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The mechanosensitive TRPV2 calcium channel promotes human melanoma invasiveness and metastatic potential

Melanoma is a highly aggressive cancer endowed with a unique capacity of rapidly metastasizing, which is fundamentally driven by aberrant cell motility behaviors. Discovering “migrastatics” targets, specifically controlling invasion and dissemination of melanoma cells during metastasis, is therefore...

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Autores principales: Shoji, Kenji F, Bayet, Elsa, Leverrier‐Penna, Sabrina, Le Devedec, Dahiana, Mallavialle, Aude, Marionneau‐Lambot, Séverine, Rambow, Florian, Perret, Raul, Joussaume, Aurélie, Viel, Roselyne, Fautrel, Alain, Khammari, Amir, Constantin, Bruno, Tartare‐Deckert, Sophie, Penna, Aubin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10074106/
https://www.ncbi.nlm.nih.gov/pubmed/36744297
http://dx.doi.org/10.15252/embr.202255069
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author Shoji, Kenji F
Bayet, Elsa
Leverrier‐Penna, Sabrina
Le Devedec, Dahiana
Mallavialle, Aude
Marionneau‐Lambot, Séverine
Rambow, Florian
Perret, Raul
Joussaume, Aurélie
Viel, Roselyne
Fautrel, Alain
Khammari, Amir
Constantin, Bruno
Tartare‐Deckert, Sophie
Penna, Aubin
author_facet Shoji, Kenji F
Bayet, Elsa
Leverrier‐Penna, Sabrina
Le Devedec, Dahiana
Mallavialle, Aude
Marionneau‐Lambot, Séverine
Rambow, Florian
Perret, Raul
Joussaume, Aurélie
Viel, Roselyne
Fautrel, Alain
Khammari, Amir
Constantin, Bruno
Tartare‐Deckert, Sophie
Penna, Aubin
author_sort Shoji, Kenji F
collection PubMed
description Melanoma is a highly aggressive cancer endowed with a unique capacity of rapidly metastasizing, which is fundamentally driven by aberrant cell motility behaviors. Discovering “migrastatics” targets, specifically controlling invasion and dissemination of melanoma cells during metastasis, is therefore of primary importance. Here, we uncover the prominent expression of the plasma membrane TRPV2 calcium channel as a distinctive feature of melanoma tumors, directly related to melanoma metastatic dissemination. In vitro as well as in vivo, TRPV2 activity is sufficient to confer both migratory and invasive potentials, while conversely TRPV2 silencing in highly metastatic melanoma cells prevents aggressive behavior. In invasive melanoma cells, TRPV2 channel localizes at the leading edge, in dynamic nascent adhesions, and regulates calcium‐mediated activation of calpain and the ensuing cleavage of the adhesive protein talin, along with F‐actin organization. In human melanoma tissues, TRPV2 overexpression correlates with advanced malignancy and poor prognosis, evoking a biomarker potential. Hence, by regulating adhesion and motility, the mechanosensitive TRPV2 channel controls melanoma cell invasiveness, highlighting a new therapeutic option for migrastatics in the treatment of metastatic melanoma.
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spelling pubmed-100741062023-04-06 The mechanosensitive TRPV2 calcium channel promotes human melanoma invasiveness and metastatic potential Shoji, Kenji F Bayet, Elsa Leverrier‐Penna, Sabrina Le Devedec, Dahiana Mallavialle, Aude Marionneau‐Lambot, Séverine Rambow, Florian Perret, Raul Joussaume, Aurélie Viel, Roselyne Fautrel, Alain Khammari, Amir Constantin, Bruno Tartare‐Deckert, Sophie Penna, Aubin EMBO Rep Articles Melanoma is a highly aggressive cancer endowed with a unique capacity of rapidly metastasizing, which is fundamentally driven by aberrant cell motility behaviors. Discovering “migrastatics” targets, specifically controlling invasion and dissemination of melanoma cells during metastasis, is therefore of primary importance. Here, we uncover the prominent expression of the plasma membrane TRPV2 calcium channel as a distinctive feature of melanoma tumors, directly related to melanoma metastatic dissemination. In vitro as well as in vivo, TRPV2 activity is sufficient to confer both migratory and invasive potentials, while conversely TRPV2 silencing in highly metastatic melanoma cells prevents aggressive behavior. In invasive melanoma cells, TRPV2 channel localizes at the leading edge, in dynamic nascent adhesions, and regulates calcium‐mediated activation of calpain and the ensuing cleavage of the adhesive protein talin, along with F‐actin organization. In human melanoma tissues, TRPV2 overexpression correlates with advanced malignancy and poor prognosis, evoking a biomarker potential. Hence, by regulating adhesion and motility, the mechanosensitive TRPV2 channel controls melanoma cell invasiveness, highlighting a new therapeutic option for migrastatics in the treatment of metastatic melanoma. John Wiley and Sons Inc. 2023-02-06 /pmc/articles/PMC10074106/ /pubmed/36744297 http://dx.doi.org/10.15252/embr.202255069 Text en © 2023 The Authors. Published under the terms of the CC BY 4.0 license. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Shoji, Kenji F
Bayet, Elsa
Leverrier‐Penna, Sabrina
Le Devedec, Dahiana
Mallavialle, Aude
Marionneau‐Lambot, Séverine
Rambow, Florian
Perret, Raul
Joussaume, Aurélie
Viel, Roselyne
Fautrel, Alain
Khammari, Amir
Constantin, Bruno
Tartare‐Deckert, Sophie
Penna, Aubin
The mechanosensitive TRPV2 calcium channel promotes human melanoma invasiveness and metastatic potential
title The mechanosensitive TRPV2 calcium channel promotes human melanoma invasiveness and metastatic potential
title_full The mechanosensitive TRPV2 calcium channel promotes human melanoma invasiveness and metastatic potential
title_fullStr The mechanosensitive TRPV2 calcium channel promotes human melanoma invasiveness and metastatic potential
title_full_unstemmed The mechanosensitive TRPV2 calcium channel promotes human melanoma invasiveness and metastatic potential
title_short The mechanosensitive TRPV2 calcium channel promotes human melanoma invasiveness and metastatic potential
title_sort mechanosensitive trpv2 calcium channel promotes human melanoma invasiveness and metastatic potential
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10074106/
https://www.ncbi.nlm.nih.gov/pubmed/36744297
http://dx.doi.org/10.15252/embr.202255069
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