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GPER Activation Inhibits Cancer Cell Mechanotransduction and Basement Membrane Invasion via RhoA

The invasive properties of cancer cells are intimately linked to their mechanical phenotype, which can be regulated by intracellular biochemical signalling. Cell contractility, induced by mechanotransduction of a stiff fibrotic matrix, and the epithelial–mesenchymal transition (EMT) promote invasion...

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Autores principales: Rice, Alistair, Cortes, Ernesto, Lachowski, Dariusz, Oertle, Philipp, Matellan, Carlos, Thorpe, Stephen D., Ghose, Ritobrata, Wang, Haiyun, Lee, David A., Plodinec, Marija, del Río Hernández, Armando E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7073197/
https://www.ncbi.nlm.nih.gov/pubmed/31991740
http://dx.doi.org/10.3390/cancers12020289
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author Rice, Alistair
Cortes, Ernesto
Lachowski, Dariusz
Oertle, Philipp
Matellan, Carlos
Thorpe, Stephen D.
Ghose, Ritobrata
Wang, Haiyun
Lee, David A.
Plodinec, Marija
del Río Hernández, Armando E.
author_facet Rice, Alistair
Cortes, Ernesto
Lachowski, Dariusz
Oertle, Philipp
Matellan, Carlos
Thorpe, Stephen D.
Ghose, Ritobrata
Wang, Haiyun
Lee, David A.
Plodinec, Marija
del Río Hernández, Armando E.
author_sort Rice, Alistair
collection PubMed
description The invasive properties of cancer cells are intimately linked to their mechanical phenotype, which can be regulated by intracellular biochemical signalling. Cell contractility, induced by mechanotransduction of a stiff fibrotic matrix, and the epithelial–mesenchymal transition (EMT) promote invasion. Metastasis involves cells pushing through the basement membrane into the stroma—both of which are altered in composition with cancer progression. Agonists of the G protein-coupled oestrogen receptor (GPER), such as tamoxifen, have been largely used in the clinic, and interest in GPER, which is abundantly expressed in tissues, has greatly increased despite a lack of understanding regarding the mechanisms which promote its multiple effects. Here, we show that specific activation of GPER inhibits EMT, mechanotransduction and cell contractility in cancer cells via the GTPase Ras homolog family member A (RhoA). We further show that GPER activation inhibits invasion through an in vitro basement membrane mimic, similar in structure to the pancreatic basement membrane that we reveal as an asymmetric bilayer, which differs in composition between healthy and cancer patients.
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spelling pubmed-70731972020-03-19 GPER Activation Inhibits Cancer Cell Mechanotransduction and Basement Membrane Invasion via RhoA Rice, Alistair Cortes, Ernesto Lachowski, Dariusz Oertle, Philipp Matellan, Carlos Thorpe, Stephen D. Ghose, Ritobrata Wang, Haiyun Lee, David A. Plodinec, Marija del Río Hernández, Armando E. Cancers (Basel) Article The invasive properties of cancer cells are intimately linked to their mechanical phenotype, which can be regulated by intracellular biochemical signalling. Cell contractility, induced by mechanotransduction of a stiff fibrotic matrix, and the epithelial–mesenchymal transition (EMT) promote invasion. Metastasis involves cells pushing through the basement membrane into the stroma—both of which are altered in composition with cancer progression. Agonists of the G protein-coupled oestrogen receptor (GPER), such as tamoxifen, have been largely used in the clinic, and interest in GPER, which is abundantly expressed in tissues, has greatly increased despite a lack of understanding regarding the mechanisms which promote its multiple effects. Here, we show that specific activation of GPER inhibits EMT, mechanotransduction and cell contractility in cancer cells via the GTPase Ras homolog family member A (RhoA). We further show that GPER activation inhibits invasion through an in vitro basement membrane mimic, similar in structure to the pancreatic basement membrane that we reveal as an asymmetric bilayer, which differs in composition between healthy and cancer patients. MDPI 2020-01-25 /pmc/articles/PMC7073197/ /pubmed/31991740 http://dx.doi.org/10.3390/cancers12020289 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rice, Alistair
Cortes, Ernesto
Lachowski, Dariusz
Oertle, Philipp
Matellan, Carlos
Thorpe, Stephen D.
Ghose, Ritobrata
Wang, Haiyun
Lee, David A.
Plodinec, Marija
del Río Hernández, Armando E.
GPER Activation Inhibits Cancer Cell Mechanotransduction and Basement Membrane Invasion via RhoA
title GPER Activation Inhibits Cancer Cell Mechanotransduction and Basement Membrane Invasion via RhoA
title_full GPER Activation Inhibits Cancer Cell Mechanotransduction and Basement Membrane Invasion via RhoA
title_fullStr GPER Activation Inhibits Cancer Cell Mechanotransduction and Basement Membrane Invasion via RhoA
title_full_unstemmed GPER Activation Inhibits Cancer Cell Mechanotransduction and Basement Membrane Invasion via RhoA
title_short GPER Activation Inhibits Cancer Cell Mechanotransduction and Basement Membrane Invasion via RhoA
title_sort gper activation inhibits cancer cell mechanotransduction and basement membrane invasion via rhoa
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7073197/
https://www.ncbi.nlm.nih.gov/pubmed/31991740
http://dx.doi.org/10.3390/cancers12020289
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