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Psychiatric-disorder-related behavioral phenotypes and cortical hyperactivity in a mouse model of 3q29 deletion syndrome

3q29 microdeletion, a rare recurrent copy number variant (CNV), greatly confers an increased risk of psychiatric disorders, such as schizophrenia and autism spectrum disorder (ASD), as well as intellectual disability. However, disease-relevant cellular phenotypes of 3q29 deletion syndrome remain to...

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Autores principales: Baba, Masayuki, Yokoyama, Kazumasa, Seiriki, Kaoru, Naka, Yuichiro, Matsumura, Kensuke, Kondo, Momoka, Yamamoto, Kana, Hayashida, Misuzu, Kasai, Atsushi, Ago, Yukio, Nagayasu, Kazuki, Hayata-Takano, Atsuko, Takahashi, Akinori, Yamaguchi, Shun, Mori, Daisuke, Ozaki, Norio, Yamamoto, Tadashi, Takuma, Kazuhiro, Hashimoto, Ryota, Hashimoto, Hitoshi, Nakazawa, Takanobu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer International Publishing 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6887869/
https://www.ncbi.nlm.nih.gov/pubmed/31216562
http://dx.doi.org/10.1038/s41386-019-0441-5
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author Baba, Masayuki
Yokoyama, Kazumasa
Seiriki, Kaoru
Naka, Yuichiro
Matsumura, Kensuke
Kondo, Momoka
Yamamoto, Kana
Hayashida, Misuzu
Kasai, Atsushi
Ago, Yukio
Nagayasu, Kazuki
Hayata-Takano, Atsuko
Takahashi, Akinori
Yamaguchi, Shun
Mori, Daisuke
Ozaki, Norio
Yamamoto, Tadashi
Takuma, Kazuhiro
Hashimoto, Ryota
Hashimoto, Hitoshi
Nakazawa, Takanobu
author_facet Baba, Masayuki
Yokoyama, Kazumasa
Seiriki, Kaoru
Naka, Yuichiro
Matsumura, Kensuke
Kondo, Momoka
Yamamoto, Kana
Hayashida, Misuzu
Kasai, Atsushi
Ago, Yukio
Nagayasu, Kazuki
Hayata-Takano, Atsuko
Takahashi, Akinori
Yamaguchi, Shun
Mori, Daisuke
Ozaki, Norio
Yamamoto, Tadashi
Takuma, Kazuhiro
Hashimoto, Ryota
Hashimoto, Hitoshi
Nakazawa, Takanobu
author_sort Baba, Masayuki
collection PubMed
description 3q29 microdeletion, a rare recurrent copy number variant (CNV), greatly confers an increased risk of psychiatric disorders, such as schizophrenia and autism spectrum disorder (ASD), as well as intellectual disability. However, disease-relevant cellular phenotypes of 3q29 deletion syndrome remain to be identified. To reveal the molecular and cellular etiology of 3q29 deletion syndrome, we generated a mouse model of human 3q29 deletion syndrome by chromosome engineering, which achieved construct validity. 3q29 deletion (Df/+) mice showed reduced body weight and brain volume and, more importantly, impaired social interaction and prepulse inhibition. Importantly, the schizophrenia-related impaired prepulse inhibition was reversed by administration of antipsychotics. These findings are reminiscent of the growth defects and neuropsychiatric behavioral phenotypes in patients with 3q29 deletion syndrome and exemplify that the mouse model achieves some part of face validity and predictive validity. Unbiased whole-brain imaging revealed that neuronal hyperactivation after a behavioral task was strikingly exaggerated in a restricted region of the cortex of Df/+ mice. We further elucidated the cellular phenotypes of neuronal hyperactivation and the reduction of parvalbumin expression in the cortex of Df/+ mice. Thus, the 3q29 mouse model provides invaluable insight into the disease-causative molecular and cellular pathology of psychiatric disorders.
