Cargando…

A Golgi-based KDELR-dependent signalling pathway controls extracellular matrix degradation

We recently identified an endomembrane-based signalling cascade that is activated by the KDEL receptor (KDELR) on the Golgi complex. At the Golgi, the KDELR acts as a traffic sensor (presumably via binding to chaperones that leave the ER) and triggers signalling pathways that balance membrane fluxes...

Descripción completa

Detalles Bibliográficos
Autores principales: Ruggiero, Carmen, Fragassi, Giorgia, Grossi, Mauro, Picciani, Benedetta, Di Martino, Rosaria, Capitani, Mirco, Buccione, Roberto, Luini, Alberto, Sallese, Michele
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4413660/
https://www.ncbi.nlm.nih.gov/pubmed/25682866
_version_ 1782368817623597056
author Ruggiero, Carmen
Fragassi, Giorgia
Grossi, Mauro
Picciani, Benedetta
Di Martino, Rosaria
Capitani, Mirco
Buccione, Roberto
Luini, Alberto
Sallese, Michele
author_facet Ruggiero, Carmen
Fragassi, Giorgia
Grossi, Mauro
Picciani, Benedetta
Di Martino, Rosaria
Capitani, Mirco
Buccione, Roberto
Luini, Alberto
Sallese, Michele
author_sort Ruggiero, Carmen
collection PubMed
description We recently identified an endomembrane-based signalling cascade that is activated by the KDEL receptor (KDELR) on the Golgi complex. At the Golgi, the KDELR acts as a traffic sensor (presumably via binding to chaperones that leave the ER) and triggers signalling pathways that balance membrane fluxes between ER and Golgi. One such pathway relies on Gq and Src. Here, we examine if KDELR might control other cellular modules through this pathway. Given the central role of Src in extracellular matrix (ECM) degradation, we investigated the impact of the KDELR-Src pathway on the ability of cancer cells to degrade the ECM. We find that activation of the KDELR controls ECM degradation by increasing the number of the degradative structures known as invadopodia. The KDELR induces Src activation at the invadopodia and leads to phosphorylation of the Src substrates cortactin and ASAP1, which are required for basal and KDELR-stimulated ECM degradation. This study furthers our understanding of the regulatory circuitry underlying invadopodia-dependent ECM degradation, a key phase in metastases formation and invasive growth.
format Online
Article
Text
id pubmed-4413660
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-44136602015-05-08 A Golgi-based KDELR-dependent signalling pathway controls extracellular matrix degradation Ruggiero, Carmen Fragassi, Giorgia Grossi, Mauro Picciani, Benedetta Di Martino, Rosaria Capitani, Mirco Buccione, Roberto Luini, Alberto Sallese, Michele Oncotarget Research Paper We recently identified an endomembrane-based signalling cascade that is activated by the KDEL receptor (KDELR) on the Golgi complex. At the Golgi, the KDELR acts as a traffic sensor (presumably via binding to chaperones that leave the ER) and triggers signalling pathways that balance membrane fluxes between ER and Golgi. One such pathway relies on Gq and Src. Here, we examine if KDELR might control other cellular modules through this pathway. Given the central role of Src in extracellular matrix (ECM) degradation, we investigated the impact of the KDELR-Src pathway on the ability of cancer cells to degrade the ECM. We find that activation of the KDELR controls ECM degradation by increasing the number of the degradative structures known as invadopodia. The KDELR induces Src activation at the invadopodia and leads to phosphorylation of the Src substrates cortactin and ASAP1, which are required for basal and KDELR-stimulated ECM degradation. This study furthers our understanding of the regulatory circuitry underlying invadopodia-dependent ECM degradation, a key phase in metastases formation and invasive growth. Impact Journals LLC 2014-12-18 /pmc/articles/PMC4413660/ /pubmed/25682866 Text en Copyright: © 2015 Ruggiero et al. http://creativecommons.org/licenses/by/2.5/ 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 credited.
spellingShingle Research Paper
Ruggiero, Carmen
Fragassi, Giorgia
Grossi, Mauro
Picciani, Benedetta
Di Martino, Rosaria
Capitani, Mirco
Buccione, Roberto
Luini, Alberto
Sallese, Michele
A Golgi-based KDELR-dependent signalling pathway controls extracellular matrix degradation
title A Golgi-based KDELR-dependent signalling pathway controls extracellular matrix degradation
title_full A Golgi-based KDELR-dependent signalling pathway controls extracellular matrix degradation
title_fullStr A Golgi-based KDELR-dependent signalling pathway controls extracellular matrix degradation
title_full_unstemmed A Golgi-based KDELR-dependent signalling pathway controls extracellular matrix degradation
title_short A Golgi-based KDELR-dependent signalling pathway controls extracellular matrix degradation
title_sort golgi-based kdelr-dependent signalling pathway controls extracellular matrix degradation
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4413660/
https://www.ncbi.nlm.nih.gov/pubmed/25682866
work_keys_str_mv AT ruggierocarmen agolgibasedkdelrdependentsignallingpathwaycontrolsextracellularmatrixdegradation
AT fragassigiorgia agolgibasedkdelrdependentsignallingpathwaycontrolsextracellularmatrixdegradation
AT grossimauro agolgibasedkdelrdependentsignallingpathwaycontrolsextracellularmatrixdegradation
AT piccianibenedetta agolgibasedkdelrdependentsignallingpathwaycontrolsextracellularmatrixdegradation
AT dimartinorosaria agolgibasedkdelrdependentsignallingpathwaycontrolsextracellularmatrixdegradation
AT capitanimirco agolgibasedkdelrdependentsignallingpathwaycontrolsextracellularmatrixdegradation
AT buccioneroberto agolgibasedkdelrdependentsignallingpathwaycontrolsextracellularmatrixdegradation
AT luinialberto agolgibasedkdelrdependentsignallingpathwaycontrolsextracellularmatrixdegradation
AT sallesemichele agolgibasedkdelrdependentsignallingpathwaycontrolsextracellularmatrixdegradation
AT ruggierocarmen golgibasedkdelrdependentsignallingpathwaycontrolsextracellularmatrixdegradation
AT fragassigiorgia golgibasedkdelrdependentsignallingpathwaycontrolsextracellularmatrixdegradation
AT grossimauro golgibasedkdelrdependentsignallingpathwaycontrolsextracellularmatrixdegradation
AT piccianibenedetta golgibasedkdelrdependentsignallingpathwaycontrolsextracellularmatrixdegradation
AT dimartinorosaria golgibasedkdelrdependentsignallingpathwaycontrolsextracellularmatrixdegradation
AT capitanimirco golgibasedkdelrdependentsignallingpathwaycontrolsextracellularmatrixdegradation
AT buccioneroberto golgibasedkdelrdependentsignallingpathwaycontrolsextracellularmatrixdegradation
AT luinialberto golgibasedkdelrdependentsignallingpathwaycontrolsextracellularmatrixdegradation
AT sallesemichele golgibasedkdelrdependentsignallingpathwaycontrolsextracellularmatrixdegradation