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SMAD4 Regulates Cell Motility through Transcription of N-Cadherin in Human Pancreatic Ductal Epithelium

Expression of the cellular adhesion protein N-cadherin is a critical event during epithelial-mesenchymal transition (EMT). The SMAD4 protein has been identified as a mediator of transforming growth factor-β (TGF-β) superfamily signaling, which regulates EMT, but the mechanisms linking TGF-β signalin...

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Autores principales: Kang, Ya'an, Ling, Jianhua, Suzuki, Rei, Roife, David, Chopin-Laly, Xavier, Truty, Mark J., Chatterjee, Deyali, Wang, Huamin, Thomas, Ryan M., Katz, Matthew H., Chiao, Paul J., Fleming, Jason B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4180072/
https://www.ncbi.nlm.nih.gov/pubmed/25264609
http://dx.doi.org/10.1371/journal.pone.0107948
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author Kang, Ya'an
Ling, Jianhua
Suzuki, Rei
Roife, David
Chopin-Laly, Xavier
Truty, Mark J.
Chatterjee, Deyali
Wang, Huamin
Thomas, Ryan M.
Katz, Matthew H.
Chiao, Paul J.
Fleming, Jason B.
author_facet Kang, Ya'an
Ling, Jianhua
Suzuki, Rei
Roife, David
Chopin-Laly, Xavier
Truty, Mark J.
Chatterjee, Deyali
Wang, Huamin
Thomas, Ryan M.
Katz, Matthew H.
Chiao, Paul J.
Fleming, Jason B.
author_sort Kang, Ya'an
collection PubMed
description Expression of the cellular adhesion protein N-cadherin is a critical event during epithelial-mesenchymal transition (EMT). The SMAD4 protein has been identified as a mediator of transforming growth factor-β (TGF-β) superfamily signaling, which regulates EMT, but the mechanisms linking TGF-β signaling to N-cadherin expression remain unclear. When the TGF-β pathway is activated, SMAD proteins, including the common mediator SMAD4, are subsequently translocated into the nucleus, where they influence gene transcription via SMAD binding elements (SBEs). Here we describe a mechanism for control of CDH2, the gene encoding N-cadherin, through the canonical TGFβ–SMAD4 pathway. We first identified four previously undescribed SBEs within the CDH2 promoter. Using telomerase immortalized human pancreatic ductal epithelium, we found that TGF-β stimulation prompted specific SMAD4 binding to all four SBEs. Luciferase reporter and SMAD4-knockdown experiments demonstrated that specific SMAD4 binding to the SBE located at −3790 bp to −3795 bp within the promoter region of CDH2 was necessary for TGF-β-stimulated transcription. Expression of N-cadherin on the surface of epithelial cells facilitates motility and invasion, and we demonstrated that knockdown of SMAD4 causes decreased N-cadherin expression, which results in diminished migration and invasion of human pancreatic ductal epithelial cells. Similar reduction of cell motility was produced after CDH2 knockdown. Together, these findings suggest that SMAD4 is critical for the TGF-β-driven upregulation of N-cadherin and the resultant invasive phenotype of human pancreatic ductal epithelial cells during EMT.
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spelling pubmed-41800722014-10-07 SMAD4 Regulates Cell Motility through Transcription of N-Cadherin in Human Pancreatic Ductal Epithelium Kang, Ya'an Ling, Jianhua Suzuki, Rei Roife, David Chopin-Laly, Xavier Truty, Mark J. Chatterjee, Deyali Wang, Huamin Thomas, Ryan M. Katz, Matthew H. Chiao, Paul J. Fleming, Jason B. PLoS One Research Article Expression of the cellular adhesion protein N-cadherin is a critical event during epithelial-mesenchymal transition (EMT). The SMAD4 protein has been identified as a mediator of transforming growth factor-β (TGF-β) superfamily signaling, which regulates EMT, but the mechanisms linking TGF-β signaling to N-cadherin expression remain unclear. When the TGF-β pathway is activated, SMAD proteins, including the common mediator SMAD4, are subsequently translocated into the nucleus, where they influence gene transcription via SMAD binding elements (SBEs). Here we describe a mechanism for control of CDH2, the gene encoding N-cadherin, through the canonical TGFβ–SMAD4 pathway. We first identified four previously undescribed SBEs within the CDH2 promoter. Using telomerase immortalized human pancreatic ductal epithelium, we found that TGF-β stimulation prompted specific SMAD4 binding to all four SBEs. Luciferase reporter and SMAD4-knockdown experiments demonstrated that specific SMAD4 binding to the SBE located at −3790 bp to −3795 bp within the promoter region of CDH2 was necessary for TGF-β-stimulated transcription. Expression of N-cadherin on the surface of epithelial cells facilitates motility and invasion, and we demonstrated that knockdown of SMAD4 causes decreased N-cadherin expression, which results in diminished migration and invasion of human pancreatic ductal epithelial cells. Similar reduction of cell motility was produced after CDH2 knockdown. Together, these findings suggest that SMAD4 is critical for the TGF-β-driven upregulation of N-cadherin and the resultant invasive phenotype of human pancreatic ductal epithelial cells during EMT. Public Library of Science 2014-09-29 /pmc/articles/PMC4180072/ /pubmed/25264609 http://dx.doi.org/10.1371/journal.pone.0107948 Text en © 2014 Kang et al http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Kang, Ya'an
Ling, Jianhua
Suzuki, Rei
Roife, David
Chopin-Laly, Xavier
Truty, Mark J.
Chatterjee, Deyali
Wang, Huamin
Thomas, Ryan M.
Katz, Matthew H.
Chiao, Paul J.
Fleming, Jason B.
SMAD4 Regulates Cell Motility through Transcription of N-Cadherin in Human Pancreatic Ductal Epithelium
title SMAD4 Regulates Cell Motility through Transcription of N-Cadherin in Human Pancreatic Ductal Epithelium
title_full SMAD4 Regulates Cell Motility through Transcription of N-Cadherin in Human Pancreatic Ductal Epithelium
title_fullStr SMAD4 Regulates Cell Motility through Transcription of N-Cadherin in Human Pancreatic Ductal Epithelium
title_full_unstemmed SMAD4 Regulates Cell Motility through Transcription of N-Cadherin in Human Pancreatic Ductal Epithelium
title_short SMAD4 Regulates Cell Motility through Transcription of N-Cadherin in Human Pancreatic Ductal Epithelium
title_sort smad4 regulates cell motility through transcription of n-cadherin in human pancreatic ductal epithelium
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4180072/
https://www.ncbi.nlm.nih.gov/pubmed/25264609
http://dx.doi.org/10.1371/journal.pone.0107948
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