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Postsynaptic plasticity of cholinergic synapses underlies the induction and expression of appetitive and familiarity memories in Drosophila

In vertebrates, several forms of memory-relevant synaptic plasticity involve postsynaptic rearrangements of glutamate receptors. In contrast, previous work indicates that Drosophila and other invertebrates store memories using presynaptic plasticity of cholinergic synapses. Here, we provide evidence...

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Autores principales: Pribbenow, Carlotta, Chen, Yi-chun, Heim, M-Marcel, Laber, Desiree, Reubold, Silas, Reynolds, Eric, Balles, Isabella, Fernández-d V Alquicira, Tania, Suárez-Grimalt, Raquel, Scheunemann, Lisa, Rauch, Carolin, Matkovic, Tanja, Rösner, Jörg, Lichtner, Gregor, Jagannathan, Sridhar R, Owald, David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9733945/
https://www.ncbi.nlm.nih.gov/pubmed/36250621
http://dx.doi.org/10.7554/eLife.80445
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author Pribbenow, Carlotta
Chen, Yi-chun
Heim, M-Marcel
Laber, Desiree
Reubold, Silas
Reynolds, Eric
Balles, Isabella
Fernández-d V Alquicira, Tania
Suárez-Grimalt, Raquel
Scheunemann, Lisa
Rauch, Carolin
Matkovic, Tanja
Rösner, Jörg
Lichtner, Gregor
Jagannathan, Sridhar R
Owald, David
author_facet Pribbenow, Carlotta
Chen, Yi-chun
Heim, M-Marcel
Laber, Desiree
Reubold, Silas
Reynolds, Eric
Balles, Isabella
Fernández-d V Alquicira, Tania
Suárez-Grimalt, Raquel
Scheunemann, Lisa
Rauch, Carolin
Matkovic, Tanja
Rösner, Jörg
Lichtner, Gregor
Jagannathan, Sridhar R
Owald, David
author_sort Pribbenow, Carlotta
collection PubMed
description In vertebrates, several forms of memory-relevant synaptic plasticity involve postsynaptic rearrangements of glutamate receptors. In contrast, previous work indicates that Drosophila and other invertebrates store memories using presynaptic plasticity of cholinergic synapses. Here, we provide evidence for postsynaptic plasticity at cholinergic output synapses from the Drosophila mushroom bodies (MBs). We find that the nicotinic acetylcholine receptor (nAChR) subunit α5 is required within specific MB output neurons for appetitive memory induction but is dispensable for aversive memories. In addition, nAChR α2 subunits mediate memory expression and likely function downstream of α5 and the postsynaptic scaffold protein discs large (Dlg). We show that postsynaptic plasticity traces can be induced independently of the presynapse, and that in vivo dynamics of α2 nAChR subunits are changed both in the context of associative and non-associative (familiarity) memory formation, underlying different plasticity rules. Therefore, regardless of neurotransmitter identity, key principles of postsynaptic plasticity support memory storage across phyla.
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spelling pubmed-97339452022-12-10 Postsynaptic plasticity of cholinergic synapses underlies the induction and expression of appetitive and familiarity memories in Drosophila Pribbenow, Carlotta Chen, Yi-chun Heim, M-Marcel Laber, Desiree Reubold, Silas Reynolds, Eric Balles, Isabella Fernández-d V Alquicira, Tania Suárez-Grimalt, Raquel Scheunemann, Lisa Rauch, Carolin Matkovic, Tanja Rösner, Jörg Lichtner, Gregor Jagannathan, Sridhar R Owald, David eLife Neuroscience In vertebrates, several forms of memory-relevant synaptic plasticity involve postsynaptic rearrangements of glutamate receptors. In contrast, previous work indicates that Drosophila and other invertebrates store memories using presynaptic plasticity of cholinergic synapses. Here, we provide evidence for postsynaptic plasticity at cholinergic output synapses from the Drosophila mushroom bodies (MBs). We find that the nicotinic acetylcholine receptor (nAChR) subunit α5 is required within specific MB output neurons for appetitive memory induction but is dispensable for aversive memories. In addition, nAChR α2 subunits mediate memory expression and likely function downstream of α5 and the postsynaptic scaffold protein discs large (Dlg). We show that postsynaptic plasticity traces can be induced independently of the presynapse, and that in vivo dynamics of α2 nAChR subunits are changed both in the context of associative and non-associative (familiarity) memory formation, underlying different plasticity rules. Therefore, regardless of neurotransmitter identity, key principles of postsynaptic plasticity support memory storage across phyla. eLife Sciences Publications, Ltd 2022-10-17 /pmc/articles/PMC9733945/ /pubmed/36250621 http://dx.doi.org/10.7554/eLife.80445 Text en © 2022, Pribbenow et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Neuroscience
Pribbenow, Carlotta
Chen, Yi-chun
Heim, M-Marcel
Laber, Desiree
Reubold, Silas
Reynolds, Eric
Balles, Isabella
Fernández-d V Alquicira, Tania
Suárez-Grimalt, Raquel
Scheunemann, Lisa
Rauch, Carolin
Matkovic, Tanja
Rösner, Jörg
Lichtner, Gregor
Jagannathan, Sridhar R
Owald, David
Postsynaptic plasticity of cholinergic synapses underlies the induction and expression of appetitive and familiarity memories in Drosophila
title Postsynaptic plasticity of cholinergic synapses underlies the induction and expression of appetitive and familiarity memories in Drosophila
title_full Postsynaptic plasticity of cholinergic synapses underlies the induction and expression of appetitive and familiarity memories in Drosophila
title_fullStr Postsynaptic plasticity of cholinergic synapses underlies the induction and expression of appetitive and familiarity memories in Drosophila
title_full_unstemmed Postsynaptic plasticity of cholinergic synapses underlies the induction and expression of appetitive and familiarity memories in Drosophila
title_short Postsynaptic plasticity of cholinergic synapses underlies the induction and expression of appetitive and familiarity memories in Drosophila
title_sort postsynaptic plasticity of cholinergic synapses underlies the induction and expression of appetitive and familiarity memories in drosophila
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9733945/
https://www.ncbi.nlm.nih.gov/pubmed/36250621
http://dx.doi.org/10.7554/eLife.80445
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