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WAVE2 Regulates Epithelial Morphology and Cadherin Isoform Switching through Regulation of Twist and Abl

BACKGROUND: Epithelial morphogenesis is a dynamic process that involves coordination of signaling and actin cytoskeletal rearrangements. PRINCIPAL FINDINGS: We analyzed the contribution of the branched actin regulator WAVE2 in the development of 3-dimensional (3D) epithelial structures. WAVE2-knockd...

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Autores principales: Bryce, Nicole S., Reynolds, Albert B., Koleske, Anthony J., Weaver, Alissa M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3654908/
https://www.ncbi.nlm.nih.gov/pubmed/23691243
http://dx.doi.org/10.1371/journal.pone.0064533
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author Bryce, Nicole S.
Reynolds, Albert B.
Koleske, Anthony J.
Weaver, Alissa M.
author_facet Bryce, Nicole S.
Reynolds, Albert B.
Koleske, Anthony J.
Weaver, Alissa M.
author_sort Bryce, Nicole S.
collection PubMed
description BACKGROUND: Epithelial morphogenesis is a dynamic process that involves coordination of signaling and actin cytoskeletal rearrangements. PRINCIPAL FINDINGS: We analyzed the contribution of the branched actin regulator WAVE2 in the development of 3-dimensional (3D) epithelial structures. WAVE2-knockdown (WAVE2-KD) cells formed large multi-lobular acini that continued to proliferate at an abnormally late stage compared to control acini. Immunostaining of the cell-cell junctions of WAVE2-KD acini revealed weak and heterogeneous E-cadherin staining despite little change in actin filament localization to the same junctions. Analysis of cadherin expression demonstrated a decrease in E-cadherin and an increase in N-cadherin protein and mRNA abundance in total cell lysates. In addition, WAVE2-KD cells exhibited an increase in the mRNA levels of the epithelial-mesenchymal transition (EMT)-associated transcription factor Twist1. KD of Twist1 expression in WAVE2-KD cells reversed the cadherin switching and completely rescued the aberrant 3D morphological phenotype. Activity of the WAVE2 complex binding partner Abl kinase was also increased in WAVE2-KD cells, as assessed by tyrosine phosphorylation of the Abl substrate CrkL. Inhibition of Abl with STI571 rescued the multi-lobular WAVE2-KD 3D phenotype whereas overexpression of Abl kinase phenocopied the WAVE2-KD phenotype. CONCLUSIONS: The WAVE2 complex regulates breast epithelial morphology by a complex mechanism involving repression of Twist1 expression and Abl kinase activity. These data reveal a critical role for WAVE2 complex in regulation of cellular signaling and epithelial morphogenesis.
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spelling pubmed-36549082013-05-20 WAVE2 Regulates Epithelial Morphology and Cadherin Isoform Switching through Regulation of Twist and Abl Bryce, Nicole S. Reynolds, Albert B. Koleske, Anthony J. Weaver, Alissa M. PLoS One Research Article BACKGROUND: Epithelial morphogenesis is a dynamic process that involves coordination of signaling and actin cytoskeletal rearrangements. PRINCIPAL FINDINGS: We analyzed the contribution of the branched actin regulator WAVE2 in the development of 3-dimensional (3D) epithelial structures. WAVE2-knockdown (WAVE2-KD) cells formed large multi-lobular acini that continued to proliferate at an abnormally late stage compared to control acini. Immunostaining of the cell-cell junctions of WAVE2-KD acini revealed weak and heterogeneous E-cadherin staining despite little change in actin filament localization to the same junctions. Analysis of cadherin expression demonstrated a decrease in E-cadherin and an increase in N-cadherin protein and mRNA abundance in total cell lysates. In addition, WAVE2-KD cells exhibited an increase in the mRNA levels of the epithelial-mesenchymal transition (EMT)-associated transcription factor Twist1. KD of Twist1 expression in WAVE2-KD cells reversed the cadherin switching and completely rescued the aberrant 3D morphological phenotype. Activity of the WAVE2 complex binding partner Abl kinase was also increased in WAVE2-KD cells, as assessed by tyrosine phosphorylation of the Abl substrate CrkL. Inhibition of Abl with STI571 rescued the multi-lobular WAVE2-KD 3D phenotype whereas overexpression of Abl kinase phenocopied the WAVE2-KD phenotype. CONCLUSIONS: The WAVE2 complex regulates breast epithelial morphology by a complex mechanism involving repression of Twist1 expression and Abl kinase activity. These data reveal a critical role for WAVE2 complex in regulation of cellular signaling and epithelial morphogenesis. Public Library of Science 2013-05-15 /pmc/articles/PMC3654908/ /pubmed/23691243 http://dx.doi.org/10.1371/journal.pone.0064533 Text en © 2013 Bryce 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
Bryce, Nicole S.
Reynolds, Albert B.
Koleske, Anthony J.
Weaver, Alissa M.
WAVE2 Regulates Epithelial Morphology and Cadherin Isoform Switching through Regulation of Twist and Abl
title WAVE2 Regulates Epithelial Morphology and Cadherin Isoform Switching through Regulation of Twist and Abl
title_full WAVE2 Regulates Epithelial Morphology and Cadherin Isoform Switching through Regulation of Twist and Abl
title_fullStr WAVE2 Regulates Epithelial Morphology and Cadherin Isoform Switching through Regulation of Twist and Abl
title_full_unstemmed WAVE2 Regulates Epithelial Morphology and Cadherin Isoform Switching through Regulation of Twist and Abl
title_short WAVE2 Regulates Epithelial Morphology and Cadherin Isoform Switching through Regulation of Twist and Abl
title_sort wave2 regulates epithelial morphology and cadherin isoform switching through regulation of twist and abl
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3654908/
https://www.ncbi.nlm.nih.gov/pubmed/23691243
http://dx.doi.org/10.1371/journal.pone.0064533
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