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Whole-exome sequencing in obsessive-compulsive disorder identifies rare mutations in immunological and neurodevelopmental pathways

Studies of rare genetic variation have identified molecular pathways conferring risk for developmental neuropsychiatric disorders. To date, no published whole-exome sequencing studies have been reported in obsessive-compulsive disorder (OCD). We sequenced all the genome coding regions in 20 sporadic...

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Autores principales: Cappi, C, Brentani, H, Lima, L, Sanders, S J, Zai, G, Diniz, B J, Reis, V N S, Hounie, A G, Conceição do Rosário, M, Mariani, D, Requena, G L, Puga, R, Souza-Duran, F L, Shavitt, R G, Pauls, D L, Miguel, E C, Fernandez, T V
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4872454/
https://www.ncbi.nlm.nih.gov/pubmed/27023170
http://dx.doi.org/10.1038/tp.2016.30
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author Cappi, C
Brentani, H
Lima, L
Sanders, S J
Zai, G
Diniz, B J
Reis, V N S
Hounie, A G
Conceição do Rosário, M
Mariani, D
Requena, G L
Puga, R
Souza-Duran, F L
Shavitt, R G
Pauls, D L
Miguel, E C
Fernandez, T V
author_facet Cappi, C
Brentani, H
Lima, L
Sanders, S J
Zai, G
Diniz, B J
Reis, V N S
Hounie, A G
Conceição do Rosário, M
Mariani, D
Requena, G L
Puga, R
Souza-Duran, F L
Shavitt, R G
Pauls, D L
Miguel, E C
Fernandez, T V
author_sort Cappi, C
collection PubMed
description Studies of rare genetic variation have identified molecular pathways conferring risk for developmental neuropsychiatric disorders. To date, no published whole-exome sequencing studies have been reported in obsessive-compulsive disorder (OCD). We sequenced all the genome coding regions in 20 sporadic OCD cases and their unaffected parents to identify rare de novo (DN) single-nucleotide variants (SNVs). The primary aim of this pilot study was to determine whether DN variation contributes to OCD risk. To this aim, we evaluated whether there is an elevated rate of DN mutations in OCD, which would justify this approach toward gene discovery in larger studies of the disorder. Furthermore, to explore functional molecular correlations among genes with nonsynonymous DN SNVs in OCD probands, a protein–protein interaction (PPI) network was generated based on databases of direct molecular interactions. We applied Degree-Aware Disease Gene Prioritization (DADA) to rank the PPI network genes based on their relatedness to a set of OCD candidate genes from two OCD genome-wide association studies (Stewart et al., 2013; Mattheisen et al., 2014). In addition, we performed a pathway analysis with genes from the PPI network. The rate of DN SNVs in OCD was 2.51 × 10(−8) per base per generation, significantly higher than a previous estimated rate in unaffected subjects using the same sequencing platform and analytic pipeline. Several genes harboring DN SNVs in OCD were highly interconnected in the PPI network and ranked high in the DADA analysis. Nearly all the DN SNVs in this study are in genes expressed in the human brain, and a pathway analysis revealed enrichment in immunological and central nervous system functioning and development. The results of this pilot study indicate that further investigation of DN variation in larger OCD cohorts is warranted to identify specific risk genes and to confirm our preliminary finding with regard to PPI network enrichment for particular biological pathways and functions.
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spelling pubmed-48724542016-05-27 Whole-exome sequencing in obsessive-compulsive disorder identifies rare mutations in immunological and neurodevelopmental pathways Cappi, C Brentani, H Lima, L Sanders, S J Zai, G Diniz, B J Reis, V N S Hounie, A G Conceição do Rosário, M Mariani, D Requena, G L Puga, R Souza-Duran, F L Shavitt, R G Pauls, D L Miguel, E C Fernandez, T V Transl Psychiatry Original Article Studies of rare genetic variation have identified molecular pathways conferring risk for developmental neuropsychiatric disorders. To date, no published whole-exome sequencing studies have been reported in obsessive-compulsive disorder (OCD). We sequenced all the genome coding regions in 20 sporadic OCD cases and their unaffected parents to identify rare de novo (DN) single-nucleotide variants (SNVs). The primary aim of this pilot study was to determine whether DN variation contributes to OCD risk. To this aim, we evaluated whether there is an elevated rate of DN mutations in OCD, which would justify this approach toward gene discovery in larger studies of the disorder. Furthermore, to explore functional molecular correlations among genes with nonsynonymous DN SNVs in OCD probands, a protein–protein interaction (PPI) network was generated based on databases of direct molecular interactions. We applied Degree-Aware Disease Gene Prioritization (DADA) to rank the PPI network genes based on their relatedness to a set of OCD candidate genes from two OCD genome-wide association studies (Stewart et al., 2013; Mattheisen et al., 2014). In addition, we performed a pathway analysis with genes from the PPI network. The rate of DN SNVs in OCD was 2.51 × 10(−8) per base per generation, significantly higher than a previous estimated rate in unaffected subjects using the same sequencing platform and analytic pipeline. Several genes harboring DN SNVs in OCD were highly interconnected in the PPI network and ranked high in the DADA analysis. Nearly all the DN SNVs in this study are in genes expressed in the human brain, and a pathway analysis revealed enrichment in immunological and central nervous system functioning and development. The results of this pilot study indicate that further investigation of DN variation in larger OCD cohorts is warranted to identify specific risk genes and to confirm our preliminary finding with regard to PPI network enrichment for particular biological pathways and functions. Nature Publishing Group 2016-03 2016-03-29 /pmc/articles/PMC4872454/ /pubmed/27023170 http://dx.doi.org/10.1038/tp.2016.30 Text en Copyright © 2016 Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Original Article
Cappi, C
Brentani, H
Lima, L
Sanders, S J
Zai, G
Diniz, B J
Reis, V N S
Hounie, A G
Conceição do Rosário, M
Mariani, D
Requena, G L
Puga, R
Souza-Duran, F L
Shavitt, R G
Pauls, D L
Miguel, E C
Fernandez, T V
Whole-exome sequencing in obsessive-compulsive disorder identifies rare mutations in immunological and neurodevelopmental pathways
title Whole-exome sequencing in obsessive-compulsive disorder identifies rare mutations in immunological and neurodevelopmental pathways
title_full Whole-exome sequencing in obsessive-compulsive disorder identifies rare mutations in immunological and neurodevelopmental pathways
title_fullStr Whole-exome sequencing in obsessive-compulsive disorder identifies rare mutations in immunological and neurodevelopmental pathways
title_full_unstemmed Whole-exome sequencing in obsessive-compulsive disorder identifies rare mutations in immunological and neurodevelopmental pathways
title_short Whole-exome sequencing in obsessive-compulsive disorder identifies rare mutations in immunological and neurodevelopmental pathways
title_sort whole-exome sequencing in obsessive-compulsive disorder identifies rare mutations in immunological and neurodevelopmental pathways
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4872454/
https://www.ncbi.nlm.nih.gov/pubmed/27023170
http://dx.doi.org/10.1038/tp.2016.30
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