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Partial loss of psychiatric risk gene miR-137 in mice causes repetitive behavior and impairs sociability and learning via increased Pde10a

Genetic analyses have linked MicroRNA-137 (MIR137) to neuropsychiatric disorders, including schizophrenia and autism spectrum disorder (ASD). MiR-137 plays important roles in neurogenesis and neuronal maturation, but the impact of miR-137 loss of function in vivo remains unclear. Here we show the co...

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Autores principales: Cheng, Ying, Wang, Zhi-Meng, Tan, Weiqi, Wang, Xiaona, Li, Yujing, Bai, Bing, Li, Yuxin, Zhang, Shuang-Feng, Yan, Hai-Liang, Chen, Zuo-Lun, Liu, Chang-Mei, Mi, Ting-Wei, Xia, Shuting, Zhou, Zikai, Liu, An, Tang, Gang-Bin, Liu, Cong, Dai, Zhi-Jie, Wang, Ying-Ying, Wang, Hong, Wang, Xusheng, Kang, Yunhee, Lin, Li, Chen, Zhenping, Xie, Nina, Sun, Qinmiao, Xie, Wei, Peng, Junmin, Chen, Dahua, Teng, Zhao-Qian, Jin, Peng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6261680/
https://www.ncbi.nlm.nih.gov/pubmed/30397325
http://dx.doi.org/10.1038/s41593-018-0261-7
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author Cheng, Ying
Wang, Zhi-Meng
Tan, Weiqi
Wang, Xiaona
Li, Yujing
Bai, Bing
Li, Yuxin
Zhang, Shuang-Feng
Yan, Hai-Liang
Chen, Zuo-Lun
Liu, Chang-Mei
Mi, Ting-Wei
Xia, Shuting
Zhou, Zikai
Liu, An
Tang, Gang-Bin
Liu, Cong
Dai, Zhi-Jie
Wang, Ying-Ying
Wang, Hong
Wang, Xusheng
Kang, Yunhee
Lin, Li
Chen, Zhenping
Xie, Nina
Sun, Qinmiao
Xie, Wei
Peng, Junmin
Chen, Dahua
Teng, Zhao-Qian
Jin, Peng
author_facet Cheng, Ying
Wang, Zhi-Meng
Tan, Weiqi
Wang, Xiaona
Li, Yujing
Bai, Bing
Li, Yuxin
Zhang, Shuang-Feng
Yan, Hai-Liang
Chen, Zuo-Lun
Liu, Chang-Mei
Mi, Ting-Wei
Xia, Shuting
Zhou, Zikai
Liu, An
Tang, Gang-Bin
Liu, Cong
Dai, Zhi-Jie
Wang, Ying-Ying
Wang, Hong
Wang, Xusheng
Kang, Yunhee
Lin, Li
Chen, Zhenping
Xie, Nina
Sun, Qinmiao
Xie, Wei
Peng, Junmin
Chen, Dahua
Teng, Zhao-Qian
Jin, Peng
author_sort Cheng, Ying
collection PubMed
description Genetic analyses have linked MicroRNA-137 (MIR137) to neuropsychiatric disorders, including schizophrenia and autism spectrum disorder (ASD). MiR-137 plays important roles in neurogenesis and neuronal maturation, but the impact of miR-137 loss of function in vivo remains unclear. Here we show the complete loss of miR-137 in the mouse germline (gKO) or nervous system (cKO) leads to postnatal lethality, while heterozygous gKO and cKO mice remain viable. Partial loss of miR-137 in heterozygous cKO mice results in dysregulated synaptic plasticity, repetitive behavior, and impaired learning and social behavior. Transcriptomic and proteomic analyses revealed that the miR-137 mRNA target, Phosphodiesterase 10a (Pde10a), is elevated in heterozygous KO mice. Treatment with the PDE10A inhibitor papaverine or knockdown of Pde10a ameliorates the deficits observed in the heterozygous cKO mice. Collectively, our results suggest that MIR137 plays essential roles in postnatal neurodevelopment, and that dysregulation of miR-137 potentially contributes to neuropsychiatric disorders in humans.
