Cargando…

Coupling of Gab1 to C-Met, Grb2, and Shp2 Mediates Biological Responses

Gab1 is a substrate of the receptor tyrosine kinase c-Met and involved in c-Met–specific branching morphogenesis. It associates directly with c-Met via the c-Met–binding domain, which is not related to known phosphotyrosine-binding domains. In addition, Gab1 is engaged in a constitutive complex with...

Descripción completa

Detalles Bibliográficos
Autores principales: Schaeper, Ute, Gehring, Niels H., Fuchs, Klaus P., Sachs, Martin, Kempkes, Bettina, Birchmeier, Walter
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2000
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2175135/
https://www.ncbi.nlm.nih.gov/pubmed/10871282
_version_ 1782145421814005760
author Schaeper, Ute
Gehring, Niels H.
Fuchs, Klaus P.
Sachs, Martin
Kempkes, Bettina
Birchmeier, Walter
author_facet Schaeper, Ute
Gehring, Niels H.
Fuchs, Klaus P.
Sachs, Martin
Kempkes, Bettina
Birchmeier, Walter
author_sort Schaeper, Ute
collection PubMed
description Gab1 is a substrate of the receptor tyrosine kinase c-Met and involved in c-Met–specific branching morphogenesis. It associates directly with c-Met via the c-Met–binding domain, which is not related to known phosphotyrosine-binding domains. In addition, Gab1 is engaged in a constitutive complex with the adaptor protein Grb2. We have now mapped the c-Met and Grb2 interaction sites using reverse yeast two-hybrid technology. The c-Met–binding site is localized to a 13–amino acid region unique to Gab1. Insertion of this site into the Gab1-related protein p97/Gab2 was sufficient to confer c-Met–binding activity. Association with Grb2 was mapped to two sites: a classical SH3-binding site (PXXP) and a novel Grb2 SH3 consensus-binding motif (PX(V/I)(D/N)RXXKP). To detect phosphorylation-dependent interactions of Gab1 with downstream substrates, we developed a modified yeast two-hybrid assay and identified PI(3)K, Shc, Shp2, and CRKL as interaction partners of Gab1. In a trk-met-Gab1–specific branching morphogenesis assay, association of Gab1 with Shp2, but not PI(3)K, CRKL, or Shc was essential to induce a biological response in MDCK cells. Overexpression of a Gab1 mutant deficient in Shp2 interaction could also block HGF/SF-induced activation of the MAPK pathway, suggesting that Shp2 is critical for c-Met/Gab1-specific signaling.
format Text
id pubmed-2175135
institution National Center for Biotechnology Information
language English
publishDate 2000
publisher The Rockefeller University Press
record_format MEDLINE/PubMed
spelling pubmed-21751352008-05-01 Coupling of Gab1 to C-Met, Grb2, and Shp2 Mediates Biological Responses Schaeper, Ute Gehring, Niels H. Fuchs, Klaus P. Sachs, Martin Kempkes, Bettina Birchmeier, Walter J Cell Biol Original Article Gab1 is a substrate of the receptor tyrosine kinase c-Met and involved in c-Met–specific branching morphogenesis. It associates directly with c-Met via the c-Met–binding domain, which is not related to known phosphotyrosine-binding domains. In addition, Gab1 is engaged in a constitutive complex with the adaptor protein Grb2. We have now mapped the c-Met and Grb2 interaction sites using reverse yeast two-hybrid technology. The c-Met–binding site is localized to a 13–amino acid region unique to Gab1. Insertion of this site into the Gab1-related protein p97/Gab2 was sufficient to confer c-Met–binding activity. Association with Grb2 was mapped to two sites: a classical SH3-binding site (PXXP) and a novel Grb2 SH3 consensus-binding motif (PX(V/I)(D/N)RXXKP). To detect phosphorylation-dependent interactions of Gab1 with downstream substrates, we developed a modified yeast two-hybrid assay and identified PI(3)K, Shc, Shp2, and CRKL as interaction partners of Gab1. In a trk-met-Gab1–specific branching morphogenesis assay, association of Gab1 with Shp2, but not PI(3)K, CRKL, or Shc was essential to induce a biological response in MDCK cells. Overexpression of a Gab1 mutant deficient in Shp2 interaction could also block HGF/SF-induced activation of the MAPK pathway, suggesting that Shp2 is critical for c-Met/Gab1-specific signaling. The Rockefeller University Press 2000-06-26 /pmc/articles/PMC2175135/ /pubmed/10871282 Text en © 2000 The Rockefeller University Press This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Original Article
Schaeper, Ute
Gehring, Niels H.
Fuchs, Klaus P.
Sachs, Martin
Kempkes, Bettina
Birchmeier, Walter
Coupling of Gab1 to C-Met, Grb2, and Shp2 Mediates Biological Responses
title Coupling of Gab1 to C-Met, Grb2, and Shp2 Mediates Biological Responses
title_full Coupling of Gab1 to C-Met, Grb2, and Shp2 Mediates Biological Responses
title_fullStr Coupling of Gab1 to C-Met, Grb2, and Shp2 Mediates Biological Responses
title_full_unstemmed Coupling of Gab1 to C-Met, Grb2, and Shp2 Mediates Biological Responses
title_short Coupling of Gab1 to C-Met, Grb2, and Shp2 Mediates Biological Responses
title_sort coupling of gab1 to c-met, grb2, and shp2 mediates biological responses
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2175135/
https://www.ncbi.nlm.nih.gov/pubmed/10871282
work_keys_str_mv AT schaeperute couplingofgab1tocmetgrb2andshp2mediatesbiologicalresponses
AT gehringnielsh couplingofgab1tocmetgrb2andshp2mediatesbiologicalresponses
AT fuchsklausp couplingofgab1tocmetgrb2andshp2mediatesbiologicalresponses
AT sachsmartin couplingofgab1tocmetgrb2andshp2mediatesbiologicalresponses
AT kempkesbettina couplingofgab1tocmetgrb2andshp2mediatesbiologicalresponses
AT birchmeierwalter couplingofgab1tocmetgrb2andshp2mediatesbiologicalresponses