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Genetically identified amygdala-striatal circuits for valence-specific behaviors

The basolateral amygdala (BLA) plays essential roles in behaviors motivated by stimuli with either positive or negative valence, but how it processes motivationally opposing information and participates in establishing valence-specific behaviors remains unclear. Here, by targeting Fezf2-expressing n...

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Autores principales: Zhang, Xian, Guan, Wuqiang, Yang, Tao, Furlan, Alessandro, Xiao, Xiong, Yu, Kai, An, Xu, Galbavy, William, Ramakrishnan, Charu, Deisseroth, Karl, Ritola, Kimberly, Hantman, Adam, He, Miao, Huang, Z Josh, Li, Bo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8556347/
https://www.ncbi.nlm.nih.gov/pubmed/34663958
http://dx.doi.org/10.1038/s41593-021-00927-0
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author Zhang, Xian
Guan, Wuqiang
Yang, Tao
Furlan, Alessandro
Xiao, Xiong
Yu, Kai
An, Xu
Galbavy, William
Ramakrishnan, Charu
Deisseroth, Karl
Ritola, Kimberly
Hantman, Adam
He, Miao
Huang, Z Josh
Li, Bo
author_facet Zhang, Xian
Guan, Wuqiang
Yang, Tao
Furlan, Alessandro
Xiao, Xiong
Yu, Kai
An, Xu
Galbavy, William
Ramakrishnan, Charu
Deisseroth, Karl
Ritola, Kimberly
Hantman, Adam
He, Miao
Huang, Z Josh
Li, Bo
author_sort Zhang, Xian
collection PubMed
description The basolateral amygdala (BLA) plays essential roles in behaviors motivated by stimuli with either positive or negative valence, but how it processes motivationally opposing information and participates in establishing valence-specific behaviors remains unclear. Here, by targeting Fezf2-expressing neurons in the BLA, we identify and characterize two functionally distinct classes in behaving mice, the negative-valence neurons and positive-valence neurons, which innately represent aversive and rewarding stimuli, respectively, and through learning acquire predictive responses that are essential for punishment avoidance or reward seeking. Notably, these two classes of neurons receive inputs from separate sets of sensory and limbic areas, and convey punishment and reward information through projections to the nucleus accumbens and olfactory tubercle, respectively, to drive negative and positive reinforcement. Thus, valence-specific BLA neurons are wired with distinctive input/output structures, forming a circuit framework that supports BLA’s roles in encoding, learning and executing valence-specific motivated behaviors.
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spelling pubmed-85563472022-04-18 Genetically identified amygdala-striatal circuits for valence-specific behaviors Zhang, Xian Guan, Wuqiang Yang, Tao Furlan, Alessandro Xiao, Xiong Yu, Kai An, Xu Galbavy, William Ramakrishnan, Charu Deisseroth, Karl Ritola, Kimberly Hantman, Adam He, Miao Huang, Z Josh Li, Bo Nat Neurosci Article The basolateral amygdala (BLA) plays essential roles in behaviors motivated by stimuli with either positive or negative valence, but how it processes motivationally opposing information and participates in establishing valence-specific behaviors remains unclear. Here, by targeting Fezf2-expressing neurons in the BLA, we identify and characterize two functionally distinct classes in behaving mice, the negative-valence neurons and positive-valence neurons, which innately represent aversive and rewarding stimuli, respectively, and through learning acquire predictive responses that are essential for punishment avoidance or reward seeking. Notably, these two classes of neurons receive inputs from separate sets of sensory and limbic areas, and convey punishment and reward information through projections to the nucleus accumbens and olfactory tubercle, respectively, to drive negative and positive reinforcement. Thus, valence-specific BLA neurons are wired with distinctive input/output structures, forming a circuit framework that supports BLA’s roles in encoding, learning and executing valence-specific motivated behaviors. 2021-10-18 2021-11 /pmc/articles/PMC8556347/ /pubmed/34663958 http://dx.doi.org/10.1038/s41593-021-00927-0 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: https://www.springernature.com/gp/open-research/policies/accepted-manuscript-terms
spellingShingle Article
Zhang, Xian
Guan, Wuqiang
Yang, Tao
Furlan, Alessandro
Xiao, Xiong
Yu, Kai
An, Xu
Galbavy, William
Ramakrishnan, Charu
Deisseroth, Karl
Ritola, Kimberly
Hantman, Adam
He, Miao
Huang, Z Josh
Li, Bo
Genetically identified amygdala-striatal circuits for valence-specific behaviors
title Genetically identified amygdala-striatal circuits for valence-specific behaviors
title_full Genetically identified amygdala-striatal circuits for valence-specific behaviors
title_fullStr Genetically identified amygdala-striatal circuits for valence-specific behaviors
title_full_unstemmed Genetically identified amygdala-striatal circuits for valence-specific behaviors
title_short Genetically identified amygdala-striatal circuits for valence-specific behaviors
title_sort genetically identified amygdala-striatal circuits for valence-specific behaviors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8556347/
https://www.ncbi.nlm.nih.gov/pubmed/34663958
http://dx.doi.org/10.1038/s41593-021-00927-0
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