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De Novo Germline Mutations in SEMA5A Associated With Infantile Spasms

Infantile spasm (IS) is an early-onset epileptic encephalopathy that usually presents with hypsarrhythmia on an electroencephalogram with developmental impairment or regression. In this study, whole-exome sequencing was performed to detect potential pathogenic de novo mutations, and finally we ident...

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Autores principales: Wang, Qiongdan, Liu, Zhenwei, Lin, Zhongdong, Zhang, Ru, Lu, Yutian, Su, Weijue, Li, Feng, Xu, Xi, Tu, Mengyun, Lou, Yongliang, Zhao, Junzhao, Zheng, Xiaoqun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6635550/
https://www.ncbi.nlm.nih.gov/pubmed/31354784
http://dx.doi.org/10.3389/fgene.2019.00605
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author Wang, Qiongdan
Liu, Zhenwei
Lin, Zhongdong
Zhang, Ru
Lu, Yutian
Su, Weijue
Li, Feng
Xu, Xi
Tu, Mengyun
Lou, Yongliang
Zhao, Junzhao
Zheng, Xiaoqun
author_facet Wang, Qiongdan
Liu, Zhenwei
Lin, Zhongdong
Zhang, Ru
Lu, Yutian
Su, Weijue
Li, Feng
Xu, Xi
Tu, Mengyun
Lou, Yongliang
Zhao, Junzhao
Zheng, Xiaoqun
author_sort Wang, Qiongdan
collection PubMed
description Infantile spasm (IS) is an early-onset epileptic encephalopathy that usually presents with hypsarrhythmia on an electroencephalogram with developmental impairment or regression. In this study, whole-exome sequencing was performed to detect potential pathogenic de novo mutations, and finally we identified a novel damaging de novo mutation in SEMA5A and a compound heterozygous mutation in CLTCL1 in three sporadic trios with IS. The expression profiling of SEMA5A in the human brain showed that it was mainly highly expressed in the cerebral cortex, during the early brain development stage (8 to 9 post-conception weeks and 0 to 5 months after birth). In addition, we identified a close protein-protein interaction network between SEMA5A and candidate genes associated with epilepsy, autism spectrum disorder (ASD) or intellectual disability. Gene enrichment and function analysis demonstrated that genes interacting with SEMA5A were significantly enriched in several brain regions across early fetal development, including the cortex, cerebellum, striatum and thalamus (q < 0.05), and were involved in axonal, neuronal and synapse-associated processes. Furthermore, SEMA5A and its interacting genes were associated with ASD, epilepsy syndrome and developmental disorders of mental health. Our results provide insightful information indicating that SEMA5A may contribute to the development of the brain and is associated with IS. However, further genetic studies are still needed to evaluate the role of SEMA5A in IS to definitively establish the role of SEMA5A in this disorder.
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spelling pubmed-66355502019-07-26 De Novo Germline Mutations in SEMA5A Associated With Infantile Spasms Wang, Qiongdan Liu, Zhenwei Lin, Zhongdong Zhang, Ru Lu, Yutian Su, Weijue Li, Feng Xu, Xi Tu, Mengyun Lou, Yongliang Zhao, Junzhao Zheng, Xiaoqun Front Genet Genetics Infantile spasm (IS) is an early-onset epileptic encephalopathy that usually presents with hypsarrhythmia on an electroencephalogram with developmental impairment or regression. In this study, whole-exome sequencing was performed to detect potential pathogenic de novo mutations, and finally we identified a novel damaging de novo mutation in SEMA5A and a compound heterozygous mutation in CLTCL1 in three sporadic trios with IS. The expression profiling of SEMA5A in the human brain showed that it was mainly highly expressed in the cerebral cortex, during the early brain development stage (8 to 9 post-conception weeks and 0 to 5 months after birth). In addition, we identified a close protein-protein interaction network between SEMA5A and candidate genes associated with epilepsy, autism spectrum disorder (ASD) or intellectual disability. Gene enrichment and function analysis demonstrated that genes interacting with SEMA5A were significantly enriched in several brain regions across early fetal development, including the cortex, cerebellum, striatum and thalamus (q < 0.05), and were involved in axonal, neuronal and synapse-associated processes. Furthermore, SEMA5A and its interacting genes were associated with ASD, epilepsy syndrome and developmental disorders of mental health. Our results provide insightful information indicating that SEMA5A may contribute to the development of the brain and is associated with IS. However, further genetic studies are still needed to evaluate the role of SEMA5A in IS to definitively establish the role of SEMA5A in this disorder. Frontiers Media S.A. 2019-07-10 /pmc/articles/PMC6635550/ /pubmed/31354784 http://dx.doi.org/10.3389/fgene.2019.00605 Text en Copyright © 2019 Wang, Liu, Lin, Zhang, Lu, Su, Li, Xu, Tu, Lou, Zhao and Zheng http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Genetics
Wang, Qiongdan
Liu, Zhenwei
Lin, Zhongdong
Zhang, Ru
Lu, Yutian
Su, Weijue
Li, Feng
Xu, Xi
Tu, Mengyun
Lou, Yongliang
Zhao, Junzhao
Zheng, Xiaoqun
De Novo Germline Mutations in SEMA5A Associated With Infantile Spasms
title De Novo Germline Mutations in SEMA5A Associated With Infantile Spasms
title_full De Novo Germline Mutations in SEMA5A Associated With Infantile Spasms
title_fullStr De Novo Germline Mutations in SEMA5A Associated With Infantile Spasms
title_full_unstemmed De Novo Germline Mutations in SEMA5A Associated With Infantile Spasms
title_short De Novo Germline Mutations in SEMA5A Associated With Infantile Spasms
title_sort de novo germline mutations in sema5a associated with infantile spasms
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6635550/
https://www.ncbi.nlm.nih.gov/pubmed/31354784
http://dx.doi.org/10.3389/fgene.2019.00605
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