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Updated: May 16, 2026

In Vivo Inhibition of MicroRNA to Decrease Tumor Growth in Mice
Published on: August 23, 2019
Reactivation of the silenced thyroid hormone receptor β gene expression delays thyroid tumor progression
Won Gu Kim1, Xuguang Zhu, Dong Wook Kim
1Laboratory of Molecular Biology, National Cancer Institute, 37 Convent Drive, Room 5128, Bethesda, MD 20892-4264, USA.
Abstract:
That a knock-in mouse harboring a dominant-negative thyroid hormone receptor (TR)-β (Thrb) mutation develops metastatic thyroid cancer strongly suggests the involvement of TRβ in carcinogenesis. Epigenetic silencing of the THRB gene is common in human cancers. The aim of the present study was to determine how DNA methylation affected the expression of the THRB gene in differentiated thyroid cancer (DTC) and how reexpression of the THRB gene attenuated the cancer phenotypes. We used methylation-specific PCR to examine the expression and promoter methylation of the THRB gene in DTC tissues. Thyroid cancer cells with hypermethylated THRB were treated with the demethylating agents 5'-aza-2'-deoxycytidine (5'-aza-CdR) and zebularine to evaluate their impact on the cancer cell phenotypes. THRB mRNA expression in DTC was 90% lower than in normal controls, and this decrease was associated with a higher tumor/lymph node staging. The promoter methylation level of the THRB gene had a significant negative correlation with the expression level of the THRB gene. Treatment of FTC-236 cells with 5'-aza-CdR or zebularine induced reexpression of the THRB gene and inhibited cell proliferation and migration. FTC-236 cells stably expressing TRβ exhibited lower cell proliferation and migration through inhibition of β-catenin signaling pathways compared with FTC-236 without TRβ. 5'-Aza-CdR also led to suppression of tumor growth in an in vivo xenograft model using FTC-236 cells consistent with the cell-based studies. These finding indicate that TRβ is a tumor suppressor and could be tested as a potential therapeutic target.
Insights
Thyroid hormone receptor beta (TRβ) gene silencing via DNA methylation is linked to differentiated thyroid cancer progression. Reactivating TRβ expression suppressed cancer cell growth and migration, indicating its potential as a therapeutic target.
Area of Science:
- Endocrinology
- Molecular Biology
- Oncology
Background:
- Thyroid hormone receptor beta (TRβ) plays a role in thyroid cancer development.
- Epigenetic silencing of the THRB gene is observed in various human cancers.
Purpose of the Study:
- To investigate the impact of DNA methylation on THRB gene expression in differentiated thyroid cancer (DTC).
- To assess the potential of THRB gene reexpression in attenuating cancer phenotypes.
Main Methods:
- Methylation-specific PCR was used to analyze THRB expression and promoter methylation in DTC tissues.
- Demethylating agents (5'-aza-CdR, zebularine) were used to reexpress THRB in thyroid cancer cells.
- In vitro and in vivo models were employed to evaluate the effects of THRB reexpression on cancer cell behavior and tumor growth.
Main Results:
- THRB mRNA expression was significantly reduced (90%) in DTC compared to normal tissues, correlating with advanced tumor staging.
- THRB promoter hypermethylation negatively correlated with THRB gene expression.
- Reexpression of THRB via demethylating agents inhibited cell proliferation and migration, and suppressed tumor growth in vivo.
- TRβ reexpression inhibited cancer cell proliferation and migration by downregulating β-catenin signaling.
Conclusions:
- TRβ functions as a tumor suppressor in differentiated thyroid cancer.
- Targeting THRB reexpression presents a potential therapeutic strategy for thyroid cancer treatment.
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