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TCF21 hypermethylation regulates renal tumor cell clonogenic proliferation and migration

We recently identified hypermethylation at the gene promoter of transcription factor 21 (TCF21) in clear cell sarcoma of the kidney (CCSK), a rare pediatric renal tumor. TCF21 is a transcription factor involved in tubular epithelial development of the kidney and is a candidate tumor suppressor. As t...

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Autores principales: Gooskens, Saskia L., Klasson, Timothy D., Gremmels, Hendrik, Logister, Ive, Pieters, Robert, Perlman, Elizabeth J., Giles, Rachel H., van den Heuvel‐Eibrink, Mary M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5792742/
https://www.ncbi.nlm.nih.gov/pubmed/29080283
http://dx.doi.org/10.1002/1878-0261.12149
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author Gooskens, Saskia L.
Klasson, Timothy D.
Gremmels, Hendrik
Logister, Ive
Pieters, Robert
Perlman, Elizabeth J.
Giles, Rachel H.
van den Heuvel‐Eibrink, Mary M.
author_facet Gooskens, Saskia L.
Klasson, Timothy D.
Gremmels, Hendrik
Logister, Ive
Pieters, Robert
Perlman, Elizabeth J.
Giles, Rachel H.
van den Heuvel‐Eibrink, Mary M.
author_sort Gooskens, Saskia L.
collection PubMed
description We recently identified hypermethylation at the gene promoter of transcription factor 21 (TCF21) in clear cell sarcoma of the kidney (CCSK), a rare pediatric renal tumor. TCF21 is a transcription factor involved in tubular epithelial development of the kidney and is a candidate tumor suppressor. As there are no in vitro models of CCSK, we employed a well‐established clear cell renal cell carcinoma (ccRCC) cell line, 786‐O, which also manifests high methylation at the TCF21 promoter, with consequent low TCF21 expression. The tumor suppressor function of TCF21 has not been functionally addressed in ccRCC cells; we aimed to explore the functional potential of TCF21 expression in ccRCC cells in vitro. 786‐O clones stably transfected with either pBABE‐TCF21‐HA construct or pBABE vector alone were functionally analyzed. We found that ectopic expression of TCF21 in 786‐O cells results in a trend toward decreased cell proliferation (not significant) and significantly decreased migration compared with mock‐transfected 786‐O cells. Although the number of colonies established in colony formation assays was not different between 786‐O clones, colony size was significantly reduced in 786‐O cells expressing TCF21. To investigate whether the changes in migration were due to epithelial‐to‐mesenchymal transition changes, we interrogated the expression of selected epithelial and mesenchymal markers. Although we observed upregulation of mRNA and protein levels of epithelial marker E‐cadherin in clones overexpressing TCF21, this did not result in surface expression of E‐cadherin as measured by fluorescence‐activated cell sorting and immunofluorescence. Furthermore, mRNA expression of the mesenchymal markers vimentin (VIM) and SNAI1 was not significantly decreased in TCF21‐expressing 786‐O cells, while protein levels of VIM were markedly decreased. We conclude that re‐expression of TCF21 in renal cancer cells that have silenced their endogenous TCF21 locus through hypermethylation results in reduced clonogenic proliferation, reduced migration, and reduced mesenchymal‐like characteristics, suggesting a tumor suppressor function for transcription factor 21.
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spelling pubmed-57927422018-02-05 TCF21 hypermethylation regulates renal tumor cell clonogenic proliferation and migration Gooskens, Saskia L. Klasson, Timothy D. Gremmels, Hendrik Logister, Ive Pieters, Robert Perlman, Elizabeth J. Giles, Rachel H. van den Heuvel‐Eibrink, Mary M. Mol Oncol Research Articles We recently identified hypermethylation at the gene promoter of transcription factor 21 (TCF21) in clear cell sarcoma of the kidney (CCSK), a rare pediatric renal tumor. TCF21 is a transcription factor involved in tubular epithelial development of the kidney and is a candidate tumor suppressor. As there are no in vitro models of CCSK, we employed a well‐established clear cell renal cell carcinoma (ccRCC) cell line, 786‐O, which also manifests high methylation at the TCF21 promoter, with consequent low TCF21 expression. The tumor suppressor function of TCF21 has not been functionally addressed in ccRCC cells; we aimed to explore the functional potential of TCF21 expression in ccRCC cells in vitro. 786‐O clones stably transfected with either pBABE‐TCF21‐HA construct or pBABE vector alone were functionally analyzed. We found that ectopic expression of TCF21 in 786‐O cells results in a trend toward decreased cell proliferation (not significant) and significantly decreased migration compared with mock‐transfected 786‐O cells. Although the number of colonies established in colony formation assays was not different between 786‐O clones, colony size was significantly reduced in 786‐O cells expressing TCF21. To investigate whether the changes in migration were due to epithelial‐to‐mesenchymal transition changes, we interrogated the expression of selected epithelial and mesenchymal markers. Although we observed upregulation of mRNA and protein levels of epithelial marker E‐cadherin in clones overexpressing TCF21, this did not result in surface expression of E‐cadherin as measured by fluorescence‐activated cell sorting and immunofluorescence. Furthermore, mRNA expression of the mesenchymal markers vimentin (VIM) and SNAI1 was not significantly decreased in TCF21‐expressing 786‐O cells, while protein levels of VIM were markedly decreased. We conclude that re‐expression of TCF21 in renal cancer cells that have silenced their endogenous TCF21 locus through hypermethylation results in reduced clonogenic proliferation, reduced migration, and reduced mesenchymal‐like characteristics, suggesting a tumor suppressor function for transcription factor 21. John Wiley and Sons Inc. 2017-12-14 2018-02 /pmc/articles/PMC5792742/ /pubmed/29080283 http://dx.doi.org/10.1002/1878-0261.12149 Text en © 2017 The Authors. Published by FEBS Press and John Wiley & Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Gooskens, Saskia L.
Klasson, Timothy D.
Gremmels, Hendrik
Logister, Ive
Pieters, Robert
Perlman, Elizabeth J.
Giles, Rachel H.
van den Heuvel‐Eibrink, Mary M.
TCF21 hypermethylation regulates renal tumor cell clonogenic proliferation and migration
title TCF21 hypermethylation regulates renal tumor cell clonogenic proliferation and migration
title_full TCF21 hypermethylation regulates renal tumor cell clonogenic proliferation and migration
title_fullStr TCF21 hypermethylation regulates renal tumor cell clonogenic proliferation and migration
title_full_unstemmed TCF21 hypermethylation regulates renal tumor cell clonogenic proliferation and migration
title_short TCF21 hypermethylation regulates renal tumor cell clonogenic proliferation and migration
title_sort tcf21 hypermethylation regulates renal tumor cell clonogenic proliferation and migration
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5792742/
https://www.ncbi.nlm.nih.gov/pubmed/29080283
http://dx.doi.org/10.1002/1878-0261.12149
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