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Molecular Basis of GABA Hypofunction in Adolescent Schizophrenia-Like Animals

Schizophrenia is a neurodevelopmental disorder that NMDA receptor (NMDAR) hypofunction appears centrally involved. Schizophrenia typically emerges in adolescence or early adulthood. Electrophysiological and several neurochemical changes have linked the GABA deficits to abnormal behaviors induced by...

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Autores principales: Wang, Xiaodan, Hu, Ying, Liu, Wenxin, Ma, Yuanyuan, Chen, Xi, Xue, Ting, Cui, Donghong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8062182/
https://www.ncbi.nlm.nih.gov/pubmed/33936193
http://dx.doi.org/10.1155/2021/9983438
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author Wang, Xiaodan
Hu, Ying
Liu, Wenxin
Ma, Yuanyuan
Chen, Xi
Xue, Ting
Cui, Donghong
author_facet Wang, Xiaodan
Hu, Ying
Liu, Wenxin
Ma, Yuanyuan
Chen, Xi
Xue, Ting
Cui, Donghong
author_sort Wang, Xiaodan
collection PubMed
description Schizophrenia is a neurodevelopmental disorder that NMDA receptor (NMDAR) hypofunction appears centrally involved. Schizophrenia typically emerges in adolescence or early adulthood. Electrophysiological and several neurochemical changes have linked the GABA deficits to abnormal behaviors induced by NMDAR hypofunction. However, few studies have systematically investigated the molecular basis of GABA deficits, especially during adolescence. To address this issue, we transiently administrated MK-801 to mice on PND 10, which exhibited schizophrenia-relevant deficits in adolescence. Slice recording showed reduced GABA transmission and PVI(+) hypofunction, indicating GABAergic hypofunction. Cortical proteomic evaluation combined with analysis of single cell data from the Allen Brain showed that various metabolic processes were enriched in top ranks and differentially altered in excitatory neurons, GABAergic interneurons, and glial cells. Notably, the GABA-related amino acid metabolic process was disturbed in both astrocytes and interneurons, in which we found a downregulated set of GABA-related proteins (GAD65, SYNPR, DBI, GAT3, SN1, and CPT1A). They synergistically regulate GABA synthesis, release, reuptake, and replenishment. Their downregulation indicates impaired GABA cycle and homeostasis regulated by interneuron-astrocyte communication in adolescence. Our findings on molecular basis of GABA deficits could provide potential drug targets of GABAergic rescue for early prevention and intervention.
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spelling pubmed-80621822021-04-29 Molecular Basis of GABA Hypofunction in Adolescent Schizophrenia-Like Animals Wang, Xiaodan Hu, Ying Liu, Wenxin Ma, Yuanyuan Chen, Xi Xue, Ting Cui, Donghong Neural Plast Research Article Schizophrenia is a neurodevelopmental disorder that NMDA receptor (NMDAR) hypofunction appears centrally involved. Schizophrenia typically emerges in adolescence or early adulthood. Electrophysiological and several neurochemical changes have linked the GABA deficits to abnormal behaviors induced by NMDAR hypofunction. However, few studies have systematically investigated the molecular basis of GABA deficits, especially during adolescence. To address this issue, we transiently administrated MK-801 to mice on PND 10, which exhibited schizophrenia-relevant deficits in adolescence. Slice recording showed reduced GABA transmission and PVI(+) hypofunction, indicating GABAergic hypofunction. Cortical proteomic evaluation combined with analysis of single cell data from the Allen Brain showed that various metabolic processes were enriched in top ranks and differentially altered in excitatory neurons, GABAergic interneurons, and glial cells. Notably, the GABA-related amino acid metabolic process was disturbed in both astrocytes and interneurons, in which we found a downregulated set of GABA-related proteins (GAD65, SYNPR, DBI, GAT3, SN1, and CPT1A). They synergistically regulate GABA synthesis, release, reuptake, and replenishment. Their downregulation indicates impaired GABA cycle and homeostasis regulated by interneuron-astrocyte communication in adolescence. Our findings on molecular basis of GABA deficits could provide potential drug targets of GABAergic rescue for early prevention and intervention. Hindawi 2021-04-15 /pmc/articles/PMC8062182/ /pubmed/33936193 http://dx.doi.org/10.1155/2021/9983438 Text en Copyright © 2021 Xiaodan Wang et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Wang, Xiaodan
Hu, Ying
Liu, Wenxin
Ma, Yuanyuan
Chen, Xi
Xue, Ting
Cui, Donghong
Molecular Basis of GABA Hypofunction in Adolescent Schizophrenia-Like Animals
title Molecular Basis of GABA Hypofunction in Adolescent Schizophrenia-Like Animals
title_full Molecular Basis of GABA Hypofunction in Adolescent Schizophrenia-Like Animals
title_fullStr Molecular Basis of GABA Hypofunction in Adolescent Schizophrenia-Like Animals
title_full_unstemmed Molecular Basis of GABA Hypofunction in Adolescent Schizophrenia-Like Animals
title_short Molecular Basis of GABA Hypofunction in Adolescent Schizophrenia-Like Animals
title_sort molecular basis of gaba hypofunction in adolescent schizophrenia-like animals
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8062182/
https://www.ncbi.nlm.nih.gov/pubmed/33936193
http://dx.doi.org/10.1155/2021/9983438
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