An ARF GTPase module promoting invasion and metastasis through regulating phosphoinositide metabolism

The signalling pathways underpinning cell growth and invasion use overlapping components, yet how mutually exclusive responses occur is unclear. Here, the authors show that alternate isoforms of the ARF GTPase exchange factor IQSEC1 direct phosphoinositide metabolism to control this switch.

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Autores principales: Marisa Nacke, Emma Sandilands, Konstantina Nikolatou, Álvaro Román-Fernández, Susan Mason, Rachana Patel, Sergio Lilla, Tamas Yelland, Laura C. A. Galbraith, Eva C. Freckmann, Lynn McGarry, Jennifer P. Morton, Emma Shanks, Hing Y. Leung, Elke Markert, Shehab Ismail, Sara Zanivan, Karen Blyth, David M. Bryant
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/5313ed90f36c4817a2437ea2428b588c
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spelling oai:doaj.org-article:5313ed90f36c4817a2437ea2428b588c2021-12-02T13:15:56ZAn ARF GTPase module promoting invasion and metastasis through regulating phosphoinositide metabolism10.1038/s41467-021-21847-42041-1723https://doaj.org/article/5313ed90f36c4817a2437ea2428b588c2021-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-21847-4https://doaj.org/toc/2041-1723The signalling pathways underpinning cell growth and invasion use overlapping components, yet how mutually exclusive responses occur is unclear. Here, the authors show that alternate isoforms of the ARF GTPase exchange factor IQSEC1 direct phosphoinositide metabolism to control this switch.Marisa NackeEmma SandilandsKonstantina NikolatouÁlvaro Román-FernándezSusan MasonRachana PatelSergio LillaTamas YellandLaura C. A. GalbraithEva C. FreckmannLynn McGarryJennifer P. MortonEmma ShanksHing Y. LeungElke MarkertShehab IsmailSara ZanivanKaren BlythDavid M. BryantNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-22 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Marisa Nacke
Emma Sandilands
Konstantina Nikolatou
Álvaro Román-Fernández
Susan Mason
Rachana Patel
Sergio Lilla
Tamas Yelland
Laura C. A. Galbraith
Eva C. Freckmann
Lynn McGarry
Jennifer P. Morton
Emma Shanks
Hing Y. Leung
Elke Markert
Shehab Ismail
Sara Zanivan
Karen Blyth
David M. Bryant
An ARF GTPase module promoting invasion and metastasis through regulating phosphoinositide metabolism
description The signalling pathways underpinning cell growth and invasion use overlapping components, yet how mutually exclusive responses occur is unclear. Here, the authors show that alternate isoforms of the ARF GTPase exchange factor IQSEC1 direct phosphoinositide metabolism to control this switch.
format article
author Marisa Nacke
Emma Sandilands
Konstantina Nikolatou
Álvaro Román-Fernández
Susan Mason
Rachana Patel
Sergio Lilla
Tamas Yelland
Laura C. A. Galbraith
Eva C. Freckmann
Lynn McGarry
Jennifer P. Morton
Emma Shanks
Hing Y. Leung
Elke Markert
Shehab Ismail
Sara Zanivan
Karen Blyth
David M. Bryant
author_facet Marisa Nacke
Emma Sandilands
Konstantina Nikolatou
Álvaro Román-Fernández
Susan Mason
Rachana Patel
Sergio Lilla
Tamas Yelland
Laura C. A. Galbraith
Eva C. Freckmann
Lynn McGarry
Jennifer P. Morton
Emma Shanks
Hing Y. Leung
Elke Markert
Shehab Ismail
Sara Zanivan
Karen Blyth
David M. Bryant
author_sort Marisa Nacke
title An ARF GTPase module promoting invasion and metastasis through regulating phosphoinositide metabolism
title_short An ARF GTPase module promoting invasion and metastasis through regulating phosphoinositide metabolism
title_full An ARF GTPase module promoting invasion and metastasis through regulating phosphoinositide metabolism
title_fullStr An ARF GTPase module promoting invasion and metastasis through regulating phosphoinositide metabolism
title_full_unstemmed An ARF GTPase module promoting invasion and metastasis through regulating phosphoinositide metabolism
title_sort arf gtpase module promoting invasion and metastasis through regulating phosphoinositide metabolism
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/5313ed90f36c4817a2437ea2428b588c
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