Biological Sciences, Tarbiat Modares University, Tehran, Iran.
Abstract:
Glioma is a malignancy of the central nervous system with a poor prognosis. Therefore, the elaboration of its molecular features creates therapeutic opportunities. Looking for the regulatory non-coding RNAs (lncRNAs and miRNAs) that are involved in glioma incidence/progression, RNA-seq analysis introduced upregulated ADAMTS9-AS1 as a bona fide candidate that sponges miR-128 and miR-150 and shows the negative correlation of expression with them. Then, RT-qPCR verified the upregulation of ADAMTS9-AS1 in glioma tissues and cell lines. Furthermore, dual-luciferase assay supported that cytoplasmic ADAMTS9-AS1 is capable of sponging miR-128 and miR-150, which are known as regulators of Ras/MAPK, PI3K, and Wnt pathways. Following the overexpression of ADAMTS9-AS1 in 1321N1 and U87 glioma cells, tyrosine kinase receptors (IGF1R and TrkC), as well as Wnt receptors (Lrp6 and Fzd) were upregulated, detected by RT-qPCR. Furthermore, downstream genes of both Ras/MAPK and Wnt pathways were upregulated. Finally following the ADAMTS9-AS1 overexpression, upregulation of Ras/MAPK and Wnt signaling pathways was verified through western blotting and Top/Fop flash assay, respectively. At the cellular level, ADAMTS9-AS1 overexpression brought about reduced sub-G1 cell population, increased proliferation rate, reduced apoptosis level, increased migration rate, shortened Bax/Bcl2 ratio, induced EMT, and stemness characteristics of transfected cells, detected by flow cytometry, MTT assay, scratch test, and RT-qPCR. Overall, these results introduced ADAMTS9-AS1 as an oncogene that upregulates Ras/MAPK and Wnt pathways through sponging of the miR-128 and miR-150 in glioma cells. The outcome of ADAMTS9-AS1 expression is more aggression of the glioma cells through increased EMT and stemness characteristics. These features candidate ADAMTS9-AS1 locus for glioma therapy. As a result, we discovered the oncogenic properties of ADAMTS9-AS1 in glioma cancer. It sponges miR-128 and miR-150 and subsequently overstimulates RAS/MAPK and Wnt signaling pathways, particularly at the receptors level. Thus, ADAMTS9-AS1 increases proliferation, migration, and stemness in glioma cell lines. A schematic representation showing the functional effect of ADAMTS9-AS1.
Insights
ADAMTS9-AS1 acts as an oncogene in glioma by sponging miR-128 and miR-150, activating Ras/MAPK and Wnt pathways. This leads to increased proliferation, migration, and stemness, suggesting ADAMTS9-AS1 as a therapeutic target for aggressive glioma.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Glioma, a central nervous system malignancy, has a poor prognosis, necessitating molecular insights for targeted therapies.
- Regulatory non-coding RNAs, including long non-coding RNAs (lncRNAs) and microRNAs (miRNAs), play crucial roles in glioma development and progression.
Purpose of the Study:
- To investigate the role of the lncRNA ADAMTS9-AS1 in glioma.
- To elucidate the molecular mechanisms by which ADAMTS9-AS1 influences glioma cell behavior and signaling pathways.
Main Methods:
- RNA sequencing (RNA-seq) and RT-qPCR were used to identify and quantify ADAMTS9-AS1 expression in glioma tissues and cell lines.
- Dual-luciferase assays confirmed the interaction between ADAMTS9-AS1, miR-128, and miR-150.
- Western blotting, Top/Fop flash assays, flow cytometry, MTT assays, and scratch tests assessed the impact of ADAMTS9-AS1 overexpression on signaling pathways and cellular functions.
Main Results:
- ADAMTS9-AS1 was found to be upregulated in glioma and negatively correlated with miR-128 and miR-150 expression.
- ADAMTS9-AS1 directly sponges miR-128 and miR-150, leading to the upregulation of Ras/MAPK and Wnt signaling pathways.
- Overexpression of ADAMTS9-AS1 promoted glioma cell proliferation, migration, epithelial-mesenchymal transition (EMT), and stemness, while reducing apoptosis.
Conclusions:
- ADAMTS9-AS1 functions as an oncogene in glioma by modulating miR-128/miR-150 and activating Ras/MAPK and Wnt pathways.
- The increased EMT and stemness characteristics driven by ADAMTS9-AS1 contribute to glioma cell aggression.
- ADAMTS9-AS1 represents a potential therapeutic target for glioma treatment.
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