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EGF-Dependent Activation of ELK1 Contributes to the Induction of CLDND1 Expression Involved in Tight Junction Formation

Claudin proteins are intercellular adhesion molecules. Increased claudin domain-containing 1 (CLDND1) expression is associated with the malignant transformation of estrogen receptor-negative breast cancer cells with low sensitivity to hormone therapy. Abnormal CLDND1 expression is also implicated in...

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Autores principales: Matsuoka, Hiroshi, Yamaoka, Alice, Hamashima, Takahiro, Shima, Akiho, Kosako, Marin, Tahara, Yuma, Kamishikiryo, Jun, Michihara, Akihiro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9329870/
https://www.ncbi.nlm.nih.gov/pubmed/35892692
http://dx.doi.org/10.3390/biomedicines10081792
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author Matsuoka, Hiroshi
Yamaoka, Alice
Hamashima, Takahiro
Shima, Akiho
Kosako, Marin
Tahara, Yuma
Kamishikiryo, Jun
Michihara, Akihiro
author_facet Matsuoka, Hiroshi
Yamaoka, Alice
Hamashima, Takahiro
Shima, Akiho
Kosako, Marin
Tahara, Yuma
Kamishikiryo, Jun
Michihara, Akihiro
author_sort Matsuoka, Hiroshi
collection PubMed
description Claudin proteins are intercellular adhesion molecules. Increased claudin domain-containing 1 (CLDND1) expression is associated with the malignant transformation of estrogen receptor-negative breast cancer cells with low sensitivity to hormone therapy. Abnormal CLDND1 expression is also implicated in vascular diseases. Previously, we investigated the regulatory mechanism underlying CLDND1 expression and identified a strong enhancer region near the promoter. In silico analysis of the sequence showed high homology to the ETS domain-containing protein-1 (ELK1)-binding sequence which is involved in cell growth, differentiation, angiogenesis, and cancer. Transcriptional ELK1 activation is associated with the mitogen-activated protein kinase (MAPK) signaling cascade originating from the epidermal growth factor receptor (EGFR). Here, we evaluated the effect of gefitinib, an EGFR tyrosine kinase inhibitor, on the suppression of CLDND1 expression using ELK1 overexpression in luciferase reporter and chromatin immunoprecipitation assays. ELK1 was found to be an activator of the enhancer region, and its transient expression increased that of CLDND1 at the mRNA and protein levels. CLDND1 expression was increased following EGF-induced ELK1 phosphorylation. Furthermore, this increase in CLDND1 was significantly suppressed by gefitinib. Therefore, EGF-dependent activation of ELK1 contributes to the induction of CLDND1 expression. These findings open avenues for the development of new anticancer agents targeting CLDND1.
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spelling pubmed-93298702022-07-29 EGF-Dependent Activation of ELK1 Contributes to the Induction of CLDND1 Expression Involved in Tight Junction Formation Matsuoka, Hiroshi Yamaoka, Alice Hamashima, Takahiro Shima, Akiho Kosako, Marin Tahara, Yuma Kamishikiryo, Jun Michihara, Akihiro Biomedicines Article Claudin proteins are intercellular adhesion molecules. Increased claudin domain-containing 1 (CLDND1) expression is associated with the malignant transformation of estrogen receptor-negative breast cancer cells with low sensitivity to hormone therapy. Abnormal CLDND1 expression is also implicated in vascular diseases. Previously, we investigated the regulatory mechanism underlying CLDND1 expression and identified a strong enhancer region near the promoter. In silico analysis of the sequence showed high homology to the ETS domain-containing protein-1 (ELK1)-binding sequence which is involved in cell growth, differentiation, angiogenesis, and cancer. Transcriptional ELK1 activation is associated with the mitogen-activated protein kinase (MAPK) signaling cascade originating from the epidermal growth factor receptor (EGFR). Here, we evaluated the effect of gefitinib, an EGFR tyrosine kinase inhibitor, on the suppression of CLDND1 expression using ELK1 overexpression in luciferase reporter and chromatin immunoprecipitation assays. ELK1 was found to be an activator of the enhancer region, and its transient expression increased that of CLDND1 at the mRNA and protein levels. CLDND1 expression was increased following EGF-induced ELK1 phosphorylation. Furthermore, this increase in CLDND1 was significantly suppressed by gefitinib. Therefore, EGF-dependent activation of ELK1 contributes to the induction of CLDND1 expression. These findings open avenues for the development of new anticancer agents targeting CLDND1. MDPI 2022-07-26 /pmc/articles/PMC9329870/ /pubmed/35892692 http://dx.doi.org/10.3390/biomedicines10081792 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Matsuoka, Hiroshi
Yamaoka, Alice
Hamashima, Takahiro
Shima, Akiho
Kosako, Marin
Tahara, Yuma
Kamishikiryo, Jun
Michihara, Akihiro
EGF-Dependent Activation of ELK1 Contributes to the Induction of CLDND1 Expression Involved in Tight Junction Formation
title EGF-Dependent Activation of ELK1 Contributes to the Induction of CLDND1 Expression Involved in Tight Junction Formation
title_full EGF-Dependent Activation of ELK1 Contributes to the Induction of CLDND1 Expression Involved in Tight Junction Formation
title_fullStr EGF-Dependent Activation of ELK1 Contributes to the Induction of CLDND1 Expression Involved in Tight Junction Formation
title_full_unstemmed EGF-Dependent Activation of ELK1 Contributes to the Induction of CLDND1 Expression Involved in Tight Junction Formation
title_short EGF-Dependent Activation of ELK1 Contributes to the Induction of CLDND1 Expression Involved in Tight Junction Formation
title_sort egf-dependent activation of elk1 contributes to the induction of cldnd1 expression involved in tight junction formation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9329870/
https://www.ncbi.nlm.nih.gov/pubmed/35892692
http://dx.doi.org/10.3390/biomedicines10081792
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