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Prolonged Ketamine Effects in Sp4 Hypomorphic Mice: Mimicking Phenotypes of Schizophrenia

It has been well established that schizophrenia patients display impaired NMDA receptor (NMDAR) functions as well as exacerbation of symptoms in response to NMDAR antagonists. Abnormal NMDAR signaling presumably contributes to cognitive deficits which substantially contribute to functional disabilit...

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Autores principales: Ji, Baohu, Wang, Xin, Pinto-Duarte, Antonio, Kim, Minjung, Caldwell, Sorana, Young, Jared W., Behrens, Margarita M., Sejnowski, Terrence J., Geyer, Mark A., Zhou, Xianjin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3688895/
https://www.ncbi.nlm.nih.gov/pubmed/23823008
http://dx.doi.org/10.1371/journal.pone.0066327
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author Ji, Baohu
Wang, Xin
Pinto-Duarte, Antonio
Kim, Minjung
Caldwell, Sorana
Young, Jared W.
Behrens, Margarita M.
Sejnowski, Terrence J.
Geyer, Mark A.
Zhou, Xianjin
author_facet Ji, Baohu
Wang, Xin
Pinto-Duarte, Antonio
Kim, Minjung
Caldwell, Sorana
Young, Jared W.
Behrens, Margarita M.
Sejnowski, Terrence J.
Geyer, Mark A.
Zhou, Xianjin
author_sort Ji, Baohu
collection PubMed
description It has been well established that schizophrenia patients display impaired NMDA receptor (NMDAR) functions as well as exacerbation of symptoms in response to NMDAR antagonists. Abnormal NMDAR signaling presumably contributes to cognitive deficits which substantially contribute to functional disability in schizophrenia. Establishing a mouse genetic model will help investigate molecular mechanisms of hypoglutmatergic neurotransmission in schizophrenia. Here, we examined the responses of Sp4 hypomorphic mice to NMDAR antagonists in electroencephalography and various behavioral paradigms. Sp4 hypomorphic mice, previously reported to have reduced NMDAR1 expression and LTP deficit in hippocampal CA1, displayed increased sensitivity and prolonged responses to NMDAR antagonists. Molecular studies demonstrated reduced expression of glutamic acid decarboxylase 67 (GAD67) in both cortex and hippocampus, consistent with abnormal gamma oscillations in Sp4 hypomorphic mice. On the other hand, human SP4 gene was reported to be deleted in schizophrenia. Several human genetic studies suggested the association of SP4 gene with schizophrenia and other psychiatric disorders. Therefore, elucidation of the Sp4 molecular pathway in Sp4 hypomorphic mice may provide novel insights to our understanding of abnormal NMDAR signaling in schizophrenia.
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spelling pubmed-36888952013-07-02 Prolonged Ketamine Effects in Sp4 Hypomorphic Mice: Mimicking Phenotypes of Schizophrenia Ji, Baohu Wang, Xin Pinto-Duarte, Antonio Kim, Minjung Caldwell, Sorana Young, Jared W. Behrens, Margarita M. Sejnowski, Terrence J. Geyer, Mark A. Zhou, Xianjin PLoS One Research Article It has been well established that schizophrenia patients display impaired NMDA receptor (NMDAR) functions as well as exacerbation of symptoms in response to NMDAR antagonists. Abnormal NMDAR signaling presumably contributes to cognitive deficits which substantially contribute to functional disability in schizophrenia. Establishing a mouse genetic model will help investigate molecular mechanisms of hypoglutmatergic neurotransmission in schizophrenia. Here, we examined the responses of Sp4 hypomorphic mice to NMDAR antagonists in electroencephalography and various behavioral paradigms. Sp4 hypomorphic mice, previously reported to have reduced NMDAR1 expression and LTP deficit in hippocampal CA1, displayed increased sensitivity and prolonged responses to NMDAR antagonists. Molecular studies demonstrated reduced expression of glutamic acid decarboxylase 67 (GAD67) in both cortex and hippocampus, consistent with abnormal gamma oscillations in Sp4 hypomorphic mice. On the other hand, human SP4 gene was reported to be deleted in schizophrenia. Several human genetic studies suggested the association of SP4 gene with schizophrenia and other psychiatric disorders. Therefore, elucidation of the Sp4 molecular pathway in Sp4 hypomorphic mice may provide novel insights to our understanding of abnormal NMDAR signaling in schizophrenia. Public Library of Science 2013-06-18 /pmc/articles/PMC3688895/ /pubmed/23823008 http://dx.doi.org/10.1371/journal.pone.0066327 Text en © 2013 Ji et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Ji, Baohu
Wang, Xin
Pinto-Duarte, Antonio
Kim, Minjung
Caldwell, Sorana
Young, Jared W.
Behrens, Margarita M.
Sejnowski, Terrence J.
Geyer, Mark A.
Zhou, Xianjin
Prolonged Ketamine Effects in Sp4 Hypomorphic Mice: Mimicking Phenotypes of Schizophrenia
title Prolonged Ketamine Effects in Sp4 Hypomorphic Mice: Mimicking Phenotypes of Schizophrenia
title_full Prolonged Ketamine Effects in Sp4 Hypomorphic Mice: Mimicking Phenotypes of Schizophrenia
title_fullStr Prolonged Ketamine Effects in Sp4 Hypomorphic Mice: Mimicking Phenotypes of Schizophrenia
title_full_unstemmed Prolonged Ketamine Effects in Sp4 Hypomorphic Mice: Mimicking Phenotypes of Schizophrenia
title_short Prolonged Ketamine Effects in Sp4 Hypomorphic Mice: Mimicking Phenotypes of Schizophrenia
title_sort prolonged ketamine effects in sp4 hypomorphic mice: mimicking phenotypes of schizophrenia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3688895/
https://www.ncbi.nlm.nih.gov/pubmed/23823008
http://dx.doi.org/10.1371/journal.pone.0066327
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