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A Novel tRF, HCETSR, Derived From tRNA-Glu/TTC, Inhibits HCC Malignancy by Regulating the SPBTN1-catenin Complex Axis
Tao Rui1,2, Kangbei Zhu1, Zonglei Mao1
1Department of Surgery, Affiliated Hangzhou First People's Hospital, School of Medicine, Westlake University, Hangzhou, 310003, China.
Abstract:
tRNA-derived fragments (tRFs), a novel class of small non-coding RNAs cleaved from transfer RNAs, have been implicated in tumor regulation. In this study, the role of a specific tRF, HCETSR is investigated, which is significantly downregulated in hepatocellular carcinoma (HCC) and correlates with advanced tumor burden and higher HCC mortality. Functional analyses revealed that HCETSR inhibits HCC malignancy and serves as an independent predictor of poor prognosis. Mechanistically, a novel SPTBN1/catenin complex axis regulated by HCETSR is identified. HCETSR binds to a critical domain of SPTBN1, disrupting its interaction with the catenin complex (comprising β-catenin, α-catenin, and P120-catenin), and facilitates the transfer of the catenin complex from the cell membrane to the nucleus. Specifically, HCETSR decreases the proteasomal degradation of β-catenin and inhibits the synthesis of nascent β-catenin. Furthermore, HCETSR suppresses the transcriptional activity of LEF1 through P120-catenin rather than α-catenin, thereby reducing β-catenin's influence on LEF1 activity. It is demonstrated that HCETSR is spliced from tRNA-Glu/TTC. The biogenesis of HCETSR and tRNA-Glu/TTC is regulated by the spliceosome and Dicer1. In conclusion, These findings suggest that HCETSR, derived from tRNA-Glu/TTC, inhibits HCC malignancy via modulation of the SPTBN1/catenin axis and may represent a promising prognostic marker and therapeutic strategy for HCC.
Insights
tRNA-derived fragment HCETSR is downregulated in hepatocellular carcinoma (HCC), inhibiting malignancy. This novel biomarker, derived from tRNA-Glu/TTC, modulates the SPTBN1/catenin axis, offering a potential prognostic marker and therapeutic strategy for HCC.
Area of Science:
- Molecular Biology
- Oncology
- RNA Biology
Background:
- tRNA-derived fragments (tRFs) are small non-coding RNAs involved in tumor regulation.
- HCETSR, a specific tRF, is significantly downregulated in hepatocellular carcinoma (HCC).
- Low HCETSR levels correlate with advanced tumor burden and increased HCC mortality.
Purpose of the Study:
- To investigate the role of HCETSR in HCC malignancy.
- To elucidate the molecular mechanisms underlying HCETSR's function in HCC.
- To evaluate HCETSR as a prognostic marker for HCC.
Main Methods:
- Functional analyses of HCETSR in HCC models.
- Investigation of the SPTBN1/catenin complex axis.
- Analysis of HCETSR biogenesis pathways involving spliceosome and Dicer1.
Main Results:
- HCETSR inhibits HCC malignancy and predicts poor prognosis.
- HCETSR disrupts the SPTBN1/catenin complex, affecting catenin localization.
- HCETSR decreases beta-catenin proteasomal degradation and suppresses LEF1 transcriptional activity.
- HCETSR is derived from tRNA-Glu/TTC and its biogenesis is regulated by the spliceosome and Dicer1.
Conclusions:
- HCETSR, from tRNA-Glu/TTC, inhibits HCC malignancy by modulating the SPTBN1/catenin axis.
- HCETSR serves as a potential prognostic marker for HCC.
- Targeting HCETSR may offer a novel therapeutic strategy for HCC.
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