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Postzygotic single‐nucleotide mosaicisms contribute to the etiology of autism spectrum disorder and autistic traits and the origin of mutations

The roles and characteristics of postzygotic single‐nucleotide mosaicisms (pSNMs) in autism spectrum disorders (ASDs) remain unclear. In this study of the whole exomes of 2,361 families in the Simons Simplex Collection, we identified 1,248 putative pSNMs in children and 285 de novo SNPs in children...

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Autores principales: Dou, Yanmei, Yang, Xiaoxu, Li, Ziyi, Wang, Sheng, Zhang, Zheng, Ye, Adam Yongxin, Yan, Linlin, Yang, Changhong, Wu, Qixi, Li, Jiarui, Zhao, Boxun, Huang, August Yue, Wei, Liping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5518181/
https://www.ncbi.nlm.nih.gov/pubmed/28503910
http://dx.doi.org/10.1002/humu.23255
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author Dou, Yanmei
Yang, Xiaoxu
Li, Ziyi
Wang, Sheng
Zhang, Zheng
Ye, Adam Yongxin
Yan, Linlin
Yang, Changhong
Wu, Qixi
Li, Jiarui
Zhao, Boxun
Huang, August Yue
Wei, Liping
author_facet Dou, Yanmei
Yang, Xiaoxu
Li, Ziyi
Wang, Sheng
Zhang, Zheng
Ye, Adam Yongxin
Yan, Linlin
Yang, Changhong
Wu, Qixi
Li, Jiarui
Zhao, Boxun
Huang, August Yue
Wei, Liping
author_sort Dou, Yanmei
collection PubMed
description The roles and characteristics of postzygotic single‐nucleotide mosaicisms (pSNMs) in autism spectrum disorders (ASDs) remain unclear. In this study of the whole exomes of 2,361 families in the Simons Simplex Collection, we identified 1,248 putative pSNMs in children and 285 de novo SNPs in children with detectable parental mosaicism. Ultra‐deep amplicon resequencing suggested a validation rate of 51%. Analyses of validated pSNMs revealed that missense/loss‐of‐function (LoF) pSNMs with a high mutant allele fraction (MAF≥ 0.2) contributed to ASD diagnoses (P = 0.022, odds ratio [OR] = 5.25), whereas missense/LoF pSNMs with a low MAF (MAF<0.2) contributed to autistic traits in male non‐ASD siblings (P = 0.033). LoF pSNMs in parents were less likely to be transmitted to offspring than neutral pSNMs (P = 0.037), and missense/LoF pSNMs in parents with a low MAF were transmitted more to probands than to siblings (P = 0.016, OR = 1.45). We estimated that pSNMs in probands or de novo mutations inherited from parental pSNMs increased the risk of ASD by approximately 6%. Adding pSNMs into the transmission and de novo association test model revealed 13 new ASD risk genes. These results expand the existing repertoire of genes involved in ASD and shed new light on the contribution of genomic mosaicisms to ASD diagnoses and autistic traits.
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spelling pubmed-55181812017-08-03 Postzygotic single‐nucleotide mosaicisms contribute to the etiology of autism spectrum disorder and autistic traits and the origin of mutations Dou, Yanmei Yang, Xiaoxu Li, Ziyi Wang, Sheng Zhang, Zheng Ye, Adam Yongxin Yan, Linlin Yang, Changhong Wu, Qixi Li, Jiarui Zhao, Boxun Huang, August Yue Wei, Liping Hum Mutat Research Articles The roles and characteristics of postzygotic single‐nucleotide mosaicisms (pSNMs) in autism spectrum disorders (ASDs) remain unclear. In this study of the whole exomes of 2,361 families in the Simons Simplex Collection, we identified 1,248 putative pSNMs in children and 285 de novo SNPs in children with detectable parental mosaicism. Ultra‐deep amplicon resequencing suggested a validation rate of 51%. Analyses of validated pSNMs revealed that missense/loss‐of‐function (LoF) pSNMs with a high mutant allele fraction (MAF≥ 0.2) contributed to ASD diagnoses (P = 0.022, odds ratio [OR] = 5.25), whereas missense/LoF pSNMs with a low MAF (MAF<0.2) contributed to autistic traits in male non‐ASD siblings (P = 0.033). LoF pSNMs in parents were less likely to be transmitted to offspring than neutral pSNMs (P = 0.037), and missense/LoF pSNMs in parents with a low MAF were transmitted more to probands than to siblings (P = 0.016, OR = 1.45). We estimated that pSNMs in probands or de novo mutations inherited from parental pSNMs increased the risk of ASD by approximately 6%. Adding pSNMs into the transmission and de novo association test model revealed 13 new ASD risk genes. These results expand the existing repertoire of genes involved in ASD and shed new light on the contribution of genomic mosaicisms to ASD diagnoses and autistic traits. John Wiley and Sons Inc. 2017-05-30 2017-08 /pmc/articles/PMC5518181/ /pubmed/28503910 http://dx.doi.org/10.1002/humu.23255 Text en © 2017 The Authors. Human Mutation published by Wiley Periodicals, Inc. This is an open access article under the terms of the Creative Commons Attribution‐NonCommercial (http://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Research Articles
Dou, Yanmei
Yang, Xiaoxu
Li, Ziyi
Wang, Sheng
Zhang, Zheng
Ye, Adam Yongxin
Yan, Linlin
Yang, Changhong
Wu, Qixi
Li, Jiarui
Zhao, Boxun
Huang, August Yue
Wei, Liping
Postzygotic single‐nucleotide mosaicisms contribute to the etiology of autism spectrum disorder and autistic traits and the origin of mutations
title Postzygotic single‐nucleotide mosaicisms contribute to the etiology of autism spectrum disorder and autistic traits and the origin of mutations
title_full Postzygotic single‐nucleotide mosaicisms contribute to the etiology of autism spectrum disorder and autistic traits and the origin of mutations
title_fullStr Postzygotic single‐nucleotide mosaicisms contribute to the etiology of autism spectrum disorder and autistic traits and the origin of mutations
title_full_unstemmed Postzygotic single‐nucleotide mosaicisms contribute to the etiology of autism spectrum disorder and autistic traits and the origin of mutations
title_short Postzygotic single‐nucleotide mosaicisms contribute to the etiology of autism spectrum disorder and autistic traits and the origin of mutations
title_sort postzygotic single‐nucleotide mosaicisms contribute to the etiology of autism spectrum disorder and autistic traits and the origin of mutations
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5518181/
https://www.ncbi.nlm.nih.gov/pubmed/28503910
http://dx.doi.org/10.1002/humu.23255
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