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CHL1 Is a Selective Organizer of the Presynaptic Machinery Chaperoning the SNARE Complex

Proteins constituting the presynaptic machinery of vesicle release undergo substantial conformational changes during the process of exocytosis. While changes in the conformation make proteins vulnerable to aggregation and degradation, little is known about synaptic chaperones which counteract these...

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Autores principales: Andreyeva, Aksana, Leshchyns'ka, Iryna, Knepper, Michael, Betzel, Christian, Redecke, Lars, Sytnyk, Vladimir, Schachner, Melitta
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2920317/
https://www.ncbi.nlm.nih.gov/pubmed/20711454
http://dx.doi.org/10.1371/journal.pone.0012018
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author Andreyeva, Aksana
Leshchyns'ka, Iryna
Knepper, Michael
Betzel, Christian
Redecke, Lars
Sytnyk, Vladimir
Schachner, Melitta
author_facet Andreyeva, Aksana
Leshchyns'ka, Iryna
Knepper, Michael
Betzel, Christian
Redecke, Lars
Sytnyk, Vladimir
Schachner, Melitta
author_sort Andreyeva, Aksana
collection PubMed
description Proteins constituting the presynaptic machinery of vesicle release undergo substantial conformational changes during the process of exocytosis. While changes in the conformation make proteins vulnerable to aggregation and degradation, little is known about synaptic chaperones which counteract these processes. We show that the cell adhesion molecule CHL1 directly interacts with and regulates the activity of the synaptic chaperones Hsc70, CSP and αSGT. CHL1, Hsc70, CSP and αSGT form predominantly CHL1/Hsc70/αSGT and CHL1/CSP complexes in synapses. Among the various complexes formed by CHL1, Hsc70, CSP and αSGT, SNAP25 and VAMP2 induce chaperone activity only in CHL1/Hsc70/αSGT and CHL1/CSP complexes, respectively, indicating a remarkable selectivity of a presynaptic chaperone activity for proteins of the exocytotic machinery. In mice with genetic ablation of CHL1, chaperone activity in synapses is reduced and the machinery for synaptic vesicle exocytosis and, in particular, the SNARE complex is unable to sustain prolonged synaptic activity. Thus, we reveal a novel role for a cell adhesion molecule in selective activation of the presynaptic chaperone machinery.
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spelling pubmed-29203172010-08-13 CHL1 Is a Selective Organizer of the Presynaptic Machinery Chaperoning the SNARE Complex Andreyeva, Aksana Leshchyns'ka, Iryna Knepper, Michael Betzel, Christian Redecke, Lars Sytnyk, Vladimir Schachner, Melitta PLoS One Research Article Proteins constituting the presynaptic machinery of vesicle release undergo substantial conformational changes during the process of exocytosis. While changes in the conformation make proteins vulnerable to aggregation and degradation, little is known about synaptic chaperones which counteract these processes. We show that the cell adhesion molecule CHL1 directly interacts with and regulates the activity of the synaptic chaperones Hsc70, CSP and αSGT. CHL1, Hsc70, CSP and αSGT form predominantly CHL1/Hsc70/αSGT and CHL1/CSP complexes in synapses. Among the various complexes formed by CHL1, Hsc70, CSP and αSGT, SNAP25 and VAMP2 induce chaperone activity only in CHL1/Hsc70/αSGT and CHL1/CSP complexes, respectively, indicating a remarkable selectivity of a presynaptic chaperone activity for proteins of the exocytotic machinery. In mice with genetic ablation of CHL1, chaperone activity in synapses is reduced and the machinery for synaptic vesicle exocytosis and, in particular, the SNARE complex is unable to sustain prolonged synaptic activity. Thus, we reveal a novel role for a cell adhesion molecule in selective activation of the presynaptic chaperone machinery. Public Library of Science 2010-08-11 /pmc/articles/PMC2920317/ /pubmed/20711454 http://dx.doi.org/10.1371/journal.pone.0012018 Text en Andreyeva 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
Andreyeva, Aksana
Leshchyns'ka, Iryna
Knepper, Michael
Betzel, Christian
Redecke, Lars
Sytnyk, Vladimir
Schachner, Melitta
CHL1 Is a Selective Organizer of the Presynaptic Machinery Chaperoning the SNARE Complex
title CHL1 Is a Selective Organizer of the Presynaptic Machinery Chaperoning the SNARE Complex
title_full CHL1 Is a Selective Organizer of the Presynaptic Machinery Chaperoning the SNARE Complex
title_fullStr CHL1 Is a Selective Organizer of the Presynaptic Machinery Chaperoning the SNARE Complex
title_full_unstemmed CHL1 Is a Selective Organizer of the Presynaptic Machinery Chaperoning the SNARE Complex
title_short CHL1 Is a Selective Organizer of the Presynaptic Machinery Chaperoning the SNARE Complex
title_sort chl1 is a selective organizer of the presynaptic machinery chaperoning the snare complex
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2920317/
https://www.ncbi.nlm.nih.gov/pubmed/20711454
http://dx.doi.org/10.1371/journal.pone.0012018
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