Cargando…

Developmental Disruption of Erbb4 in Pet1+ Neurons Impairs Serotonergic Sub-System Connectivity and Memory Formation

The serotonergic system of mammals innervates virtually all the central nervous system and regulates a broad spectrum of behavioral and physiological functions. In mammals, serotonergic neurons located in the rostral raphe nuclei encompass diverse sub-systems characterized by specific circuitry and...

Descripción completa

Detalles Bibliográficos
Autores principales: Barettino, Candela, Ballesteros-Gonzalez, Álvaro, Aylón, Andrés, Soler-Sanchis, Xavier, Ortí, Leticia, Díaz, Selene, Reillo, Isabel, García-García, Francisco, Iborra, Francisco José, Lai, Cary, Dehorter, Nathalie, Leinekugel, Xavier, Flames, Nuria, Del Pino, Isabel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8703035/
https://www.ncbi.nlm.nih.gov/pubmed/34957103
http://dx.doi.org/10.3389/fcell.2021.770458
_version_ 1784621375587090432
author Barettino, Candela
Ballesteros-Gonzalez, Álvaro
Aylón, Andrés
Soler-Sanchis, Xavier
Ortí, Leticia
Díaz, Selene
Reillo, Isabel
García-García, Francisco
Iborra, Francisco José
Lai, Cary
Dehorter, Nathalie
Leinekugel, Xavier
Flames, Nuria
Del Pino, Isabel
author_facet Barettino, Candela
Ballesteros-Gonzalez, Álvaro
Aylón, Andrés
Soler-Sanchis, Xavier
Ortí, Leticia
Díaz, Selene
Reillo, Isabel
García-García, Francisco
Iborra, Francisco José
Lai, Cary
Dehorter, Nathalie
Leinekugel, Xavier
Flames, Nuria
Del Pino, Isabel
author_sort Barettino, Candela
collection PubMed
description The serotonergic system of mammals innervates virtually all the central nervous system and regulates a broad spectrum of behavioral and physiological functions. In mammals, serotonergic neurons located in the rostral raphe nuclei encompass diverse sub-systems characterized by specific circuitry and functional features. Substantial evidence suggest that functional diversity of serotonergic circuits has a molecular and connectivity basis. However, the landscape of intrinsic developmental mechanisms guiding the formation of serotonergic sub-systems is unclear. Here, we employed developmental disruption of gene expression specific to serotonergic subsets to probe the contribution of the tyrosine kinase receptor ErbB4 to serotonergic circuit formation and function. Through an in vivo loss-of-function approach, we found that ErbB4 expression occurring in a subset of serotonergic neurons, is necessary for axonal arborization of defined long-range projections to the forebrain but is dispensable for the innervation of other targets of the serotonergic system. We also found that Erbb4-deletion does not change the global excitability or the number of neurons with serotonin content in the dorsal raphe nuclei. In addition, ErbB4-deficiency in serotonergic neurons leads to specific behavioral deficits in memory processing that involve aversive or social components. Altogether, our work unveils a developmental mechanism intrinsically acting through ErbB4 in subsets of serotonergic neurons to orchestrate a precise long-range circuit and ultimately involved in the formation of emotional and social memories.
format Online
Article
Text
id pubmed-8703035
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-87030352021-12-25 Developmental Disruption of Erbb4 in Pet1+ Neurons Impairs Serotonergic Sub-System Connectivity and Memory Formation Barettino, Candela Ballesteros-Gonzalez, Álvaro Aylón, Andrés Soler-Sanchis, Xavier Ortí, Leticia Díaz, Selene Reillo, Isabel García-García, Francisco Iborra, Francisco José Lai, Cary Dehorter, Nathalie Leinekugel, Xavier Flames, Nuria Del Pino, Isabel Front Cell Dev Biol Cell and Developmental Biology The serotonergic system of mammals innervates virtually all the central nervous system and regulates a broad spectrum of behavioral and physiological functions. In mammals, serotonergic neurons located in the rostral raphe nuclei encompass diverse sub-systems characterized by specific circuitry and functional features. Substantial evidence suggest that functional diversity of serotonergic circuits has a molecular and connectivity basis. However, the landscape of intrinsic developmental mechanisms guiding the formation of serotonergic sub-systems is unclear. Here, we employed developmental disruption of gene expression specific to