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Caspase-generated fragment of the Met receptor favors apoptosis via the intrinsic pathway independently of its tyrosine kinase activity

The receptor tyrosine kinase Met and its ligand, the hepatocyte growth factor, are essential to embryonic development, whereas the deregulation of Met signaling is associated with tumorigenesis. While ligand-activated Met promotes survival, caspase-dependent generation of the p40 Met fragment leads...

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Autores principales: Lefebvre, J, Muharram, G, Leroy, C, Kherrouche, Z, Montagne, R, Ichim, G, Tauszig-Delamasure, S, Chotteau-Lelievre, A, Brenner, C, Mehlen, P, Tulasne, D
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2013
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3824686/
https://www.ncbi.nlm.nih.gov/pubmed/24136235
http://dx.doi.org/10.1038/cddis.2013.377
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author Lefebvre, J
Muharram, G
Leroy, C
Kherrouche, Z
Montagne, R
Ichim, G
Tauszig-Delamasure, S
Chotteau-Lelievre, A
Brenner, C
Mehlen, P
Tulasne, D
author_facet Lefebvre, J
Muharram, G
Leroy, C
Kherrouche, Z
Montagne, R
Ichim, G
Tauszig-Delamasure, S
Chotteau-Lelievre, A
Brenner, C
Mehlen, P
Tulasne, D
author_sort Lefebvre, J
collection PubMed
description The receptor tyrosine kinase Met and its ligand, the hepatocyte growth factor, are essential to embryonic development, whereas the deregulation of Met signaling is associated with tumorigenesis. While ligand-activated Met promotes survival, caspase-dependent generation of the p40 Met fragment leads to apoptosis induction – hallmark of the dependence receptor. Although the survival signaling pathways induced by Met are well described, the pro-apoptotic signaling pathways are unknown. We show that, although p40 Met contains the entire kinase domain, it accelerates apoptosis independently of kinase activity. In cell cultures undergoing apoptosis, the fragment shows a mitochondrial localization, required for p40 Met-induced cell death. Fulminant hepatic failure induced in mice leads to the generation of p40 Met localized also in the mitochondria, demonstrating caspase cleavage of Met in vivo. According to its localization, the fragment induces mitochondrial permeabilization, which is inhibited by Bak silencing and Bcl-xL overexpression. Moreover, Met silencing delays mitochondrial permeabilization induced by an apoptotic treatment. Thus, the Met-dependence receptor in addition to its well-known role in survival signaling mediated by its kinase activity, also participates in the intrinsic apoptosis pathway through the generation of p40 Met – a caspase-dependent fragment of Met implicated in the mitochondrial permeabilization process.
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spelling pubmed-38246862013-11-12 Caspase-generated fragment of the Met receptor favors apoptosis via the intrinsic pathway independently of its tyrosine kinase activity Lefebvre, J Muharram, G Leroy, C Kherrouche, Z Montagne, R Ichim, G Tauszig-Delamasure, S Chotteau-Lelievre, A Brenner, C Mehlen, P Tulasne, D Cell Death Dis Original Article The receptor tyrosine kinase Met and its ligand, the hepatocyte growth factor, are essential to embryonic development, whereas the deregulation of Met signaling is associated with tumorigenesis. While ligand-activated Met promotes survival, caspase-dependent generation of the p40 Met fragment leads to apoptosis induction – hallmark of the dependence receptor. Although the survival signaling pathways induced by Met are well described, the pro-apoptotic signaling pathways are unknown. We show that, although p40 Met contains the entire kinase domain, it accelerates apoptosis independently of kinase activity. In cell cultures undergoing apoptosis, the fragment shows a mitochondrial localization, required for p40 Met-induced cell death. Fulminant hepatic failure induced in mice leads to the generation of p40 Met localized also in the mitochondria, demonstrating caspase cleavage of Met in vivo. According to its localization, the fragment induces mitochondrial permeabilization, which is inhibited by Bak silencing and Bcl-xL overexpression. Moreover, Met silencing delays mitochondrial permeabilization induced by an apoptotic treatment. Thus, the Met-dependence receptor in addition to its well-known role in survival signaling mediated by its kinase activity, also participates in the intrinsic apoptosis pathway through the generation of p40 Met – a caspase-dependent fragment of Met implicated in the mitochondrial permeabilization process. Nature Publishing Group 2013-10 2013-10-17 /pmc/articles/PMC3824686/ /pubmed/24136235 http://dx.doi.org/10.1038/cddis.2013.377 Text en Copyright © 2013 Macmillan Publishers Limited http://creativecommons.org/licenses/by-nc-sa/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-sa/3.0/
spellingShingle Original Article
Lefebvre, J
Muharram, G
Leroy, C
Kherrouche, Z
Montagne, R
Ichim, G
Tauszig-Delamasure, S
Chotteau-Lelievre, A
Brenner, C
Mehlen, P
Tulasne, D
Caspase-generated fragment of the Met receptor favors apoptosis via the intrinsic pathway independently of its tyrosine kinase activity
title Caspase-generated fragment of the Met receptor favors apoptosis via the intrinsic pathway independently of its tyrosine kinase activity
title_full Caspase-generated fragment of the Met receptor favors apoptosis via the intrinsic pathway independently of its tyrosine kinase activity
title_fullStr Caspase-generated fragment of the Met receptor favors apoptosis via the intrinsic pathway independently of its tyrosine kinase activity
title_full_unstemmed Caspase-generated fragment of the Met receptor favors apoptosis via the intrinsic pathway independently of its tyrosine kinase activity
title_short Caspase-generated fragment of the Met receptor favors apoptosis via the intrinsic pathway independently of its tyrosine kinase activity
title_sort caspase-generated fragment of the met receptor favors apoptosis via the intrinsic pathway independently of its tyrosine kinase activity
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3824686/
https://www.ncbi.nlm.nih.gov/pubmed/24136235
http://dx.doi.org/10.1038/cddis.2013.377
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