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PKCβ Phosphorylates PI3Kγ to Activate It and Release It from GPCR Control

All class I phosphoinositide 3-kinases (PI3Ks) associate tightly with regulatory subunits through interactions that have been thought to be constitutive. PI3Kγ is key to the regulation of immune cell responses activated by G protein-coupled receptors (GPCRs). Remarkably we find that PKCβ phosphoryla...

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Autores principales: Walser, Romy, Burke, John E., Gogvadze, Elena, Bohnacker, Thomas, Zhang, Xuxiao, Hess, Daniel, Küenzi, Peter, Leitges, Michael, Hirsch, Emilio, Williams, Roger L., Laffargue, Muriel, Wymann, Matthias P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3692425/
https://www.ncbi.nlm.nih.gov/pubmed/23824069
http://dx.doi.org/10.1371/journal.pbio.1001587
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author Walser, Romy
Burke, John E.
Gogvadze, Elena
Bohnacker, Thomas
Zhang, Xuxiao
Hess, Daniel
Küenzi, Peter
Leitges, Michael
Hirsch, Emilio
Williams, Roger L.
Laffargue, Muriel
Wymann, Matthias P.
author_facet Walser, Romy
Burke, John E.
Gogvadze, Elena
Bohnacker, Thomas
Zhang, Xuxiao
Hess, Daniel
Küenzi, Peter
Leitges, Michael
Hirsch, Emilio
Williams, Roger L.
Laffargue, Muriel
Wymann, Matthias P.
author_sort Walser, Romy
collection PubMed
description All class I phosphoinositide 3-kinases (PI3Ks) associate tightly with regulatory subunits through interactions that have been thought to be constitutive. PI3Kγ is key to the regulation of immune cell responses activated by G protein-coupled receptors (GPCRs). Remarkably we find that PKCβ phosphorylates Ser582 in the helical domain of the PI3Kγ catalytic subunit p110γ in response to clustering of the high-affinity IgE receptor (FcεRI) and/or store-operated Ca(2+)- influx in mast cells. Phosphorylation of p110γ correlates with the release of the p84 PI3Kγ adapter subunit from the p84-p110γ complex. Ser582 phospho-mimicking mutants show increased p110γ activity and a reduced binding to the p84 adapter subunit. As functional p84-p110γ is key to GPCR-mediated p110γ signaling, this suggests that PKCβ-mediated p110γ phosphorylation disconnects PI3Kγ from its canonical inputs from trimeric G proteins, and enables p110γ to operate downstream of Ca(2+) and PKCβ. Hydrogen deuterium exchange mass spectrometry shows that the p84 adaptor subunit interacts with the p110γ helical domain, and reveals an unexpected mechanism of PI3Kγ regulation. Our data show that the interaction of p110γ with its adapter subunit is vulnerable to phosphorylation, and outline a novel level of PI3K control.
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spelling pubmed-36924252013-07-02 PKCβ Phosphorylates PI3Kγ to Activate It and Release It from GPCR Control Walser, Romy Burke, John E. Gogvadze, Elena Bohnacker, Thomas Zhang, Xuxiao Hess, Daniel Küenzi, Peter Leitges, Michael Hirsch, Emilio Williams, Roger L. Laffargue, Muriel Wymann, Matthias P. PLoS Biol Research Article All class I phosphoinositide 3-kinases (PI3Ks) associate tightly with regulatory subunits through interactions that have been thought to be constitutive. PI3Kγ is key to the regulation of immune cell responses activated by G protein-coupled receptors (GPCRs). Remarkably we find that PKCβ phosphorylates Ser582 in the helical domain of the PI3Kγ catalytic subunit p110γ in response to clustering of the high-affinity IgE receptor (FcεRI) and/or store-operated Ca(2+)- influx in mast cells. Phosphorylation of p110γ correlates with the release of the p84 PI3Kγ adapter subunit from the p84-p110γ complex. Ser582 phospho-mimicking mutants show increased p110γ activity and a reduced binding to the p84 adapter subunit. As functional p84-p110γ is key to GPCR-mediated p110γ signaling, this suggests that PKCβ-mediated p110γ phosphorylation disconnects PI3Kγ from its canonical inputs from trimeric G proteins, and enables p110γ to operate downstream of Ca(2+) and PKCβ. Hydrogen deuterium exchange mass spectrometry shows that the p84 adaptor subunit interacts with the p110γ helical domain, and reveals an unexpected mechanism of PI3Kγ regulation. Our data show that the interaction of p110γ with its adapter subunit is vulnerable to phosphorylation, and outline a novel level of PI3K control. Public Library of Science 2013-06-25 /pmc/articles/PMC3692425/ /pubmed/23824069 http://dx.doi.org/10.1371/journal.pbio.1001587 Text en © 2013 Walser et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Walser, Romy
Burke, John E.
Gogvadze, Elena
Bohnacker, Thomas
Zhang, Xuxiao
Hess, Daniel
Küenzi, Peter
Leitges, Michael
Hirsch, Emilio
Williams, Roger L.
Laffargue, Muriel
Wymann, Matthias P.
PKCβ Phosphorylates PI3Kγ to Activate It and Release It from GPCR Control
title PKCβ Phosphorylates PI3Kγ to Activate It and Release It from GPCR Control
title_full PKCβ Phosphorylates PI3Kγ to Activate It and Release It from GPCR Control
title_fullStr PKCβ Phosphorylates PI3Kγ to Activate It and Release It from GPCR Control
title_full_unstemmed PKCβ Phosphorylates PI3Kγ to Activate It and Release It from GPCR Control
title_short PKCβ Phosphorylates PI3Kγ to Activate It and Release It from GPCR Control
title_sort pkcβ phosphorylates pi3kγ to activate it and release it from gpcr control
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3692425/
https://www.ncbi.nlm.nih.gov/pubmed/23824069
http://dx.doi.org/10.1371/journal.pbio.1001587
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