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spelling pubmed-62616802019-05-05 Partial loss of psychiatric risk gene miR-137 in mice causes repetitive behavior and impairs sociability and learning via increased Pde10a Cheng, Ying Wang, Zhi-Meng Tan, Weiqi Wang, Xiaona Li, Yujing Bai, Bing Li, Yuxin Zhang, Shuang-Feng Yan, Hai-Liang Chen, Zuo-Lun Liu, Chang-Mei Mi, Ting-Wei Xia, Shuting Zhou, Zikai Liu, An Tang, Gang-Bin Liu, Cong Dai, Zhi-Jie Wang, Ying-Ying Wang, Hong Wang, Xusheng Kang, Yunhee Lin, Li Chen, Zhenping Xie, Nina Sun, Qinmiao Xie, Wei Peng, Junmin Chen, Dahua Teng, Zhao-Qian Jin, Peng Nat Neurosci Article Genetic analyses have linked MicroRNA-137 (MIR137) to neuropsychiatric disorders, including schizophrenia and autism spectrum disorder (ASD). MiR-137 plays important roles in neurogenesis and neuronal maturation, but the impact of miR-137 loss of function in vivo remains unclear. Here we show the complete loss of miR-137 in the mouse germline (gKO) or nervous system (cKO) leads to postnatal lethality, while heterozygous gKO and cKO mice remain viable. Partial loss of miR-137 in heterozygous cKO mice results in dysregulated synaptic plasticity, repetitive behavior, and impaired learning and social behavior. Transcriptomic and proteomic analyses revealed that the miR-137 mRNA target, Phosphodiesterase 10a (Pde10a), is elevated in heterozygous KO mice. Treatment with the PDE10A inhibitor papaverine or knockdown of Pde10a ameliorates the deficits observed in the heterozygous cKO mice. Collectively, our results suggest that MIR137 plays essential roles in postnatal neurodevelopment, and that dysregulation of miR-137 potentially contributes to neuropsychiatric disorders in humans. 2018-11-05 2018-12 /pmc/articles/PMC6261680/ /pubmed/30397325 http://dx.doi.org/10.1038/s41593-018-0261-7 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: http://www.nature.com/authors/editorial_policies/license.html
spellingShingle Article
Cheng, Ying
Wang, Zhi-Meng
Tan, Weiqi
Wang, Xiaona
Li, Yujing
Bai, Bing
Li, Yuxin
Zhang, Shuang-Feng
Yan, Hai-Liang
Chen, Zuo-Lun
Liu, Chang-Mei
Mi, Ting-Wei
Xia, Shuting
Zhou, Zikai
Liu, An
Tang, Gang-Bin
Liu, Cong
Dai, Zhi-Jie
Wang, Ying-Ying
Wang, Hong
Wang, Xusheng
Kang, Yunhee
Lin, Li
Chen, Zhenping
Xie, Nina
Sun, Qinmiao
Xie, Wei
Peng, Junmin
Chen, Dahua
Teng, Zhao-Qian
Jin, Peng
Partial loss of psychiatric risk gene miR-137 in mice causes repetitive behavior and impairs sociability and learning via increased Pde10a
title Partial loss of psychiatric risk gene miR-137 in mice causes repetitive behavior and impairs sociability and learning via increased Pde10a
title_full Partial loss of psychiatric risk gene miR-137 in mice causes repetitive behavior and impairs sociability and learning via increased Pde10a
title_fullStr Partial loss of psychiatric risk gene miR-137 in mice causes repetitive behavior and impairs sociability and learning via increased Pde10a
title_full_unstemmed Partial loss of psychiatric risk gene miR-137 in mice causes repetitive behavior and impairs sociability and learning via increased Pde10a
title_short Partial loss of psychiatric risk gene miR-137 in mice causes repetitive behavior and impairs sociability and learning via increased Pde10a
title_sort partial loss of psychiatric risk gene mir-137 in mice causes repetitive behavior and impairs sociability and learning via increased pde10a
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6261680/
https://www.ncbi.nlm.nih.gov/pubmed/30397325
http://dx.doi.org/10.1038/s41593-018-0261-7
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