Literature DB >> 19506552

Epigenetic silencing of TTF-1/NKX2-1 through DNA hypermethylation and histone H3 modulation in thyroid carcinomas.

Tetsuo Kondo1, Tadao Nakazawa, Defu Ma, Dongfeng Niu, Kunio Mochizuki, Tomonori Kawasaki, Nobuki Nakamura, Tetsu Yamane, Makio Kobayashi, Ryohei Katoh.   

Abstract

Thyroid transcription factor-1 (TTF-1), also known as NKX2-1, is a homeodomain containing transcriptional factor identified in thyroid, lung and central nervous system. In the thyroid, TTF-1 is essential for thyroid organogenesis and governs thyroid functions by regulating various thyroid-specific genes. We previously demonstrated that most differentiated thyroid neoplasms, including follicular adenomas/carcinomas and papillary carcinomas, express TTF-1 at both protein and mRNA levels. However, certain subtypes of thyroid cancers have shown low or negative expression of TTF-1. The aim of our study was to investigate the function of epigenetic modification in dysregulation of TTF-1 in thyroid carcinoma cells. We evaluated the expression of TTF-1 in primary thyroid tissues (normal thyroid, papillary carcinoma and undifferentiated carcinoma) and in thyroid carcinoma cell lines using immunohistochemistry and RT-PCR. Methylation-specific PCR targeting CpG islands of TTF-1 and chromatin immunoprecipitation (ChIP) for histone H3 lysine 9 (H3-lys9) were applied to clarify the correlation of the TTF-1 expression profile and epigenetic status. We also explored whether epigenetic modifiers, including 5-aza-deoxycytidine, could restore TTF-1 expression in thyroid carcinoma cells. In our current study, immunohistochemistry and RT-PCR showed positive expression of TTF-1 in normal thyroids and papillary carcinomas. Meanwhile, most of the undifferentiated carcinomas and the cell lines lost TTF-1 expression. No methylation in the CpG of TTF-1 promoter was detected in normal thyroids or papillary carcinomas. In contrast, DNA methylation was identified in 60% of the undifferentiated carcinomas (6/10) and 50% of the cell lines (4/8). ChIP assay demonstrated that acetylation of H3-lys9 was positively correlated with TTF-1 expression in thyroid carcinoma cells. Finally, DNA demethylating agents could restore TTF-1 gene expression in the thyroid carcinoma cell lines. Our data suggest that epigenetics is involved with inactivation of TTF-1 in thyroid carcinomas, and provide a possible means of using TTF-1 as a target for differentiation-inducing therapy through epigenetic modification.

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Year:  2009        PMID: 19506552     DOI: 10.1038/labinvest.2009.50

Source DB:  PubMed          Journal:  Lab Invest        ISSN: 0023-6837            Impact factor:   5.662


  28 in total

1.  Molecular alterations of coexisting thyroid papillary carcinoma and anaplastic carcinoma: identification of TERT mutation as an independent risk factor for transformation.

Authors:  Naoki Oishi; Tetsuo Kondo; Aya Ebina; Yukiko Sato; Junko Akaishi; Rumi Hino; Noriko Yamamoto; Kunio Mochizuki; Tadao Nakazawa; Hiroshi Yokomichi; Koichi Ito; Yuichi Ishikawa; Ryohei Katoh
Journal:  Mod Pathol       Date:  2017-07-21       Impact factor: 7.842

2.  A genome-wide screen identifies frequently methylated genes in haematological and epithelial cancers.

Authors:  Thomas Dunwell; Luke Hesson; Tibor A Rauch; Lihui Wang; Richard E Clark; Ashraf Dallol; Dean Gentle; Daniel Catchpoole; Eamonn R Maher; Gerd P Pfeifer; Farida Latif
Journal:  Mol Cancer       Date:  2010-02-25       Impact factor: 27.401

Review 3.  Altered Epigenetic Mechanisms in Thyroid Cancer Subtypes.

Authors:  Maryam Zarkesh; Azita Zadeh-Vakili; Fereidoun Azizi; Forough Foroughi; Maziar Mohammad Akhavan; Mehdi Hedayati
Journal:  Mol Diagn Ther       Date:  2018-02       Impact factor: 4.074

4.  Gene expression of thyroid-specific transcription factors may help diagnose thyroid lesions but are not determinants of tumor progression.

Authors:  F A Batista; L S Ward; M A Marcello; M B Martins; K C Peres; C Torricelli; N E Bufalo; F A Soares; M J da Silva; L V M Assumpção
Journal:  J Endocrinol Invest       Date:  2015-09-14       Impact factor: 4.256

5.  Epigenetic modifications in human thyroid cancer.

Authors:  Bita Faam; Mohammad Ali Ghaffari; Ata Ghadiri; Fereidoun Azizi
Journal:  Biomed Rep       Date:  2014-11-03

Review 6.  Genetics and epigenetics of sporadic thyroid cancer.

Authors:  Dang Vu-Phan; Ronald J Koenig
Journal:  Mol Cell Endocrinol       Date:  2013-08-08       Impact factor: 4.102

7.  Reactivation of the silenced thyroid hormone receptor β gene expression delays thyroid tumor progression.

Authors:  Won Gu Kim; Xuguang Zhu; Dong Wook Kim; Lisa Zhang; Electron Kebebew; Sheue-Yann Cheng
Journal:  Endocrinology       Date:  2012-11-26       Impact factor: 4.736

Review 8.  Molecular mechanisms of radioactive iodine refractoriness in differentiated thyroid cancer: Impaired sodium iodide symporter (NIS) expression owing to altered signaling pathway activity and intracellular localization of NIS.

Authors:  Ji Min Oh; Byeong-Cheol Ahn
Journal:  Theranostics       Date:  2021-04-15       Impact factor: 11.556

9.  Transcriptional activity of the 5'-flanking region of the thyroid transcription factor-1 gene in human thyroid cell lines.

Authors:  Hiroya Yamada; Toru Takano; Fumio Matsuzuka; Mikio Watanabe; Akira Miyauchi; Yoshinori Iwatani
Journal:  Genet Mol Biol       Date:  2011-03-01       Impact factor: 1.771

10.  New molecular targeted therapy and redifferentiation therapy for radioiodine-refractory advanced papillary thyroid carcinoma: literature review.

Authors:  Kai-Pun Wong; Brian Hung-Hin Lang
Journal:  J Thyroid Res       Date:  2012-12-24
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