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MMP3 activity rather than cortical stiffness determines NHE1-dependent invasiveness of melanoma cells

BACKGROUND: Both cell adhesion and matrix metalloproteinase (MMP) activity depend on pH at the cell surface. By regulating extracellular juxtamembrane pH, the Na(+)/H(+) exchanger NHE1 plays a significant part in human melanoma (MV3) cell migration and invasion. Because NHE1, besides its pH-regulato...

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Autores principales: Keurhorst, Dennis, Liashkovich, Ivan, Frontzek, Fabian, Nitzlaff, Svenja, Hofschröer, Verena, Dreier, Rita, Stock, Christian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6842528/
https://www.ncbi.nlm.nih.gov/pubmed/31728131
http://dx.doi.org/10.1186/s12935-019-1015-7
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author Keurhorst, Dennis
Liashkovich, Ivan
Frontzek, Fabian
Nitzlaff, Svenja
Hofschröer, Verena
Dreier, Rita
Stock, Christian
author_facet Keurhorst, Dennis
Liashkovich, Ivan
Frontzek, Fabian
Nitzlaff, Svenja
Hofschröer, Verena
Dreier, Rita
Stock, Christian
author_sort Keurhorst, Dennis
collection PubMed
description BACKGROUND: Both cell adhesion and matrix metalloproteinase (MMP) activity depend on pH at the cell surface. By regulating extracellular juxtamembrane pH, the Na(+)/H(+) exchanger NHE1 plays a significant part in human melanoma (MV3) cell migration and invasion. Because NHE1, besides its pH-regulatory transport function, also serves as a structural element tying the cortical actin cytoskeleton to the plasma membrane, we investigated whether NHE1 affects cortical stiffness of MV3 cells, and how this makes an impact on their invasiveness. METHODS: NHE1 overexpressing MV3 cells were compared to the corresponding mock-transfected control cells. NHE1 expression was verified by Western blotting, cariporide (HOE642) was used to inhibit NHE1 activity, cell stiffness was determined by atomic force microscopy, and F-actin was visualized by phalloidin-staining. Migration on, and invasion of, native and glutaraldehyde-fixed collagen I substrates were analyzed using time-lapse video microscopy and Boyden-chamber assays, respectively. MMP secretion and activity were detected by Western blot and zymography, respectively. MMP activity was inhibited with NNGH. RESULTS: The cortical, but not the bulk stiffness, was significantly higher in NHE1 overexpressing cells. This increase in cortical stiffness was accompanied by a reorganization of the cortical cytoskeleton, i.e. a condensation of F-actin underneath and along the plasma membrane. However, it was not affected by NHE1 inhibition. Nevertheless, actin dynamics is required for cell invasion as demonstrated with the application of cytochalasin D. NHE1 overexpression was associated with an elevated MMP3 secretion and an increase in the invasion of a native matrix. This increase in invasiveness could be antagonized by the MMP inhibitor NNGH. Transmigration through a glutaraldehyde-fixed, indigestible substrate was not affected by NHE1 overexpression. CONCLUSION: NHE1, as a structural element and independently of its transport activity, contributes to the organization of the cortical F-actin meshwork and thus impacts cortical stiffness. Since NHE1 overexpression stimulates MMP3 secretion but does not change transmigration through a fixed substrate, MV3 cell invasion of a native substrate depends on MMP activity rather than on a modifiable cortical stiffness.
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spelling pubmed-68425282019-11-14 MMP3 activity rather than cortical stiffness determines NHE1-dependent invasiveness of melanoma cells Keurhorst, Dennis Liashkovich, Ivan Frontzek, Fabian Nitzlaff, Svenja Hofschröer, Verena Dreier, Rita Stock, Christian Cancer Cell Int Primary Research BACKGROUND: Both cell adhesion and matrix metalloproteinase (MMP) activity depend on pH at the cell surface. By regulating extracellular juxtamembrane pH, the Na(+)/H(+) exchanger NHE1 plays a significant part in human melanoma (MV3) cell migration and invasion. Because NHE1, besides its pH-regulatory transport function, also serves as a structural element tying the cortical actin cytoskeleton to the plasma membrane, we investigated whether NHE1 affects cortical stiffness of MV3 cells, and how this makes an impact on their invasiveness. METHODS: NHE1 overexpressing MV3 cells were compared to the corresponding mock-transfected control cells. NHE1 expression was verified by Western blotting, cariporide (HOE642) was used to inhibit NHE1 activity, cell stiffness was determined by atomic force microscopy, and F-actin was visualized by phalloidin-staining. Migration on, and invasion of, native and glutaraldehyde-fixed collagen I substrates were analyzed using time-lapse video microscopy and Boyden-chamber assays, respectively. MMP secretion and activity were detected by Western blot and zymography, respectively. MMP activity was inhibited with NNGH. RESULTS: The cortical, but not the bulk stiffness, was significantly higher in NHE1 overexpressing cells. This increase in cortical stiffness was accompanied by a reorganization of the cortical cytoskeleton, i.e. a condensation of F-actin underneath and along the plasma membrane. However, it was not affected by NHE1 inhibition. Nevertheless, actin dynamics is required for cell invasion as demonstrated with the application of cytochalasin D. NHE1 overexpression was associated with an elevated MMP3 secretion and an increase in the invasion of a native matrix. This increase in invasiveness could be antagonized by the MMP inhibitor NNGH. Transmigration through a glutaraldehyde-fixed, indigestible substrate was not affected by NHE1 overexpression. CONCLUSION: NHE1, as a structural element and independently of its transport activity, contributes to the organization of the cortical F-actin meshwork and thus impacts cortical stiffness. Since NHE1 overexpression stimulates MMP3 secretion but does not change transmigration through a fixed substrate, MV3 cell invasion of a native substrate depends on MMP activity rather than on a modifiable cortical stiffness. BioMed Central 2019-11-09 /pmc/articles/PMC6842528/ /pubmed/31728131 http://dx.doi.org/10.1186/s12935-019-1015-7 Text en © The Author(s) 2019 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Primary Research
Keurhorst, Dennis
Liashkovich, Ivan
Frontzek, Fabian
Nitzlaff, Svenja
Hofschröer, Verena
Dreier, Rita
Stock, Christian
MMP3 activity rather than cortical stiffness determines NHE1-dependent invasiveness of melanoma cells
title MMP3 activity rather than cortical stiffness determines NHE1-dependent invasiveness of melanoma cells
title_full MMP3 activity rather than cortical stiffness determines NHE1-dependent invasiveness of melanoma cells
title_fullStr MMP3 activity rather than cortical stiffness determines NHE1-dependent invasiveness of melanoma cells
title_full_unstemmed MMP3 activity rather than cortical stiffness determines NHE1-dependent invasiveness of melanoma cells
title_short MMP3 activity rather than cortical stiffness determines NHE1-dependent invasiveness of melanoma cells
title_sort mmp3 activity rather than cortical stiffness determines nhe1-dependent invasiveness of melanoma cells
topic Primary Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6842528/
https://www.ncbi.nlm.nih.gov/pubmed/31728131
http://dx.doi.org/10.1186/s12935-019-1015-7
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