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Published on: August 23, 2019
Thyroid hormone receptor α1: a novel regulator of thyroid cancer cell differentiation
Eunmi Hwang1, Woo Kyung Lee Doolittle1,2, Yuelin Jack Zhu3
1Laboratory of Molecular Biology, National Cancer Institute, National Institutes of Health, Bethesda, MD, 20892, USA.
Abstract:
Thyroid hormone receptor α1 (TRα1) mediates the genomic actions of thyroid hormone (T3). The biology of TRα1 in growth and development has been well studied, but the functional role of TRα1 in cancers remains to be elucidated. Analysis of the human thyroid cancer database of The Cancer Genome Atlas (TCGA) showed that THRA gene expression is lost in highly dedifferentiated anaplastic thyroid cancer (ATC). We, therefore, explored the effects of TRα1 on the progression of ATC. We stably expressed TRα1 in two human ATC cell lines, THJ-11T (11T-TRα1 #2, #7, and #8) and THJ-16T (16T-TRα1 #3, #4, and #8) cells. We found that the expressed TRα1 inhibited ATC cell proliferation and induced apoptosis. TCGA data showed that THRA gene expression was best correlated with the paired box gene 8 (PAX8). Consistently, we found that the PAX8 expression was barely detectable in parental 11T and 16T cells. However, PAX8 gene expression was elevated in 11T- and 16T-TRα1-expressing cells at the mRNA and protein levels. Using various molecular analyses, we found that TRα1 directly regulated the expression of the PAX8 gene. Single-cell transcriptomic analyses (scRNA-seq) demonstrated that TRα1 functions as a transcription factor through multiple signaling pathways to suppress tumor growth. Importantly, scRNA-seq analysis showed that TRα1-induced PAX8, via its transcription program, shifts the cell landscape of ATC toward a differentiated state. The present studies suggest that TRα1 is a newly identified regulator of thyroid differentiation and could be considered as a potential therapeutic target to improve the outcome of ATC patients.
Insights
Thyroid hormone receptor alpha1 (TRα1) inhibits anaplastic thyroid cancer (ATC) progression by inducing apoptosis and restoring cell differentiation. TRα1 re-expression may offer a new therapeutic strategy for ATC patients.
Area of Science:
- Molecular Biology
- Genetics
- Oncology
Background:
- Thyroid hormone receptor alpha1 (TRα1) is crucial for thyroid hormone action but its role in cancer, particularly anaplastic thyroid cancer (ATC), is unclear.
- Analysis of The Cancer Genome Atlas (TCGA) data revealed a loss of THRA gene expression in dedifferentiated ATC.
Purpose of the Study:
- To investigate the functional role of TRα1 in the progression of anaplastic thyroid cancer.
- To determine if TRα1 can suppress tumor growth and induce differentiation in ATC cells.
Main Methods:
- Stable expression of TRα1 in human ATC cell lines (THJ-11T and THJ-16T).
- Analysis of cell proliferation, apoptosis, and gene expression (PAX8) at mRNA and protein levels.
- TCGA database analysis and single-cell transcriptomic sequencing (scRNA-seq).
Main Results:
- TRα1 expression inhibited ATC cell proliferation and induced apoptosis.
- TRα1 expression upregulated paired box gene 8 (PAX8) expression, which was deficient in parental cells.
- TRα1 directly regulated PAX8, and scRNA-seq indicated TRα1 acts as a transcription factor suppressing tumor growth.
- TRα1-induced PAX8 shifted ATC cells towards a differentiated state.
Conclusions:
- TRα1 acts as a tumor suppressor in ATC by inhibiting proliferation and promoting differentiation.
- TRα1 is a novel regulator of thyroid differentiation and a potential therapeutic target for improving outcomes in ATC patients.
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