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Dia1-dependent adhesions are required by epithelial tissues to initiate invasion
Developing tissues change shape and tumors initiate spreading through collective cell motility. Conserved mechanisms by which tissues initiate motility into their surroundings are not known. We investigated cytoskeletal regulators during collective invasion by mouse tumor organoids and epithelial Ma...
Autores principales: | , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Rockefeller University Press
2018
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5881494/ https://www.ncbi.nlm.nih.gov/pubmed/29437785 http://dx.doi.org/10.1083/jcb.201703145 |
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author | Fessenden, Tim B. Beckham, Yvonne Perez-Neut, Mathew Ramirez-San Juan, Guillermina Chourasia, Aparajita H. Macleod, Kay F. Oakes, Patrick W. Gardel, Margaret L. |
author_facet | Fessenden, Tim B. Beckham, Yvonne Perez-Neut, Mathew Ramirez-San Juan, Guillermina Chourasia, Aparajita H. Macleod, Kay F. Oakes, Patrick W. Gardel, Margaret L. |
author_sort | Fessenden, Tim B. |
collection | PubMed |
description | Developing tissues change shape and tumors initiate spreading through collective cell motility. Conserved mechanisms by which tissues initiate motility into their surroundings are not known. We investigated cytoskeletal regulators during collective invasion by mouse tumor organoids and epithelial Madin–Darby canine kidney (MDCK) acini undergoing branching morphogenesis in collagen. Use of the broad-spectrum formin inhibitor SMIFH2 prevented the formation of migrating cell fronts in both cell types. Focusing on the role of the formin Dia1 in branching morphogenesis, we found that its depletion in MDCK cells does not alter planar cell motility either within the acinus or in two-dimensional scattering assays. However, Dia1 was required to stabilize protrusions extending into the collagen matrix. Live imaging of actin, myosin, and collagen in control acini revealed adhesions that deformed individual collagen fibrils and generated large traction forces, whereas Dia1-depleted acini exhibited unstable adhesions with minimal collagen deformation and lower force generation. This work identifies Dia1 as an essential regulator of tissue shape changes through its role in stabilizing focal adhesions. |
format | Online Article Text |
id | pubmed-5881494 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Rockefeller University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-58814942018-10-02 Dia1-dependent adhesions are required by epithelial tissues to initiate invasion Fessenden, Tim B. Beckham, Yvonne Perez-Neut, Mathew Ramirez-San Juan, Guillermina Chourasia, Aparajita H. Macleod, Kay F. Oakes, Patrick W. Gardel, Margaret L. J Cell Biol Research Articles Developing tissues change shape and tumors initiate spreading through collective cell motility. Conserved mechanisms by which tissues initiate motility into their surroundings are not known. We investigated cytoskeletal regulators during collective invasion by mouse tumor organoids and epithelial Madin–Darby canine kidney (MDCK) acini undergoing branching morphogenesis in collagen. Use of the broad-spectrum formin inhibitor SMIFH2 prevented the formation of migrating cell fronts in both cell types. Focusing on the role of the formin Dia1 in branching morphogenesis, we found that its depletion in MDCK cells does not alter planar cell motility either within the acinus or in two-dimensional scattering assays. However, Dia1 was required to stabilize protrusions extending into the collagen matrix. Live imaging of actin, myosin, and collagen in control acini revealed adhesions that deformed individual collagen fibrils and generated large traction forces, whereas Dia1-depleted acini exhibited unstable adhesions with minimal collagen deformation and lower force generation. This work identifies Dia1 as an essential regulator of tissue shape changes through its role in stabilizing focal adhesions. Rockefeller University Press 2018-04-02 /pmc/articles/PMC5881494/ /pubmed/29437785 http://dx.doi.org/10.1083/jcb.201703145 Text en © 2018 Fessenden et al. http://www.rupress.org/terms/https://creativecommons.org/licenses/by-nc-sa/4.0/This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms/). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 International license, as described at https://creativecommons.org/licenses/by-nc-sa/4.0/). |
spellingShingle | Research Articles Fessenden, Tim B. Beckham, Yvonne Perez-Neut, Mathew Ramirez-San Juan, Guillermina Chourasia, Aparajita H. Macleod, Kay F. Oakes, Patrick W. Gardel, Margaret L. Dia1-dependent adhesions are required by epithelial tissues to initiate invasion |
title | Dia1-dependent adhesions are required by epithelial tissues to initiate invasion |
title_full | Dia1-dependent adhesions are required by epithelial tissues to initiate invasion |
title_fullStr | Dia1-dependent adhesions are required by epithelial tissues to initiate invasion |
title_full_unstemmed | Dia1-dependent adhesions are required by epithelial tissues to initiate invasion |
title_short | Dia1-dependent adhesions are required by epithelial tissues to initiate invasion |
title_sort | dia1-dependent adhesions are required by epithelial tissues to initiate invasion |
topic | Research Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5881494/ https://www.ncbi.nlm.nih.gov/pubmed/29437785 http://dx.doi.org/10.1083/jcb.201703145 |
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