Cargando…

hMENA is a key regulator in endothelin-1/β-arrestin1–induced invadopodial function and metastatic process

Aberrant activation of endothelin-1 receptors (ET-1R) elicits pleiotropic effects relevant for tumor progression. The network activated by this receptor might be finely, spatially, and temporarily orchestrated by β-arrestin1 (β-arr1)–driven interactome. Here, we identify hMENA, a member of the actin...

Descripción completa

Detalles Bibliográficos
Autores principales: Di Modugno, Francesca, Caprara, Valentina, Chellini, Lidia, Tocci, Piera, Spadaro, Francesca, Ferrandina, Gabriella, Sacconi, Andrea, Blandino, Giovanni, Nisticò, Paola, Bagnato, Anna, Rosanò, Laura
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5866561/
https://www.ncbi.nlm.nih.gov/pubmed/29439204
http://dx.doi.org/10.1073/pnas.1715998115
_version_ 1783308849495670784
author Di Modugno, Francesca
Caprara, Valentina
Chellini, Lidia
Tocci, Piera
Spadaro, Francesca
Ferrandina, Gabriella
Sacconi, Andrea
Blandino, Giovanni
Nisticò, Paola
Bagnato, Anna
Rosanò, Laura
author_facet Di Modugno, Francesca
Caprara, Valentina
Chellini, Lidia
Tocci, Piera
Spadaro, Francesca
Ferrandina, Gabriella
Sacconi, Andrea
Blandino, Giovanni
Nisticò, Paola
Bagnato, Anna
Rosanò, Laura
author_sort Di Modugno, Francesca
collection PubMed
description Aberrant activation of endothelin-1 receptors (ET-1R) elicits pleiotropic effects relevant for tumor progression. The network activated by this receptor might be finely, spatially, and temporarily orchestrated by β-arrestin1 (β-arr1)–driven interactome. Here, we identify hMENA, a member of the actin-regulatory protein ENA/VASP family, as an interacting partner of β-arr1, necessary for invadopodial function downstream of ET-1R in serous ovarian cancer (SOC) progression. ET-1R activation by ET-1 up-regulates expression of hMENA/hMENAΔv6 isoforms through β-arr1, restricted to mesenchymal-like invasive SOC cells. The interaction of β-arr1 with hMENA/hMENAΔv6 triggered by ET-1 leads to activation of RhoC and cortactin, recruitment of membrane type 1-matrix metalloprotease, and invadopodia maturation, thereby enhancing cell plasticity, transendothelial migration, and the resulting spread of invasive cells. The treatment with the ET-1R antagonist macitentan impairs the interaction of β-arr1 with hMENA and inhibits invadopodial maturation and tumor dissemination in SOC orthotopic xenografts. Finally, high ET(A)R/hMENA/β-arr1 gene expression signature is associated with a poor prognosis in SOC patients. These data define a pivotal function of hMENA/hMENAΔv6 for ET-1/β-arr1–induced invadopodial activity and ovarian cancer progression.
format Online
Article
Text
id pubmed-5866561
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher National Academy of Sciences
record_format MEDLINE/PubMed
spelling pubmed-58665612018-03-29 hMENA is a key regulator in endothelin-1/β-arrestin1–induced invadopodial function and metastatic process Di Modugno, Francesca Caprara, Valentina Chellini, Lidia Tocci, Piera Spadaro, Francesca Ferrandina, Gabriella Sacconi, Andrea Blandino, Giovanni Nisticò, Paola Bagnato, Anna Rosanò, Laura Proc Natl Acad Sci U S A Biological Sciences Aberrant activation of endothelin-1 receptors (ET-1R) elicits pleiotropic effects relevant for tumor progression. The network activated by this receptor might be finely, spatially, and temporarily orchestrated by β-arrestin1 (β-arr1)–driven interactome. Here, we identify hMENA, a member of the actin-regulatory protein ENA/VASP family, as an interacting partner