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Borna disease virus docks on neuronal DNA double-strand breaks to replicate and dampens neuronal activity

Borna disease viruses (BoDV) have recently emerged as zoonotic neurotropic pathogens. These persistent RNA viruses assemble nuclear replication centers (vSPOT) in close interaction with the host chromatin. However, the topology of this interaction and its consequences on neuronal function remain une...

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Autores principales: Marty, Florent Henri, Bettamin, Luca, Thouard, Anne, Bourgade, Karine, Allart, Sophie, Larrieu, Guilhem, Malnou, Cécile Evelyne, Gonzalez-Dunia, Daniel, Suberbielle, Elsa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8724971/
https://www.ncbi.nlm.nih.gov/pubmed/35024577
http://dx.doi.org/10.1016/j.isci.2021.103621
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author Marty, Florent Henri
Bettamin, Luca
Thouard, Anne
Bourgade, Karine
Allart, Sophie
Larrieu, Guilhem
Malnou, Cécile Evelyne
Gonzalez-Dunia, Daniel
Suberbielle, Elsa
author_facet Marty, Florent Henri
Bettamin, Luca
Thouard, Anne
Bourgade, Karine
Allart, Sophie
Larrieu, Guilhem
Malnou, Cécile Evelyne
Gonzalez-Dunia, Daniel
Suberbielle, Elsa
author_sort Marty, Florent Henri
collection PubMed
description Borna disease viruses (BoDV) have recently emerged as zoonotic neurotropic pathogens. These persistent RNA viruses assemble nuclear replication centers (vSPOT) in close interaction with the host chromatin. However, the topology of this interaction and its consequences on neuronal function remain unexplored. In neurons, DNA double-strand breaks (DSB) have been identified as novel epigenetic mechanisms regulating neurotransmission and cognition. Activity-dependent DSB contribute critically to neuronal plasticity processes, which could be impaired upon infection. Here, we show that BoDV-1 infection, or the singled-out expression of viral Nucleoprotein and Phosphoprotein, increases neuronal DSB levels. Of interest, inducing DSB promoted the recruitment anew of vSPOT colocalized with DSB and increased viral RNA replication. BoDV-1 persistence decreased neuronal activity and response to stimulation by dampening the surface expression of glutamate receptors. Taken together, our results propose an original mechanistic cross talk between persistence of an RNA virus and neuronal function, through the control of DSB levels.
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spelling pubmed-87249712022-01-11 Borna disease virus docks on neuronal DNA double-strand breaks to replicate and dampens neuronal activity Marty, Florent Henri Bettamin, Luca Thouard, Anne Bourgade, Karine Allart, Sophie Larrieu, Guilhem Malnou, Cécile Evelyne Gonzalez-Dunia, Daniel Suberbielle, Elsa iScience Article Borna disease viruses (BoDV) have recently emerged as zoonotic neurotropic pathogens. These persistent RNA viruses assemble nuclear replication centers (vSPOT) in close interaction with the host chromatin. However, the topology of this interaction and its consequences on neuronal function remain unexplored. In neurons, DNA double-strand breaks (DSB) have been identified as novel epigenetic mechanisms regulating neurotransmission and cognition. Activity-dependent DSB contribute critically to neuronal plasticity processes, which could be impaired upon infection. Here, we show that BoDV-1 infection, or the singled-out expression of viral Nucleoprotein and Phosphoprotein, increases neuronal DSB levels. Of interest, inducing DSB promoted the recruitment anew of vSPOT colocalized with DSB and increased viral RNA replication. BoDV-1 persistence decreased neuronal activity and response to stimulation by dampening the surface expression of glutamate receptors. Taken together, our results propose an original mechanistic cross talk between persistence of an RNA virus and neuronal function, through the control of DSB levels. Elsevier 2021-12-16 /pmc/articles/PMC8724971/ /pubmed/35024577 http://dx.doi.org/10.1016/j.isci.2021.103621 Text en © 2021 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Marty, Florent Henri
Bettamin, Luca
Thouard, Anne
Bourgade, Karine
Allart, Sophie
Larrieu, Guilhem
Malnou, Cécile Evelyne
Gonzalez-Dunia, Daniel
Suberbielle, Elsa
Borna disease virus docks on neuronal DNA double-strand breaks to replicate and dampens neuronal activity
title Borna disease virus docks on neuronal DNA double-strand breaks to replicate and dampens neuronal activity
title_full Borna disease virus docks on neuronal DNA double-strand breaks to replicate and dampens neuronal activity
title_fullStr Borna disease virus docks on neuronal DNA double-strand breaks to replicate and dampens neuronal activity
title_full_unstemmed Borna disease virus docks on neuronal DNA double-strand breaks to replicate and dampens neuronal activity
title_short Borna disease virus docks on neuronal DNA double-strand breaks to replicate and dampens neuronal activity
title_sort borna disease virus docks on neuronal dna double-strand breaks to replicate and dampens neuronal activity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8724971/
https://www.ncbi.nlm.nih.gov/pubmed/35024577
http://dx.doi.org/10.1016/j.isci.2021.103621
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