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Alix is required for activity-dependent bulk endocytosis at brain synapses

In chemical synapses undergoing high frequency stimulation, vesicle components can be retrieved from the plasma membrane via a clathrin-independent process called activity-dependent bulk endocytosis (ADBE). Alix (ALG-2-interacting protein X/PDCD6IP) is an adaptor protein binding to ESCRT and endophi...

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Autores principales: Laporte, Marine H., Chi, Kwang Il, Caudal, Laura C., Zhao, Na, Schwarz, Yvonne, Rolland, Marta, Martinez-Hernandez, José, Martineau, Magalie, Chatellard, Christine, Denarier, Eric, Mercier, Vincent, Lemaître, Florent, Blot, Béatrice, Moutaux, Eve, Cazorla, Maxime, Perrais, David, Lanté, Fabien, Bruns, Dieter, Fraboulet, Sandrine, Hemming, Fiona J., Kirchhoff, Frank, Sadoul, Rémy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9200306/
https://www.ncbi.nlm.nih.gov/pubmed/35658004
http://dx.doi.org/10.1371/journal.pbio.3001659
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author Laporte, Marine H.
Chi, Kwang Il
Caudal, Laura C.
Zhao, Na
Schwarz, Yvonne
Rolland, Marta
Martinez-Hernandez, José
Martineau, Magalie
Chatellard, Christine
Denarier, Eric
Mercier, Vincent
Lemaître, Florent
Blot, Béatrice
Moutaux, Eve
Cazorla, Maxime
Perrais, David
Lanté, Fabien
Bruns, Dieter
Fraboulet, Sandrine
Hemming, Fiona J.
Kirchhoff, Frank
Sadoul, Rémy
author_facet Laporte, Marine H.
Chi, Kwang Il
Caudal, Laura C.
Zhao, Na
Schwarz, Yvonne
Rolland, Marta
Martinez-Hernandez, José
Martineau, Magalie
Chatellard, Christine
Denarier, Eric
Mercier, Vincent
Lemaître, Florent
Blot, Béatrice
Moutaux, Eve
Cazorla, Maxime
Perrais, David
Lanté, Fabien
Bruns, Dieter
Fraboulet, Sandrine
Hemming, Fiona J.
Kirchhoff, Frank
Sadoul, Rémy
author_sort Laporte, Marine H.
collection PubMed
description In chemical synapses undergoing high frequency stimulation, vesicle components can be retrieved from the plasma membrane via a clathrin-independent process called activity-dependent bulk endocytosis (ADBE). Alix (ALG-2-interacting protein X/PDCD6IP) is an adaptor protein binding to ESCRT and endophilin-A proteins which is required for clathrin-independent endocytosis in fibroblasts. Alix is expressed in neurons and concentrates at synapses during epileptic seizures. Here, we used cultured neurons to show that Alix is recruited to presynapses where it interacts with and concentrates endophilin-A during conditions triggering ADBE. Using Alix knockout (ko) neurons, we showed that this recruitment, which requires interaction with the calcium-binding protein ALG-2, is necessary for ADBE. We also found that presynaptic compartments of Alix ko hippocampi display subtle morphological defects compatible with flawed synaptic activity and plasticity detected electrophysiologically. Furthermore, mice lacking Alix in the forebrain undergo less seizures during kainate-induced status epilepticus and reduced propagation of the epileptiform activity. These results thus show that impairment of ADBE due to the lack of neuronal Alix leads to abnormal synaptic recovery during physiological or pathological repeated stimulations.
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spelling pubmed-92003062022-06-16 Alix is required for activity-dependent bulk endocytosis at brain synapses Laporte, Marine H. Chi, Kwang Il Caudal, Laura C. Zhao, Na Schwarz, Yvonne Rolland, Marta Martinez-Hernandez, José Martineau, Magalie Chatellard, Christine Denarier, Eric Mercier, Vincent Lemaître, Florent Blot, Béatrice Moutaux, Eve Cazorla, Maxime Perrais, David Lanté, Fabien Bruns, Dieter Fraboulet, Sandrine Hemming, Fiona J. Kirchhoff, Frank Sadoul, Rémy PLoS Biol Research Article In chemical synapses undergoing high frequency stimulation, vesicle components can be retrieved from the plasma membrane via a clathrin-independent process called activity-dependent bulk endocytosis (ADBE). Alix (ALG-2-interacting protein X/PDCD6IP) is an adaptor protein binding to ESCRT and endophilin-A proteins which is required for clathrin-independent endocytosis in fibroblasts. Alix is expressed in neurons and concentrates at synapses during epileptic seizures. Here, we used cultured neurons to show that Alix is recruited to presynapses where it interacts with and concentrates endophilin-A during conditions triggering ADBE. Using Alix knockout (ko) neurons, we showed that this recruitment, which requires interaction with the calcium-binding protein ALG-2, is necessary for ADBE. We also found that presynaptic compartments of Alix ko hippocampi display subtle morphological defects compatible with flawed synaptic activity and plasticity detected electrophysiologically. Furthermore, mice lacking Alix in the forebrain undergo less seizures during kainate-induced status epilepticus and reduced propagation of the epileptiform activity. These results thus show that impairment of ADBE due to the lack of neuronal Alix leads to abnormal synaptic recovery during physiological or pathological repeated stimulations. Public Library of Science 2022-06-03 /pmc/articles/PMC9200306/ /pubmed/35658004 http://dx.doi.org/10.1371/journal.pbio.3001659 Text en © 2022 Laporte et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Laporte, Marine H.
Chi, Kwang Il
Caudal, Laura C.
Zhao, Na
Schwarz, Yvonne
Rolland, Marta
Martinez-Hernandez, José
Martineau, Magalie
Chatellard, Christine
Denarier, Eric
Mercier, Vincent
Lemaître, Florent
Blot, Béatrice
Moutaux, Eve
Cazorla, Maxime
Perrais, David
Lanté, Fabien
Bruns, Dieter
Fraboulet, Sandrine
Hemming, Fiona J.
Kirchhoff, Frank
Sadoul, Rémy
Alix is required for activity-dependent bulk endocytosis at brain synapses
title Alix is required for activity-dependent bulk endocytosis at brain synapses
title_full Alix is required for activity-dependent bulk endocytosis at brain synapses
title_fullStr Alix is required for activity-dependent bulk endocytosis at brain synapses
title_full_unstemmed Alix is required for activity-dependent bulk endocytosis at brain synapses
title_short Alix is required for activity-dependent bulk endocytosis at brain synapses
title_sort alix is required for activity-dependent bulk endocytosis at brain synapses
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9200306/
https://www.ncbi.nlm.nih.gov/pubmed/35658004
http://dx.doi.org/10.1371/journal.pbio.3001659
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