Cargando…

A Conserved Motif in the ITK PH-Domain Is Required for Phosphoinositide Binding and TCR Signaling but Dispensable for Adaptor Protein Interactions

Binding of the membrane phospholipid phosphatidylinositol 3,4,5-trisphosphate (PIP(3)) to the Pleckstrin Homology (PH) domain of the Tec family protein tyrosine kinase, Inducible T cell Kinase (ITK), is critical for the recruitment of the kinase to the plasma membrane and its co-localization with th...

Descripción completa

Detalles Bibliográficos
Autores principales: Hirve, Nupura, Levytskyy, Roman M., Rigaud, Stephanie, Guimond, David M., Zal, Tomasz, Sauer, Karsten, Tsoukas, Constantine D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3445557/
https://www.ncbi.nlm.nih.gov/pubmed/23028816
http://dx.doi.org/10.1371/journal.pone.0045158
_version_ 1782243839847694336
author Hirve, Nupura
Levytskyy, Roman M.
Rigaud, Stephanie
Guimond, David M.
Zal, Tomasz
Sauer, Karsten
Tsoukas, Constantine D.
author_facet Hirve, Nupura
Levytskyy, Roman M.
Rigaud, Stephanie
Guimond, David M.
Zal, Tomasz
Sauer, Karsten
Tsoukas, Constantine D.
author_sort Hirve, Nupura
collection PubMed
description Binding of the membrane phospholipid phosphatidylinositol 3,4,5-trisphosphate (PIP(3)) to the Pleckstrin Homology (PH) domain of the Tec family protein tyrosine kinase, Inducible T cell Kinase (ITK), is critical for the recruitment of the kinase to the plasma membrane and its co-localization with the TCR-CD3 molecular complex. Three aromatic residues, termed the FYF motif, located in the inner walls of the phospholipid-binding pocket of the ITK PH domain, are conserved in the PH domains of all Tec kinases, but not in other PH-domain containing proteins, suggesting an important function of the FYF motif in the Tec kinase family. However, the biological significance of the FYF amino acid motif in the ITK-PH domain is unknown. To elucidate it, we have tested the effects of a FYF triple mutant (F26S, Y90F, F92S), henceforth termed FYF-ITK mutant, on ITK function. We found that FYF triple mutation inhibits the TCR-induced production of IL-4 by impairing ITK binding to PIP(3), reducing ITK membrane recruitment, inducing conformational changes at the T cell-APC contact site, and compromising phosphorylation of ITK and subsequent phosphorylation of PLCγ(1). Interestingly, however, the FYF motif is dispensable for the interaction of ITK with two of its signaling partners, SLP-76 and LAT. Thus, the FYF mutation uncouples PIP(3)-mediated ITK membrane recruitment from the interactions of the kinase with key components of the TCR signalosome and abrogates ITK function in T cells.
format Online
Article
Text
id pubmed-3445557
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-34455572012-10-01 A Conserved Motif in the ITK PH-Domain Is Required for Phosphoinositide Binding and TCR Signaling but Dispensable for Adaptor Protein Interactions Hirve, Nupura Levytskyy, Roman M. Rigaud, Stephanie Guimond, David M. Zal, Tomasz Sauer, Karsten Tsoukas, Constantine D. PLoS One Research Article Binding of the membrane phospholipid phosphatidylinositol 3,4,5-trisphosphate (PIP(3)) to the Pleckstrin Homology (PH) domain of the Tec family protein tyrosine kinase, Inducible T cell Kinase (ITK), is critical for the recruitment of the kinase to the plasma membrane and its co-localization with the TCR-CD3 molecular complex. Three aromatic residues, termed the FYF motif, located in the inner walls of the phospholipid-binding pocket of the ITK PH domain, are conserved in the PH domains of all Tec kinases, but not in other PH-domain containing proteins, suggesting an important function of the FYF motif in the Tec kinase family. However, the biological significance of the FYF amino acid motif in the ITK-PH domain is unknown. To elucidate it, we have tested the effects of a FYF triple mutant (F26S, Y90F, F92S), henceforth termed FYF-ITK mutant, on ITK function. We found that FYF triple mutation inhibits the TCR-induced production of IL-4 by impairing ITK binding to PIP(3), reducing ITK membrane