of β-arr1, necessary for invadopodial function downstream of ET-1R in serous ovarian cancer (SOC) progression. ET-1R activation by ET-1 up-regulates expression of hMENA/hMENAΔv6 isoforms through β-arr1, restricted to mesenchymal-like invasive SOC cells. The interaction of β-arr1 with hMENA/hMENAΔv6 triggered by ET-1 leads to activation of RhoC and cortactin, recruitment of membrane type 1-matrix metalloprotease, and invadopodia maturation, thereby enhancing cell plasticity, transendothelial migration, and the resulting spread of invasive cells. The treatment with the ET-1R antagonist macitentan impairs the interaction of β-arr1 with hMENA and inhibits invadopodial maturation and tumor dissemination in SOC orthotopic xenografts. Finally, high ET(A)R/hMENA/β-arr1 gene expression signature is associated with a poor prognosis in SOC patients. These data define a pivotal function of hMENA/hMENAΔv6 for ET-1/β-arr1–induced invadopodial activity and ovarian cancer progression. National Academy of Sciences 2018-03-20 2018-02-08 /pmc/articles/PMC5866561/ /pubmed/29439204 http://dx.doi.org/10.1073/pnas.1715998115 Text en Copyright © 2018 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Di Modugno, Francesca
Caprara, Valentina
Chellini, Lidia
Tocci, Piera
Spadaro, Francesca
Ferrandina, Gabriella
Sacconi, Andrea
Blandino, Giovanni
Nisticò, Paola
Bagnato, Anna
Rosanò, Laura
hMENA is a key regulator in endothelin-1/β-arrestin1–induced invadopodial function and metastatic process
title hMENA is a key regulator in endothelin-1/β-arrestin1–induced invadopodial function and metastatic process
title_full hMENA is a key regulator in endothelin-1/β-arrestin1–induced invadopodial function and metastatic process
title_fullStr hMENA is a key regulator in endothelin-1/β-arrestin1–induced invadopodial function and metastatic process
title_full_unstemmed hMENA is a key regulator in endothelin-1/β-arrestin1–induced invadopodial function and metastatic process
title_short hMENA is a key regulator in endothelin-1/β-arrestin1–induced invadopodial function and metastatic process
title_sort hmena is a key regulator in endothelin-1/β-arrestin1–induced invadopodial function and metastatic process
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5866561/
https://www.ncbi.nlm.nih.gov/pubmed/29439204
http://dx.doi.org/10.1073/pnas.1715998115
work_keys_str_mv AT dimodugnofrancesca hmenaisakeyregulatorinendothelin1barrestin1inducedinvadopodialfunctionandmetastaticprocess
AT capraravalentina hmenaisakeyregulatorinendothelin1barrestin1inducedinvadopodialfunctionandmetastaticprocess
AT chellinilidia hmenaisakeyregulatorinendothelin1barrestin1inducedinvadopodialfunctionandmetastaticprocess
AT toccipiera hmenaisakeyregulatorinendothelin1barrestin1inducedinvadopodialfunctionandmetastaticprocess
AT spadarofrancesca hmenaisakeyregulatorinendothelin1barrestin1inducedinvadopodialfunctionandmetastaticprocess
AT ferrandinagabriella hmenaisakeyregulatorinendothelin1barrestin1inducedinvadopodialfunctionandmetastaticprocess
AT sacconiandrea hmenaisakeyregulatorinendothelin1barrestin1inducedinvadopodialfunctionandmetastaticprocess
AT blandinogiovanni hmenaisakeyregulatorinendothelin1barrestin1inducedinvadopodialfunctionandmetastaticprocess
AT nisticopaola hmenaisakeyregulatorinendothelin1barrestin1inducedinvadopodialfunctionandmetastaticprocess
AT bagnatoanna hmenaisakeyregulatorinendothelin1barrestin1inducedinvadopodialfunctionandmetastaticprocess
AT rosanolaura hmenaisakeyregulatorinendothelin1barrestin1inducedinvadopodialfunctionandmetastaticprocess