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Updated: Sep 11, 2025

Intratibial Osteosarcoma Cell Injection to Generate Orthotopic Osteosarcoma and Lung Metastasis Mouse Models
Published on: October 28, 2021
m5C modification of LINC01082 inhibits osteosarcoma progression by modulating the miR-543-TNRC6A axis
Yawei Hu1, Jiawen Wu1, Huaping Zeng2
1Department of Spine Surgery, People's Hospital of Longhua, Shenzhen, Guangdong, China.
Background:
Osteosarcoma (OS) is a highly malignant bone tumor primarily affecting children and adolescents, with a significant portion of patients developing metastasis, leading to poor prognosis. Recent studies have identified long noncoding RNAs (lncRNAs) as critical regulators in cancer progression. Among these, LINC01082 has shown tumor-suppressive roles in various cancers, but its function and regulatory mechanisms in OS remain unclear.
Methods:
We investigated the expression patterns and biological functions of LINC01082 in OS tissues and cell lines using RT-qPCR, western blotting, and cell viability assays. The regulatory impact of 5-methylcytosine (m5C) RNA modification on LINC01082 stability was assessed through MeRIP-qPCR, RNA immunoprecipitation (RIP), and CRISPR/dCas13b-NSUN2-mediated m5C targeting. We further explored the interaction between LINC01082, miR-543, and TNRC6A within RNA-induced silencing complexes (RISCs) using luciferase reporter assays, RNA pull-down, and functional assays.
Results:
LINC01082 was significantly downregulated in OS tissues and cell lines, with lower expression levels correlating with poorer patient survival. M5C modification, mediated by NSUN2, stabilized LINC01082 through its interaction with the m5C reader protein YBX1. CRISPR/dCas13b-NSUN2-mediated m5C targeting increased LINC01082 expression, resulting in reduced OS cell proliferation and migration, and increased apoptosis. Further, LINC01082 was found to positively regulate TNRC6A expression, with miR-543 modulating this interaction within RISCs. Inhibition of TNRC6A reversed the tumor-suppressive effects of LINC01082 methylation, highlighting the functional significance of the LINC01082-TNRC6A axis in OS.
Conclusion:
Our study highlights a novel m5C-dependent regulatory mechanism of LINC01082, and demonstrates the potential of CRISPR/dCas13b-NSUN2-mediated m5C editing to functionally modulate this lncRNA and suppress osteosarcoma progression.
Insights
This study reveals that LINC01082 is downregulated in osteosarcoma (OS). Modulating its 5-methylcytosine (m5C) modification via CRISPR/dCas13b-NSUN2 can suppress OS progression by stabilizing LINC01082.
Area of Science:
- Molecular Biology
- Oncology
- RNA Biology
Background:
- Osteosarcoma (OS) is a pediatric bone cancer with poor prognosis due to metastasis.
- Long noncoding RNAs (lncRNAs) regulate cancer, but LINC01082's role in OS is unknown.
Purpose of the Study:
- Investigate LINC01082's function and regulation in osteosarcoma.
- Explore the role of 5-methylcytosine (m5C) RNA modification in LINC01082 stability and OS progression.
Main Methods:
- Assessed LINC01082 expression and function in OS cells and tissues.
- Utilized MeRIP-qPCR, RIP, and CRISPR/dCas13b-NSUN2 for m5C modification analysis.
- Examined LINC01082, miR-543, and TNRC6A interactions within RNA-induced silencing complexes (RISCs).
Main Results:
- LINC01082 expression was downregulated in OS, correlating with poor survival.
- NSUN2-mediated m5C modification stabilized LINC01082 via YBX1.
- CRISPR/dCas13b-NSUN2 targeting increased LINC01082, inhibiting OS cell proliferation and migration.
- LINC01082 positively regulated TNRC6A, with miR-543 modulating this interaction.
Conclusions:
- A novel m5C-dependent regulatory mechanism for LINC01082 in OS was identified.
- CRISPR/dCas13b-NSUN2-mediated m5C editing shows potential for osteosarcoma therapy by modulating LINC01082.
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