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Updated: Feb 20, 2026

Characterization of Functionally Associated miRNAs in Glioblastoma and their Engineering into Artificial Clusters for Gene Therapy
Published on: October 4, 2019
Downregulation of miR-16 via URGCP pathway contributes to glioma growth
Liang Hong1, Ouyang Qing1, Zhou Ji2
1Department of Neurosurgery, Daping Hospital & Research Institute of Surgery, Third Military Medical University, Chongqing, 400042, China.
Abstract:
Experimental and clinical evidence points to a critical role of Upregulator of cell proliferation (URGCP/URG4) in controlling the progression of multiple tumors. However, the oncogenic role of URGCP in glioma still remains elusive. In this study we tried to investigate the oncogenic roles and molecular mechanisms of URGCP in glioma. We found that the levels of URGCP were upregulated in glioma, and that the high-levels of URGCP indicated a worse prognosis in glioma patients. URGCP and miR-16 are critical for glioma growth: silencing URGCP (shURGCP) inhibited glioma growth, while, the shURGCP-mediated proliferative inhibition could be recovered by antagonizing miR-16 (anta-miR-16) in vivo and in vitro. Mechanically, URGCP repressed miR-16 expression via activating NF-κB/c-myc pathway in glioma; Cyclins D1 and Cyclin E1 were identified as the direct targets of miR-16, thus, URGCP-mediated miR-16 downregulation accelerated cell proliferation by upregulating Cyclin D1 and Cyclin E1 expression. All these results suggested that URGCP accelerates glioma growth through the NF-κB/c-myc/miR-16/Cyclin D1/E1 pathway, and both URGCP and miR-16 function as a novel cell cycle regulators in glioma and could be considered as potential targets for glioma therapy.
Insights
Upregulator of cell proliferation (URGCP) drives glioma growth by suppressing miR-16, leading to increased Cyclin D1/E1. Targeting URGCP or miR-16 may offer new glioma therapies.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Upregulator of cell proliferation (URGCP/URG4) is implicated in various cancers.
- The specific oncogenic role and mechanisms of URGCP in glioma remain unclear.
Purpose of the Study:
- To investigate the oncogenic roles of URGCP in glioma.
- To elucidate the molecular mechanisms underlying URGCP's function in glioma progression.
Main Methods:
- Analysis of URGCP expression levels in glioma tissues and correlation with patient prognosis.
- In vitro and in vivo experiments involving URGCP silencing (shURGCP) and miR-16 antagonism (anta-miR-16).
- Investigation of the NF-κB/c-myc pathway and downstream targets (Cyclins D1 and E1).
Main Results:
- URGCP expression is upregulated in glioma, correlating with poor prognosis.
- Silencing URGCP inhibits glioma growth; this effect is reversed by antagonizing miR-16.
- URGCP activates the NF-κB/c-myc pathway, repressing miR-16, which in turn upregulates Cyclin D1 and Cyclin E1.
Conclusions:
- URGCP promotes glioma growth via the NF-κB/c-myc/miR-16/Cyclin D1/E1 pathway.
- URGCP and miR-16 act as novel cell cycle regulators in glioma.
- URGCP and miR-16 represent potential therapeutic targets for glioma treatment.
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