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spelling pubmed-68878692019-12-06 Psychiatric-disorder-related behavioral phenotypes and cortical hyperactivity in a mouse model of 3q29 deletion syndrome Baba, Masayuki Yokoyama, Kazumasa Seiriki, Kaoru Naka, Yuichiro Matsumura, Kensuke Kondo, Momoka Yamamoto, Kana Hayashida, Misuzu Kasai, Atsushi Ago, Yukio Nagayasu, Kazuki Hayata-Takano, Atsuko Takahashi, Akinori Yamaguchi, Shun Mori, Daisuke Ozaki, Norio Yamamoto, Tadashi Takuma, Kazuhiro Hashimoto, Ryota Hashimoto, Hitoshi Nakazawa, Takanobu Neuropsychopharmacology Article 3q29 microdeletion, a rare recurrent copy number variant (CNV), greatly confers an increased risk of psychiatric disorders, such as schizophrenia and autism spectrum disorder (ASD), as well as intellectual disability. However, disease-relevant cellular phenotypes of 3q29 deletion syndrome remain to be identified. To reveal the molecular and cellular etiology of 3q29 deletion syndrome, we generated a mouse model of human 3q29 deletion syndrome by chromosome engineering, which achieved construct validity. 3q29 deletion (Df/+) mice showed reduced body weight and brain volume and, more importantly, impaired social interaction and prepulse inhibition. Importantly, the schizophrenia-related impaired prepulse inhibition was reversed by administration of antipsychotics. These findings are reminiscent of the growth defects and neuropsychiatric behavioral phenotypes in patients with 3q29 deletion syndrome and exemplify that the mouse model achieves some part of face validity and predictive validity. Unbiased whole-brain imaging revealed that neuronal hyperactivation after a behavioral task was strikingly exaggerated in a restricted region of the cortex of Df/+ mice. We further elucidated the cellular phenotypes of neuronal hyperactivation and the reduction of parvalbumin expression in the cortex of Df/+ mice. Thus, the 3q29 mouse model provides invaluable insight into the disease-causative molecular and cellular pathology of psychiatric disorders. Springer International Publishing 2019-06-19 2019-11 /pmc/articles/PMC6887869/ /pubmed/31216562 http://dx.doi.org/10.1038/s41386-019-0441-5 Text en © The Author(s) 2019 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Baba, Masayuki
Yokoyama, Kazumasa
Seiriki, Kaoru
Naka, Yuichiro
Matsumura, Kensuke
Kondo, Momoka
Yamamoto, Kana
Hayashida, Misuzu
Kasai, Atsushi
Ago, Yukio
Nagayasu, Kazuki
Hayata-Takano, Atsuko
Takahashi, Akinori
Yamaguchi, Shun
Mori, Daisuke
Ozaki, Norio
Yamamoto, Tadashi
Takuma, Kazuhiro
Hashimoto, Ryota
Hashimoto, Hitoshi
Nakazawa, Takanobu
Psychiatric-disorder-related behavioral phenotypes and cortical hyperactivity in a mouse model of 3q29 deletion syndrome
title Psychiatric-disorder-related behavioral phenotypes and cortical hyperactivity in a mouse model of 3q29 deletion syndrome
title_full Psychiatric-disorder-related behavioral phenotypes and cortical hyperactivity in a mouse model of 3q29 deletion syndrome
title_fullStr Psychiatric-disorder-related behavioral phenotypes and cortical hyperactivity in a mouse model of 3q29 deletion syndrome
title_full_unstemmed Psychiatric-disorder-related behavioral phenotypes and cortical hyperactivity in a mouse model of 3q29 deletion syndrome
title_short Psychiatric-disorder-related behavioral phenotypes and cortical hyperactivity in a mouse model of 3q29 deletion syndrome
title_sort psychiatric-disorder-related behavioral phenotypes and cortical hyperactivity in a mouse model of 3q29 deletion syndrome
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6887869/
https://www.ncbi.nlm.nih.gov/pubmed/31216562
http://dx.doi.org/10.1038/s41386-019-0441-5
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