Mutations of CNTNAP1 led to defects in neuronal development

Mutations of CNTNAP1 were associated with myelination disorders, suggesting the role of CNTNAP1 in myelination processes. Whether CNTNAP1 may have a role in early cortical neuronal development is largely unknown. In this study, we identified 4 compound heterozygous mutations of CNTNAP1 in 2 Chinese...

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Main Authors: Wanxing Li, Lin Yang, Chuanqing Tang, Kaiyi Liu, Yulan Lu, Huijun Wang, Kai Yan, Zilong Qiu, Wenhao Zhou
Format: Article
Language:English
Published: American Society for Clinical investigation 2020-11-01
Series:JCI Insight
Subjects:
Online Access:https://doi.org/10.1172/jci.insight.135697
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spelling doaj-c343a186c4554ea1aa252e6a4d9285c52021-08-02T20:49:33ZengAmerican Society for Clinical investigationJCI Insight2379-37082020-11-01521Mutations of CNTNAP1 led to defects in neuronal developmentWanxing LiLin YangChuanqing TangKaiyi LiuYulan LuHuijun WangKai YanZilong QiuWenhao ZhouMutations of CNTNAP1 were associated with myelination disorders, suggesting the role of CNTNAP1 in myelination processes. Whether CNTNAP1 may have a role in early cortical neuronal development is largely unknown. In this study, we identified 4 compound heterozygous mutations of CNTNAP1 in 2 Chinese families. Using mouse models, we found that CNTNAP1 is highly expressed in neurons and is located predominantly in MAP2+ neurons during the early developmental stage. Importantly, Cntnap1 deficiency results in aberrant dendritic growth and spine development in vitro and in vivo, and it delayed migration of cortical neurons during early development. Finally, we found that the number of parvalbumin+ neurons in the cortex and hippocampus of Cntnap1–/– mice is strikingly increased by P15, suggesting that excitation/inhibition balance is impaired. Together, this evidence elucidates a critical function of CNTNAP1 in cortical development, providing insights underlying molecular and circuit mechanisms of CNTNAP1-related disease.https://doi.org/10.1172/jci.insight.135697GeneticsNeuroscience
collection DOAJ
language English
format Article
sources DOAJ
author Wanxing Li
Lin Yang
Chuanqing Tang
Kaiyi Liu
Yulan Lu
Huijun Wang
Kai Yan
Zilong Qiu
Wenhao Zhou
spellingShingle Wanxing Li
Lin Yang
Chuanqing Tang
Kaiyi Liu
Yulan Lu
Huijun Wang
Kai Yan
Zilong Qiu
Wenhao Zhou
Mutations of CNTNAP1 led to defects in neuronal development
JCI Insight
Genetics
Neuroscience
author_facet Wanxing Li
Lin Yang
Chuanqing Tang
Kaiyi Liu
Yulan Lu
Huijun Wang
Kai Yan
Zilong Qiu
Wenhao Zhou
author_sort Wanxing Li
title Mutations of CNTNAP1 led to defects in neuronal development
title_short Mutations of CNTNAP1 led to defects in neuronal development
title_full Mutations of CNTNAP1 led to defects in neuronal development
title_fullStr Mutations of CNTNAP1 led to defects in neuronal development
title_full_unstemmed Mutations of CNTNAP1 led to defects in neuronal development
title_sort mutations of cntnap1 led to defects in neuronal development
publisher American Society for Clinical investigation
series JCI Insight
issn 2379-3708
publishDate 2020-11-01
description Mutations of CNTNAP1 were associated with myelination disorders, suggesting the role of CNTNAP1 in myelination processes. Whether CNTNAP1 may have a role in early cortical neuronal development is largely unknown. In this study, we identified 4 compound heterozygous mutations of CNTNAP1 in 2 Chinese families. Using mouse models, we found that CNTNAP1 is highly expressed in neurons and is located predominantly in MAP2+ neurons during the early developmental stage. Importantly, Cntnap1 deficiency results in aberrant dendritic growth and spine development in vitro and in vivo, and it delayed migration of cortical neurons during early development. Finally, we found that the number of parvalbumin+ neurons in the cortex and hippocampus of Cntnap1–/– mice is strikingly increased by P15, suggesting that excitation/inhibition balance is impaired. Together, this evidence elucidates a critical function of CNTNAP1 in cortical development, providing insights underlying molecular and circuit mechanisms of CNTNAP1-related disease.
topic Genetics
Neuroscience
url https://doi.org/10.1172/jci.insight.135697
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