serotonergic subsets to probe the contribution of the tyrosine kinase receptor ErbB4 to serotonergic circuit formation and function. Through an in vivo loss-of-function approach, we found that ErbB4 expression occurring in a subset of serotonergic neurons, is necessary for axonal arborization of defined long-range projections to the forebrain but is dispensable for the innervation of other targets of the serotonergic system. We also found that Erbb4-deletion does not change the global excitability or the number of neurons with serotonin content in the dorsal raphe nuclei. In addition, ErbB4-deficiency in serotonergic neurons leads to specific behavioral deficits in memory processing that involve aversive or social components. Altogether, our work unveils a developmental mechanism intrinsically acting through ErbB4 in subsets of serotonergic neurons to orchestrate a precise long-range circuit and ultimately involved in the formation of emotional and social memories. Frontiers Media S.A. 2021-12-10 /pmc/articles/PMC8703035/ /pubmed/34957103 http://dx.doi.org/10.3389/fcell.2021.770458 Text en Copyright © 2021 Barettino, Ballesteros-Gonzalez, Aylón, Soler-Sanchis, Ortí, Díaz, Reillo, García-García, Iborra, Lai, Dehorter, Leinekugel, Flames and Del Pino. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
Barettino, Candela
Ballesteros-Gonzalez, Álvaro
Aylón, Andrés
Soler-Sanchis, Xavier
Ortí, Leticia
Díaz, Selene
Reillo, Isabel
García-García, Francisco
Iborra, Francisco José
Lai, Cary
Dehorter, Nathalie
Leinekugel, Xavier
Flames, Nuria
Del Pino, Isabel
Developmental Disruption of Erbb4 in Pet1+ Neurons Impairs Serotonergic Sub-System Connectivity and Memory Formation
title Developmental Disruption of Erbb4 in Pet1+ Neurons Impairs Serotonergic Sub-System Connectivity and Memory Formation
title_full Developmental Disruption of Erbb4 in Pet1+ Neurons Impairs Serotonergic Sub-System Connectivity and Memory Formation
title_fullStr Developmental Disruption of Erbb4 in Pet1+ Neurons Impairs Serotonergic Sub-System Connectivity and Memory Formation
title_full_unstemmed Developmental Disruption of Erbb4 in Pet1+ Neurons Impairs Serotonergic Sub-System Connectivity and Memory Formation
title_short Developmental Disruption of Erbb4 in Pet1+ Neurons Impairs Serotonergic Sub-System Connectivity and Memory Formation
title_sort developmental disruption of erbb4 in pet1+ neurons impairs serotonergic sub-system connectivity and memory formation
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8703035/
https://www.ncbi.nlm.nih.gov/pubmed/34957103
http://dx.doi.org/10.3389/fcell.2021.770458
work_keys_str_mv AT barettinocandela developmentaldisruptionoferbb4inpet1neuronsimpairsserotonergicsubsystemconnectivityandmemoryformation
AT ballesterosgonzalezalvaro developmentaldisruptionoferbb4inpet1neuronsimpairsserotonergicsubsystemconnectivityandmemoryformation
AT aylonandres developmentaldisruptionoferbb4inpet1neuronsimpairsserotonergicsubsystemconnectivityandmemoryformation
AT solersanchisxavier developmentaldisruptionoferbb4inpet1neuronsimpairsserotonergicsubsystemconnectivityandmemoryformation
AT ortileticia developmentaldisruptionoferbb4inpet1neuronsimpairsserotonergicsubsystemconnectivityandmemoryformation
AT diazselene developmentaldisruptionoferbb4inpet1neuronsimpairsserotonergicsubsystemconnectivityandmemoryformation
AT reilloisabel developmentaldisruptionoferbb4inpet1neuronsimpairsserotonergicsubsystemconnectivityandmemoryformation
AT garciagarciafrancisco developmentaldisruptionoferbb4inpet1neuronsimpairsserotonergicsubsystemconnectivityandmemoryformation
AT iborrafranciscojose developmentaldisruptionoferbb4inpet1neuronsimpairsserotonergicsubsystemconnectivityandmemoryformation
AT laicary developmentaldisruptionoferbb4inpet1neuronsimpairsserotonergicsubsystemconnectivityandmemoryformation
AT dehorternathalie developmentaldisruptionoferbb4inpet1neuronsimpairsserotonergicsubsystemconnectivityandmemoryformation
AT leinekugelxavier developmentaldisruptionoferbb4inpet1neuronsimpairsserotonergicsubsystemconnectivityandmemoryformation
AT flamesnuria developmentaldisruptionoferbb4inpet1neuronsimpairsserotonergicsubsystemconnectivityandmemoryformation
AT delpinoisabel developmentaldisruptionoferbb4inpet1neuronsimpairsserotonergicsubsystemconnectivityandmemoryformation