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Long non-coding RNA KRT8P41/miR-193a-3p/FUBP1 axis modulates the proliferation and invasion of chordoma cells
Hai Wen1, Yang Fu1, Yapeng Zhu1
1Department of Orthopedics, The First Affiliated Hospital of University of Science and Technology of China (USTC), Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei, Anhui Province 230036, China.
Abstract:
Chordomas are low-grade malignancies accounting for 1-4% of primary bone malignancies. Moreover, local recurrences increase the rate of metastasis. Our previous study identified the far upstream element (FUSE)-binding protein 1 (FUBP1) as a biomarker and potential therapeutic target for chordoma. In this study, lncRNA KRT8P41 was identified as a lncRNA positively correlated with FUBP1. In chordoma patients, higher lncRNA KRT8P41 expression was correlated with a poorer prognosis. LncRNA KRT8P41 silencing significantly inhibited chordoma cell proliferation and invasion. miR-193a was negatively correlated with lncRNA KRT8P41 and FUBP1; lncRNA KRT8P41 inhibited miR-193a expression, and miR-193a inhibited FUBP1 expression. Furthermore, miR-193a directly bound to lncRNA KRT8P41 and FUBP1 and lncRNA KRT8P41 competed with FUBP1 for miR-193a binding and relieved miR-193a-mediated FUBP1 inhibition. LncRNA KRT8P41 silencing inhibited, whereas miR-193a inhibition promoted chordoma cell proliferation and invasion; the inhibition of miR-193a attenuated the roles of lncRNA KRT8P41. Within chordoma tissues, the expression of miR-193a was decreased, and the expression of FUBP1 increased compared to normal control tissues. LncRNA KRT8P41 exhibited a positive correlation with FUBP1 and a negative correlation with miR-193a in vivo. Therefore, it was concluded that lncRNA KRT8P41, miR-193a-3p, and FUBP1 form a lncRNA-miRNA-mRNA axis, modulating the proliferation and invasion of chordoma cells.
Insights
A new study reveals that lncRNA KRT8P41, miR-193a, and FUBP1 form a molecular axis that drives chordoma progression. Targeting this axis may offer new therapeutic strategies for chordoma, a rare bone cancer.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Chordomas are rare, low-grade bone malignancies with a high risk of recurrence and metastasis.
- Previous research identified FUBP1 as a potential therapeutic target and biomarker for chordoma.
Purpose of the Study:
- To investigate the role of lncRNA KRT8P41 in chordoma.
- To elucidate the molecular mechanism involving lncRNA KRT8P41, miR-193a, and FUBP1 in chordoma cell proliferation and invasion.
Main Methods:
- Correlation analysis of lncRNA KRT8P41, miR-193a, and FUBP1 expression in chordoma tissues.
- In vitro experiments involving lncRNA KRT8P41 silencing and miR-193a inhibition/mimicry.
- Dual-luciferase reporter assays to confirm direct binding interactions.
Main Results:
- lncRNA KRT8P41 expression is positively correlated with FUBP1 and negatively correlated with miR-193a in chordoma.
- Higher lncRNA KRT8P41 expression predicts poorer prognosis in chordoma patients.
- lncRNA KRT8P41 promotes chordoma cell proliferation and invasion by sponging miR-193a, thereby upregulating FUBP1.
- miR-193a directly targets both lncRNA KRT8P41 and FUBP1.
Conclusions:
- lncRNA KRT8P41, miR-193a-3p, and FUBP1 form a regulatory axis that significantly impacts chordoma cell behavior.
- This lncRNA-miRNA-mRNA axis represents a potential therapeutic target for chordoma treatment.
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