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The cryptic lncRNA-encoded microprotein TPM3P9 drives oncogenic RNA splicing and tumorigenesis
Kun Meng1,2, Yuying Li1, Xiaoyi Yuan1
1MOE Key Laboratory of Tumor Molecular Biology and State Key Laboratory of Bioactive Molecules and Druggability Assessment, Institute of Life and Health Engineering, College of Life Science and Technology, Jinan University, Guangzhou, 510632, China.
Abstract:
Emerging evidence demonstrates that cryptic translation from RNAs previously annotated as noncoding might generate microproteins with oncogenic functions. However, the importance and underlying mechanisms of these microproteins in alternative splicing-driven tumor progression have rarely been studied. Here, we show that the novel protein TPM3P9, encoded by the lncRNA tropomyosin 3 pseudogene 9, exhibits oncogenic activity in clear cell renal cell carcinoma (ccRCC) by enhancing oncogenic RNA splicing. Overexpression of TPM3P9 promotes cell proliferation and tumor growth. Mechanistically, TPM3P9 binds to the RRM1 domain of the splicing factor RBM4 to inhibit RBM4-mediated exon skipping in the transcription factor TCF7L2. This results in increased expression of the oncogenic splice variant TCF7L2-L, which activates NF-κB signaling via its interaction with SAM68 to transcriptionally induce RELB expression. From a clinical perspective, TPM3P9 expression is upregulated in cancer tissues and is significantly correlated with the expression of TCF7L2-L and RELB. High TPM3P9 expression or low RBM4 expression is associated with poor survival in patients with ccRCC. Collectively, our findings functionally and clinically characterize the "noncoding RNA"-derived microprotein TPM3P9 and thus identify potential prognostic and therapeutic factors in renal cancer.
Insights
A novel microprotein, TPM3P9, derived from noncoding RNA, drives clear cell renal cell carcinoma (ccRCC) progression by altering RNA splicing. This discovery offers new prognostic and therapeutic targets for kidney cancer.
Area of Science:
- Molecular Oncology
- RNA Biology
- Cancer Genomics
Background:
- Noncoding RNAs can produce microproteins with oncogenic potential.
- The role of microproteins in alternative splicing-driven tumor progression is largely unexplored.
Purpose of the Study:
- To investigate the function and mechanism of the microprotein TPM3P9 in clear cell renal cell carcinoma (ccRCC).
- To explore TPM3P9's role in alternative splicing and its clinical significance in ccRCC.
Main Methods:
- Identified TPM3P9 as a microprotein encoded by the lncRNA tropomyosin 3 pseudogene 9.
- Investigated TPM3P9's interaction with splicing factor RBM4 and its effect on TCF7L2 splicing.
- Analyzed TPM3P9 expression in ccRCC tissues and correlated it with clinical outcomes.
Main Results:
- TPM3P9 overexpression promotes ccRCC cell proliferation and tumor growth.
- TPM3P9 inhibits RBM4-mediated exon skipping in TCF7L2, increasing the oncogenic TCF7L2-L variant.
- TPM3P9 upregulates the NF-κB signaling pathway component RELB.
- TPM3P9 expression correlates with TCF7L2-L and RELB levels and predicts poor patient survival.
Conclusions:
- The noncoding RNA-derived microprotein TPM3P9 is oncogenic in ccRCC by modulating RNA splicing.
- TPM3P9, RBM4, TCF7L2-L, and RELB represent potential prognostic and therapeutic targets for renal cancer.
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