recruitment, inducing conformational changes at the T cell-APC contact site, and compromising phosphorylation of ITK and subsequent phosphorylation of PLCγ(1). Interestingly, however, the FYF motif is dispensable for the interaction of ITK with two of its signaling partners, SLP-76 and LAT. Thus, the FYF mutation uncouples PIP(3)-mediated ITK membrane recruitment from the interactions of the kinase with key components of the TCR signalosome and abrogates ITK function in T cells. Public Library of Science 2012-09-18 /pmc/articles/PMC3445557/ /pubmed/23028816 http://dx.doi.org/10.1371/journal.pone.0045158 Text en © 2012 Hirve 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
Hirve, Nupura
Levytskyy, Roman M.
Rigaud, Stephanie
Guimond, David M.
Zal, Tomasz
Sauer, Karsten
Tsoukas, Constantine D.
A Conserved Motif in the ITK PH-Domain Is Required for Phosphoinositide Binding and TCR Signaling but Dispensable for Adaptor Protein Interactions
title A Conserved Motif in the ITK PH-Domain Is Required for Phosphoinositide Binding and TCR Signaling but Dispensable for Adaptor Protein Interactions
title_full A Conserved Motif in the ITK PH-Domain Is Required for Phosphoinositide Binding and TCR Signaling but Dispensable for Adaptor Protein Interactions
title_fullStr A Conserved Motif in the ITK PH-Domain Is Required for Phosphoinositide Binding and TCR Signaling but Dispensable for Adaptor Protein Interactions
title_full_unstemmed A Conserved Motif in the ITK PH-Domain Is Required for Phosphoinositide Binding and TCR Signaling but Dispensable for Adaptor Protein Interactions
title_short A Conserved Motif in the ITK PH-Domain Is Required for Phosphoinositide Binding and TCR Signaling but Dispensable for Adaptor Protein Interactions
title_sort conserved motif in the itk ph-domain is required for phosphoinositide binding and tcr signaling but dispensable for adaptor protein interactions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3445557/
https://www.ncbi.nlm.nih.gov/pubmed/23028816
http://dx.doi.org/10.1371/journal.pone.0045158
work_keys_str_mv AT hirvenupura aconservedmotifintheitkphdomainisrequiredforphosphoinositidebindingandtcrsignalingbutdispensableforadaptorproteininteractions
AT levytskyyromanm aconservedmotifintheitkphdomainisrequiredforphosphoinositidebindingandtcrsignalingbutdispensableforadaptorproteininteractions
AT rigaudstephanie aconservedmotifintheitkphdomainisrequiredforphosphoinositidebindingandtcrsignalingbutdispensableforadaptorproteininteractions
AT guimonddavidm aconservedmotifintheitkphdomainisrequiredforphosphoinositidebindingandtcrsignalingbutdispensableforadaptorproteininteractions
AT zaltomasz aconservedmotifintheitkphdomainisrequiredforphosphoinositidebindingandtcrsignalingbutdispensableforadaptorproteininteractions
AT sauerkarsten aconservedmotifintheitkphdomainisrequiredforphosphoinositidebindingandtcrsignalingbutdispensableforadaptorproteininteractions
AT tsoukasconstantined aconservedmotifintheitkphdomainisrequiredforphosphoinositidebindingandtcrsignalingbutdispensableforadaptorproteininteractions
AT hirvenupura conservedmotifintheitkphdomainisrequiredforphosphoinositidebindingandtcrsignalingbutdispensableforadaptorproteininteractions
AT levytskyyromanm conservedmotifintheitkphdomainisrequiredforphosphoinositidebindingandtcrsignalingbutdispensableforadaptorproteininteractions
AT rigaudstephanie conservedmotifintheitkphdomainisrequiredforphosphoinositidebindingandtcrsignalingbutdispensableforadaptorproteininteractions
AT guimonddavidm conservedmotifintheitkphdomainisrequiredforphosphoinositidebindingandtcrsignalingbutdispensableforadaptorproteininteractions
AT zaltomasz conservedmotifintheitkphdomainisrequiredforphosphoinositidebindingandtcrsignalingbutdispensableforadaptorproteininteractions
AT sauerkarsten conservedmotifintheitkphdomainisrequiredforphosphoinositidebindingandtcrsignalingbutdispensableforadaptorproteininteractions
AT tsoukasconstantined conservedmotifintheitkphdomainisrequiredforphosphoinositidebindingandtcrsignalingbutdispensableforadaptorproteininteractions