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Updated: Aug 12, 2026

Induction and Analysis of Epithelial to Mesenchymal Transition
Published on: August 27, 2013
The thyroid hormone receptor is a suppressor of ras-mediated transcription, proliferation, and transformation
Susana García-Silva1, Ana Aranda
1Instituto de Investigaciones Biomédicas, CSIC-UAM, Arturo Duperier 4, 28029 Madrid, Spain.
Abstract:
The thyroid hormone triiodothyronine (T3) has a profound effect on growth, differentiation, and metabolism in higher organisms. Here we demonstrate that T3 inhibits ras-induced proliferation in neuroblastoma cells and blocks induction of cyclin D1 expression by the oncogene. The hormone, at physiological concentrations, strongly antagonizes the transcriptional response mediated by the Ras/mitogen-activated protein kinase/ribosomal-S6 subunit kinase (Rsk) signaling pathway in cells expressing thyroid hormone receptors (TRs). T3 blocks the response to the oncogenic forms of the three ras isoforms (H-, K-, and N-ras) and both TRalpha and TRbeta can mediate this action. The main target for induction of cyclin D1 transcription by oncogenic ras in neuroblastoma cells is a cyclic AMP response element (CRE) located in proximal promoter sequences, and T3 represses the transcriptional activity of b-Zip transcription factors such as CREB (CRE-binding protein) or ATF-2 (activation transcription factor 2) that are direct targets of Rsk2 and bind to this sequence. The hormone also blocks fibroblast transformation by oncogenic ras when TR is expressed. Furthermore, TRs act as suppressors of tumor formation by the oncogene in vivo in nude mice. The TRbeta isoform has stronger antitransforming properties than the alpha isoform and can inhibit tumorigenesis even in hypothyroid mice. These results show the existence of a previously unrecognized transcriptional cross talk between the TRs and the ras oncogene which influences relevant processes such as cell proliferation, transformation, or tumorigenesis.
Insights
Thyroid hormone (T3) inhibits ras oncogene-driven cancer growth by blocking key signaling pathways. This hormone acts as a tumor suppressor, impacting cell proliferation and transformation.
Area of Science:
- Endocrinology
- Molecular Biology
- Oncology
Background:
- Thyroid hormone (T3) is crucial for growth, differentiation, and metabolism.
- Ras oncogenes drive cell proliferation and transformation, contributing to cancer.
- The interplay between T3 and ras signaling in cancer is not well understood.
Purpose of the Study:
- To investigate the effect of T3 on ras-induced proliferation and transformation in neuroblastoma cells.
- To elucidate the molecular mechanisms underlying T3's action on ras signaling.
- To evaluate the in vivo role of thyroid hormone receptors (TRs) in suppressing ras-driven tumorigenesis.
Main Methods:
- Assessed T3's impact on ras-induced cell proliferation and cyclin D1 expression in neuroblastoma cells.
- Analyzed the transcriptional regulation of cyclin D1 promoter activity by T3 and ras.
- Investigated fibroblast transformation and in vivo tumor formation in nude mice expressing TRs.
Main Results:
- T3 significantly inhibits ras-induced proliferation and cyclin D1 expression in neuroblastoma cells.
- T3 antagonizes the Ras/MAPK/Rsk signaling pathway, repressing transcription factors like CREB and ATF-2.
- TRs suppress ras-mediated fibroblast transformation and tumorigenesis in vivo, with TRbeta showing stronger activity.
Conclusions:
- A novel cross-talk exists between thyroid hormone receptors and the ras oncogene.
- T3 acts as a tumor suppressor by inhibiting ras-driven cell proliferation, transformation, and tumorigenesis.
- TRs, particularly TRbeta, hold therapeutic potential for targeting ras-driven cancers.
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