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The RCAN1.4 Metastasis Suppressor Is Hypermethylated at Intron 1 in Thyroid Cancer
Tilak Khanal1, Neel Rajan1, Wei Li1
1Division of Endocrinology, Diabetes, and Metabolism, Departments of Internal Medicine and Molecular Medicine and Therapeutics, The Ohio State University College of Medicine and Comprehensive Cancer Center, Columbus, Ohio, USA.
Abstract:
Regulator of calcineurin 1.4 (RCAN1.4) is a functionally downregulated metastasis progression suppressor (MPS) in thyroid cancer; however, the mechanisms for RCAN1.4 loss in thyroid cancer have not yet been reported. The RCAN1.4 promoter and gene contain several cytosine-guanine (CG)-rich regions, some of which are reported to be hypermethylated in nonthyroid tissues. We, therefore, hypothesized that RCAN1.4 downregulation in thyroid cancer was in part due to hypermethylation. Studies were performed in 5 thyroid cancer cell lines (TPC1, FTC133, BCPAP, C643, and 8505C) with different genetic drivers, and in 18 paired normal and thyroid cancer human thyroid cancer tissues. Basal RCAN1.4 messenger RNA (mRNA) and protein levels were assessed in all of the cell lines. Cell lines with lowest RCAN1.4 expression levels were treated with the DNA methyl transferase inhibitor, decitabine. Normal/tumor tissue pairs were analyzed for methylation of three CG-rich regions both by capture of methylated DNA by MBD2 protein and by methylation-specific polymerase chain reaction (MSPCR). In all assessed cell lines, RCAN1.4 mRNA and protein levels increased after decitabine treatment. In silico analysis of the RCAN1.4 gene identified 3 CG-rich regions as possible methylation targets: 1 in the proximal promoter and 2 in intron 1. Hypermethylation of the intron 1 CG-rich regions was identified by both the capture method and MSPCR. In contrast, hypermethylation of the CG-rich region of the proximal promoter was not identified. Gene expression confirmed that hypermethylation in thyroid cancer samples in intron 1 of RCAN1.4 was associated with lower levels of RCAN1.4 mRNA. Finally, the cancer samples demonstrated increased NFE2L3 expression, a downstream marker of functional RCAN1.4 loss. The MPS gene, RCAN1.4, is downregulated in thyroid cancer cells and human thyroid cancer in part by hypermethylation of CG-rich regions in intron 1.
Insights
Regulator of calcineurin 1.4 (RCAN1.4), a thyroid cancer suppressor, is downregulated due to hypermethylation in its intron 1 CG-rich regions. This epigenetic silencing leads to reduced RCAN1.4 expression and increased metastasis progression marker NFE2L3 in thyroid tumors.
Area of Science:
- Molecular Biology
- Cancer Genetics
- Epigenetics
Background:
- Regulator of calcineurin 1.4 (RCAN1.4) acts as a metastasis progression suppressor (MPS) in thyroid cancer.
- The mechanisms driving RCAN1.4 loss in thyroid cancer remain largely unelucidated.
- The RCAN1.4 gene contains CG-rich regions susceptible to methylation, similar to other tissues.
Purpose of the Study:
- To investigate the role of DNA methylation in the downregulation of RCAN1.4 in thyroid cancer.
- To identify specific regions within the RCAN1.4 gene that are hypermethylated in thyroid tumors.
- To correlate RCAN1.4 methylation status with its expression levels and downstream markers of metastasis.
Main Methods:
- Assessed RCAN1.4 mRNA and protein levels in five thyroid cancer cell lines and 18 paired normal/tumor tissues.
- Treated cell lines with decitabine, a DNA methyltransferase inhibitor.
- Analyzed methylation status of CG-rich regions in the RCAN1.4 gene using MBD2 capture and methylation-specific PCR (MSPCR).
Main Results:
- Decitabine treatment increased RCAN1.4 mRNA and protein levels in all tested cell lines.
- Hypermethylation was identified in two CG-rich regions within intron 1 of RCAN1.4, but not in the proximal promoter.
- Intron 1 hypermethylation in thyroid cancer tissues correlated with decreased RCAN1.4 mRNA levels and increased NFE2L3 expression.
Conclusions:
- RCAN1.4 downregulation in thyroid cancer is partly mediated by hypermethylation of CG-rich regions in intron 1.
- Epigenetic silencing of RCAN1.4 contributes to thyroid cancer progression.
- Targeting RCAN1.4 methylation may offer a therapeutic strategy for thyroid cancer.
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