Activation of endogenous FAK via expression of its amino terminal domain in Xenopus embryos.

BACKGROUND: The Focal Adhesion Kinase is a well studied tyrosine kinase involved in a wide number of cellular processes including cell adhesion and migration. It has also been shown to play important roles during embryonic development and targeted disruption of the FAK gene in mice results in embryo...

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Main Authors: Nicoletta I Petridou, Panayiota Stylianou, Neophytos Christodoulou, Daniel Rhoads, Jun-Lin Guan, Paris A Skourides
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3412797?pdf=render
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spelling doaj-3570a83bd1c8434e8a6b751b5e340eb42020-11-25T01:10:08ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0178e4257710.1371/journal.pone.0042577Activation of endogenous FAK via expression of its amino terminal domain in Xenopus embryos.Nicoletta I PetridouPanayiota StylianouNeophytos ChristodoulouDaniel RhoadsJun-Lin GuanParis A SkouridesBACKGROUND: The Focal Adhesion Kinase is a well studied tyrosine kinase involved in a wide number of cellular processes including cell adhesion and migration. It has also been shown to play important roles during embryonic development and targeted disruption of the FAK gene in mice results in embryonic lethality by day 8.5. PRINCIPAL FINDINGS: Here we examined the pattern of phosphorylation of FAK during Xenopus development and found that FAK is phosphorylated on all major tyrosine residues examined from early blastula stages well before any morphogenetic movements take place. We go on to show that FRNK fails to act as a dominant negative in the context of the early embryo and that the FERM domain has a major role in determining FAK's localization at the plasma membrane. Finally, we show that autonomous expression of the FERM domain leads to the activation of endogenous FAK in a tyrosine 397 dependent fashion. CONCLUSIONS: Overall, our data suggest an important role for the FERM domain in the activation of FAK and indicate that integrin signalling plays a limited role in the in vivo activation of FAK at least during the early stages of development.http://europepmc.org/articles/PMC3412797?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Nicoletta I Petridou
Panayiota Stylianou
Neophytos Christodoulou
Daniel Rhoads
Jun-Lin Guan
Paris A Skourides
spellingShingle Nicoletta I Petridou
Panayiota Stylianou
Neophytos Christodoulou
Daniel Rhoads
Jun-Lin Guan
Paris A Skourides
Activation of endogenous FAK via expression of its amino terminal domain in Xenopus embryos.
PLoS ONE
author_facet Nicoletta I Petridou
Panayiota Stylianou
Neophytos Christodoulou
Daniel Rhoads
Jun-Lin Guan
Paris A Skourides
author_sort Nicoletta I Petridou
title Activation of endogenous FAK via expression of its amino terminal domain in Xenopus embryos.
title_short Activation of endogenous FAK via expression of its amino terminal domain in Xenopus embryos.
title_full Activation of endogenous FAK via expression of its amino terminal domain in Xenopus embryos.
title_fullStr Activation of endogenous FAK via expression of its amino terminal domain in Xenopus embryos.
title_full_unstemmed Activation of endogenous FAK via expression of its amino terminal domain in Xenopus embryos.
title_sort activation of endogenous fak via expression of its amino terminal domain in xenopus embryos.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description BACKGROUND: The Focal Adhesion Kinase is a well studied tyrosine kinase involved in a wide number of cellular processes including cell adhesion and migration. It has also been shown to play important roles during embryonic development and targeted disruption of the FAK gene in mice results in embryonic lethality by day 8.5. PRINCIPAL FINDINGS: Here we examined the pattern of phosphorylation of FAK during Xenopus development and found that FAK is phosphorylated on all major tyrosine residues examined from early blastula stages well before any morphogenetic movements take place. We go on to show that FRNK fails to act as a dominant negative in the context of the early embryo and that the FERM domain has a major role in determining FAK's localization at the plasma membrane. Finally, we show that autonomous expression of the FERM domain leads to the activation of endogenous FAK in a tyrosine 397 dependent fashion. CONCLUSIONS: Overall, our data suggest an important role for the FERM domain in the activation of FAK and indicate that integrin signalling plays a limited role in the in vivo activation of FAK at least during the early stages of development.
url http://europepmc.org/articles/PMC3412797?pdf=render
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