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Deciphering the molecular basis of invasiveness in Sdhb-deficient cells

Metastatic pheochromocytomas and paragangliomas (PPGL) are malignant neuroendocrine tumors frequently associated with germline mutations in the SDHB gene. SDHB-mutated PPGL display a hypermethylator phenotype associated with hallmarks of epithelial-to-mesenchymal transition (EMT). In the present stu...

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Autores principales: Loriot, Céline, Domingues, Mélanie, Berger, Adeline, Menara, Mélanie, Ruel, Maëva, Morin, Aurélie, Castro-Vega, Luis-Jaime, Letouzé, Éric, Martinelli, Cosimo, Bemelmans, Alexis-Pierre, Larue, Lionel, Gimenez-Roqueplo, Anne-Paule, Favier, Judith
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4741742/
https://www.ncbi.nlm.nih.gov/pubmed/26460615
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author Loriot, Céline
Domingues, Mélanie
Berger, Adeline
Menara, Mélanie
Ruel, Maëva
Morin, Aurélie
Castro-Vega, Luis-Jaime
Letouzé, Éric
Martinelli, Cosimo
Bemelmans, Alexis-Pierre
Larue, Lionel
Gimenez-Roqueplo, Anne-Paule
Favier, Judith
author_facet Loriot, Céline
Domingues, Mélanie
Berger, Adeline
Menara, Mélanie
Ruel, Maëva
Morin, Aurélie
Castro-Vega, Luis-Jaime
Letouzé, Éric
Martinelli, Cosimo
Bemelmans, Alexis-Pierre
Larue, Lionel
Gimenez-Roqueplo, Anne-Paule
Favier, Judith
author_sort Loriot, Céline
collection PubMed
description Metastatic pheochromocytomas and paragangliomas (PPGL) are malignant neuroendocrine tumors frequently associated with germline mutations in the SDHB gene. SDHB-mutated PPGL display a hypermethylator phenotype associated with hallmarks of epithelial-to-mesenchymal transition (EMT). In the present study, we report the characterization of a unique model of Sdhb knockout in mouse chromaffin cells. Sdhb deficient cells exhibit a metastatic phenotype as highlighted by increased individual cell migration (characterized by faster motility and increased persistence) as well as high invasive and adhesion abilities. This phenotype is associated with the modulation of Twist1, Twist2, Tcf3, Snai1, N-cadherin or Krt19 expression, reflecting an EMT-like reprogramming of cells. Krt19 is epigenetically silenced in Sdhb-deficient cells and re-expressed after treatment by the demethylating agent decitabine. Krt19 rescue by lentiviral transduction in Sdhb-deficient cells and Krt19 inhibition by RNA interference in wild-type cells were performed. Both studies revealed the involvement of KRT19 in the invasive phenotype by modulating collective and individual migration and cell/extra-cellular matrix adhesion properties. These findings underline the role of hypermethylation and EMT in the in vitro acquisition of metastatic properties, following SDHB loss of function.
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spelling pubmed-47417422016-03-11 Deciphering the molecular basis of invasiveness in Sdhb-deficient cells Loriot, Céline Domingues, Mélanie Berger, Adeline Menara, Mélanie Ruel, Maëva Morin, Aurélie Castro-Vega, Luis-Jaime Letouzé, Éric Martinelli, Cosimo Bemelmans, Alexis-Pierre Larue, Lionel Gimenez-Roqueplo, Anne-Paule Favier, Judith Oncotarget Research Paper Metastatic pheochromocytomas and paragangliomas (PPGL) are malignant neuroendocrine tumors frequently associated with germline mutations in the SDHB gene. SDHB-mutated PPGL display a hypermethylator phenotype associated with hallmarks of epithelial-to-mesenchymal transition (EMT). In the present study, we report the characterization of a unique model of Sdhb knockout in mouse chromaffin cells. Sdhb deficient cells exhibit a metastatic phenotype as highlighted by increased individual cell migration (characterized by faster motility and increased persistence) as well as high invasive and adhesion abilities. This phenotype is associated with the modulation of Twist1, Twist2, Tcf3, Snai1, N-cadherin or Krt19 expression, reflecting an EMT-like reprogramming of cells. Krt19 is epigenetically silenced in Sdhb-deficient cells and re-expressed after treatment by the demethylating agent decitabine. Krt19 rescue by lentiviral transduction in Sdhb-deficient cells and Krt19 inhibition by RNA interference in wild-type cells were performed. Both studies revealed the involvement of KRT19 in the invasive phenotype by modulating collective and individual migration and cell/extra-cellular matrix adhesion properties. These findings underline the role of hypermethylation and EMT in the in vitro acquisition of metastatic properties, following SDHB loss of function. Impact Journals LLC 2015-10-08 /pmc/articles/PMC4741742/ /pubmed/26460615 Text en Copyright: © 2015 Loriot et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Loriot, Céline
Domingues, Mélanie
Berger, Adeline
Menara, Mélanie
Ruel, Maëva
Morin, Aurélie
Castro-Vega, Luis-Jaime
Letouzé, Éric
Martinelli, Cosimo
Bemelmans, Alexis-Pierre
Larue, Lionel
Gimenez-Roqueplo, Anne-Paule
Favier, Judith
Deciphering the molecular basis of invasiveness in Sdhb-deficient cells
title Deciphering the molecular basis of invasiveness in Sdhb-deficient cells
title_full Deciphering the molecular basis of invasiveness in Sdhb-deficient cells
title_fullStr Deciphering the molecular basis of invasiveness in Sdhb-deficient cells
title_full_unstemmed Deciphering the molecular basis of invasiveness in Sdhb-deficient cells
title_short Deciphering the molecular basis of invasiveness in Sdhb-deficient cells
title_sort deciphering the molecular basis of invasiveness in sdhb-deficient cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4741742/
https://www.ncbi.nlm.nih.gov/pubmed/26460615
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