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miR‑124 inhibits cell growth through targeting IQGAP1 in colorectal cancer
Jianyu Fan1, Wenjing Zhang1, Yanting Wu1
1Faculty of Medicine, Kunming University of Science and Technology, Kunming, Yunnan 650000, P.R. China.
Abstract:
MicroRNA (miRNA/miR)-124 is a miRNA, which exerts tumor suppressive effects but is frequently absent in tumors. Although it has been validated to target oncogenic genes such as signal transducer and activator of transcription 3, forkhead box Q1, and Slug, the mechanistic link between miR‑124 and potential target genes that contribute to tumor progression, is yet to be investigated. IQ motif containing GTPase activating protein 1 (IQGAP1) is a scaffold protein that participates in protein‑protein interactions and integrating diverse signaling pathways. Previous studies suggest that overexpression of IQGAP1 enhances activity of mitogen activated protein kinase 1 and β‑catenin signaling cascades to facilitate tumor progression. The present study aimed to identify the regulative link between miR‑124 and IQGAP1 in colorectal cancer (CRC). It was demonstrated that IQGAP1 was aberrantly overexpressed in CRC tissues and cell lines. Knockdown of IQGPA1 by introducing short hairpin‑IQGAP1 lentivirus inhibited CRC cell growth and colony formation ability, and simultaneously suppressed phosphorylation of extracellular signal‑regulated kinase (ERK)1/2 and β‑catenin expression. Furthermore, it was demonstrated that miR‑124 was silenced in CRC. Restoration of miR‑124 in CRC cells impeded cell growth and colony formation ability. The direct binding of miR‑124 to the 3'untranslated region of IQGAP1 mRNA was confirmed using a luciferase reporter gene assay. Importantly, downregulation of IQGAP1 expression was observed in miR‑124‑restoration cells with simultaneous reduction of phosphorylated‑ERK1/2 and β‑catenin. In conclusion, the present study describes a potential mechanism underlying the miR‑124/IQGAP1 link in CRC progression. Silencing of miR‑124 may depress IQGAP1 expression, leading to increased activity of ERK1/2 and β‑catenin signaling.
Insights
MicroRNA-124 loss in colorectal cancer (CRC) allows IQGAP1 overexpression, promoting tumor growth. Restoring miR-124 suppresses CRC by targeting IQGAP1, inhibiting ERK1/2 and β-catenin signaling.
Area of Science:
- Molecular Biology
- Oncology
- Gene Regulation
Background:
- MicroRNA (miRNA/miR)-124 exhibits tumor-suppressive properties but is often downregulated in cancers.
- IQ motif containing GTPase activating protein 1 (IQGAP1) is a scaffold protein implicated in tumor progression through signaling pathways like MAPK and β-catenin.
- The specific regulatory relationship between miR-124 and IQGAP1 in colorectal cancer (CRC) requires elucidation.
Purpose of the Study:
- To investigate the regulatory link between miR-124 and IQGAP1 in colorectal cancer (CRC).
- To determine the impact of miR-124 and IQGAP1 on CRC cell proliferation and key signaling pathways.
Main Methods:
- Analysis of IQGAP1 and miR-124 expression in CRC tissues and cell lines.
- Utilized short hairpin-IQGAP1 lentivirus for IQGAP1 knockdown in CRC cells.
- Employed miR-124 restoration in CRC cells and performed luciferase reporter gene assays to confirm direct binding.
- Assessed cell growth, colony formation, and levels of phosphorylated ERK1/2 and β-catenin.
Main Results:
- IQGAP1 was significantly overexpressed in CRC tissues and cell lines.
- IQGAP1 knockdown inhibited CRC cell growth, colony formation, and reduced ERK1/2 phosphorylation and β-catenin expression.
- miR-124 was found to be silenced in CRC; its restoration impeded cell growth and colony formation.
- Direct binding of miR-124 to the 3'UTR of IQGAP1 mRNA was confirmed.
- miR-124 restoration led to decreased IQGAP1 expression, reduced ERK1/2 phosphorylation, and diminished β-catenin levels.
Conclusions:
- miR-124 directly targets IQGAP1 mRNA in colorectal cancer.
- The miR-124/IQGAP1 axis plays a crucial role in CRC progression by modulating ERK1/2 and β-catenin signaling.
- Downregulation of miR-124 contributes to CRC development through the upregulation of IQGAP1.
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