Loss of Ambra1 promotes melanoma growth and invasion

The absence of scaffold protein Ambra1 leads to hyperproliferation and growth in mouse models. Here the authors show that Ambra1 deficiency accelerates melanoma growth and increases metastasis in mouse models of melanoma through FAK1 hyperactivation.

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Autores principales: Luca Di Leo, Valérie Bodemeyer, Francesca M. Bosisio, Giuseppina Claps, Marco Carretta, Salvatore Rizza, Fiorella Faienza, Alex Frias, Shawez Khan, Matteo Bordi, Maria P. Pacheco, Julie Di Martino, Jose J. Bravo-Cordero, Colin J. Daniel, Rosalie C. Sears, Marco Donia, Daniel H. Madsen, Per Guldberg, Giuseppe Filomeni, Thomas Sauter, Caroline Robert, Daniela De Zio, Francesco Cecconi
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/57c07f6892f24e98b8abf330dfb96699
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spelling oai:doaj.org-article:57c07f6892f24e98b8abf330dfb966992021-12-02T16:51:30ZLoss of Ambra1 promotes melanoma growth and invasion10.1038/s41467-021-22772-22041-1723https://doaj.org/article/57c07f6892f24e98b8abf330dfb966992021-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-22772-2https://doaj.org/toc/2041-1723The absence of scaffold protein Ambra1 leads to hyperproliferation and growth in mouse models. Here the authors show that Ambra1 deficiency accelerates melanoma growth and increases metastasis in mouse models of melanoma through FAK1 hyperactivation.Luca Di LeoValérie BodemeyerFrancesca M. BosisioGiuseppina ClapsMarco CarrettaSalvatore RizzaFiorella FaienzaAlex FriasShawez KhanMatteo BordiMaria P. PachecoJulie Di MartinoJose J. Bravo-CorderoColin J. DanielRosalie C. SearsMarco DoniaDaniel H. MadsenPer GuldbergGiuseppe FilomeniThomas SauterCaroline RobertDaniela De ZioFrancesco CecconiNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-17 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Luca Di Leo
Valérie Bodemeyer
Francesca M. Bosisio
Giuseppina Claps
Marco Carretta
Salvatore Rizza
Fiorella Faienza
Alex Frias
Shawez Khan
Matteo Bordi
Maria P. Pacheco
Julie Di Martino
Jose J. Bravo-Cordero
Colin J. Daniel
Rosalie C. Sears
Marco Donia
Daniel H. Madsen
Per Guldberg
Giuseppe Filomeni
Thomas Sauter
Caroline Robert
Daniela De Zio
Francesco Cecconi
Loss of Ambra1 promotes melanoma growth and invasion
description The absence of scaffold protein Ambra1 leads to hyperproliferation and growth in mouse models. Here the authors show that Ambra1 deficiency accelerates melanoma growth and increases metastasis in mouse models of melanoma through FAK1 hyperactivation.
format article
author Luca Di Leo
Valérie Bodemeyer
Francesca M. Bosisio
Giuseppina Claps
Marco Carretta
Salvatore Rizza
Fiorella Faienza
Alex Frias
Shawez Khan
Matteo Bordi
Maria P. Pacheco
Julie Di Martino
Jose J. Bravo-Cordero
Colin J. Daniel
Rosalie C. Sears
Marco Donia
Daniel H. Madsen
Per Guldberg
Giuseppe Filomeni
Thomas Sauter
Caroline Robert
Daniela De Zio
Francesco Cecconi
author_facet Luca Di Leo
Valérie Bodemeyer
Francesca M. Bosisio
Giuseppina Claps
Marco Carretta
Salvatore Rizza
Fiorella Faienza
Alex Frias
Shawez Khan
Matteo Bordi
Maria P. Pacheco
Julie Di Martino
Jose J. Bravo-Cordero
Colin J. Daniel
Rosalie C. Sears
Marco Donia
Daniel H. Madsen
Per Guldberg
Giuseppe Filomeni
Thomas Sauter
Caroline Robert
Daniela De Zio
Francesco Cecconi
author_sort Luca Di Leo
title Loss of Ambra1 promotes melanoma growth and invasion
title_short Loss of Ambra1 promotes melanoma growth and invasion
title_full Loss of Ambra1 promotes melanoma growth and invasion
title_fullStr Loss of Ambra1 promotes melanoma growth and invasion
title_full_unstemmed Loss of Ambra1 promotes melanoma growth and invasion
title_sort loss of ambra1 promotes melanoma growth and invasion
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/57c07f6892f24e98b8abf330dfb96699
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