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Troponin-I enhances and is required for oncogenic overgrowth
Sergio Casas-Tintó1, Antonio Maraver2,3, Manuel Serrano2
1Instituto Cajal, C.S.I.C., Madrid, Spain.
Abstract:
Human tumors of various tissue origins show an intriguing over-expression of genes not considered oncogenes, such as that encoding Troponin-I (TnI), a well-known muscle protein. Out of the three TnI genes known in humans, the slow form, TNNI1, is affected the most. Drosophila has only one TnI gene, wupA. Here, we studied excess- and loss-of function of wupA in Drosophila, and assayed TNNI1 down regulation in human tumors growing in mice. Drosophila TnI excess-of-function increases proliferation and potentiates oncogenic mutations in Ras, Notch and Lgl genes. By contrast, TnI loss-of-function reduces proliferation and antagonizes the overgrowth due to these oncogenic mutations. Troponin-I defective cells undergo Flower- and Sparc-dependent cell competition. TnI can localize to the nucleus and its excess elicits transcriptional up-regulation of InR, Rap1 and Dilp8, which is consistent with the increased cell proliferation. Human tumor cell lines treated with a human Troponin-I peptide arrest in G0/G1. In addition, proliferation of non-small-cell lung carcinoma xenografts in mice is restrained by TNNI1 down-regulation. Thus, Troponin-I reveals a novel function in cell proliferation that may be of therapeutic interest in certain types of cancer.
Insights
Troponin-I (TnI), a muscle protein, is overexpressed in human tumors and drives cancer cell proliferation. Down-regulating TnI in human tumors and in Drosophila models inhibits cancer growth, suggesting TnI as a potential therapeutic target.
Area of Science:
- Molecular Biology
- Oncology
- Genetics
Background:
- Human tumors often overexpress non-oncogenic genes, including Troponin-I (TnI), particularly the TNNI1 gene.
- Troponin-I is a muscle protein, and its role in cancer proliferation was previously unexplored.
Purpose of the Study:
- To investigate the function of Troponin-I (TnI) in cell proliferation and cancer.
- To explore the therapeutic potential of targeting TnI in cancer treatment.
Main Methods:
- Studied excess and loss-of-function of the Drosophila TnI gene (wupA).
- Assayed TNNI1 down-regulation in human tumors xenografted in mice.
- Treated human tumor cell lines with a human Troponin-I peptide.
Main Results:
- Drosophila TnI excess-of-function increased proliferation and potentiated oncogenic mutations.
- Drosophila TnI loss-of-function reduced proliferation and antagonized oncogenic mutations.
- Human tumor cell lines treated with TnI peptide arrested in G0/G1, and TNNI1 down-regulation restrained non-small-cell lung carcinoma xenograft growth.
Conclusions:
- Troponin-I plays a novel role in regulating cell proliferation.
- TnI's function in proliferation suggests it may be a viable therapeutic target for certain cancers.
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