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Association and Mutation Analyses of 16p11.2 Autism Candidate Genes

BACKGROUND: Autism is a complex childhood neurodevelopmental disorder with a strong genetic basis. Microdeletion or duplication of a ∼500–700-kb genomic rearrangement on 16p11.2 that contains 24 genes represents the second most frequent chromosomal disorder associated with autism. The role of common...

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Autores principales: Kumar, Ravinesh A., Marshall, Christian R., Badner, Judith A., Babatz, Timothy D., Mukamel, Zohar, Aldinger, Kimberly A., Sudi, Jyotsna, Brune, Camille W., Goh, Gerald, KaraMohamed, Samer, Sutcliffe, James S., Cook, Edwin H., Geschwind, Daniel H., Dobyns, William B., Scherer, Stephen W., Christian, Susan L.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2644762/
https://www.ncbi.nlm.nih.gov/pubmed/19242545
http://dx.doi.org/10.1371/journal.pone.0004582
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author Kumar, Ravinesh A.
Marshall, Christian R.
Badner, Judith A.
Babatz, Timothy D.
Mukamel, Zohar
Aldinger, Kimberly A.
Sudi, Jyotsna
Brune, Camille W.
Goh, Gerald
KaraMohamed, Samer
Sutcliffe, James S.
Cook, Edwin H.
Geschwind, Daniel H.
Dobyns, William B.
Scherer, Stephen W.
Christian, Susan L.
author_facet Kumar, Ravinesh A.
Marshall, Christian R.
Badner, Judith A.
Babatz, Timothy D.
Mukamel, Zohar
Aldinger, Kimberly A.
Sudi, Jyotsna
Brune, Camille W.
Goh, Gerald
KaraMohamed, Samer
Sutcliffe, James S.
Cook, Edwin H.
Geschwind, Daniel H.
Dobyns, William B.
Scherer, Stephen W.
Christian, Susan L.
author_sort Kumar, Ravinesh A.
collection PubMed
description BACKGROUND: Autism is a complex childhood neurodevelopmental disorder with a strong genetic basis. Microdeletion or duplication of a ∼500–700-kb genomic rearrangement on 16p11.2 that contains 24 genes represents the second most frequent chromosomal disorder associated with autism. The role of common and rare 16p11.2 sequence variants in autism etiology is unknown. METHODOLOGY/PRINCIPAL FINDINGS: To identify common 16p11.2 variants with a potential role in autism, we performed association studies using existing data generated from three microarray platforms: Affymetrix 5.0 (777 families), Illumina 550 K (943 families), and Affymetrix 500 K (60 families). No common variants were identified that were significantly associated with autism. To look for rare variants, we performed resequencing of coding and promoter regions for eight candidate genes selected based on their known expression patterns and functions. In total, we identified 26 novel variants in autism: 13 exonic (nine non-synonymous, three synonymous, and one untranslated region) and 13 promoter variants. We found a significant association between autism and a coding variant in the seizure-related gene SEZ6L2 (12/1106 autism vs. 3/1161 controls; p = 0.018). Sez6l2 expression in mouse embryos was restricted to the spinal cord and brain. SEZ6L2 expression in human fetal brain was highest in post-mitotic cortical layers, hippocampus, amygdala, and thalamus. Association analysis of SEZ6L2 in an independent sample set failed to replicate our initial findings. CONCLUSIONS/SIGNIFICANCE: We have identified sequence variation in at least one candidate gene in 16p11.2 that may represent a novel genetic risk factor for autism. However, further studies are required to substantiate these preliminary findings.
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spelling pubmed-26447622009-02-26 Association and Mutation Analyses of 16p11.2 Autism Candidate Genes Kumar, Ravinesh A. Marshall, Christian R. Badner, Judith A. Babatz, Timothy D. Mukamel, Zohar Aldinger, Kimberly A. Sudi, Jyotsna Brune, Camille W. Goh, Gerald KaraMohamed, Samer Sutcliffe, James S. Cook, Edwin H. Geschwind, Daniel H. Dobyns, William B. Scherer, Stephen W. Christian, Susan L. PLoS One Research Article BACKGROUND: Autism is a complex childhood neurodevelopmental disorder with a strong genetic basis. Microdeletion or duplication of a ∼500–700-kb genomic rearrangement on 16p11.2 that contains 24 genes represents the second most frequent chromosomal disorder associated with autism. The role of common and rare 16p11.2 sequence variants in autism etiology is unknown. METHODOLOGY/PRINCIPAL FINDINGS: To identify common 16p11.2 variants with a potential role in autism, we performed association studies using existing data generated from three microarray platforms: Affymetrix 5.0 (777 families), Illumina 550 K (943 families), and Affymetrix 500 K (60 families). No common variants were identified that were significantly associated with autism. To look for rare variants, we performed resequencing of coding and promoter regions for eight candidate genes selected based on their known expression patterns and functions. In total, we identified 26 novel variants in autism: 13 exonic (nine non-synonymous, three synonymous, and one untranslated region) and 13 promoter variants. We found a significant association between autism and a coding variant in the seizure-related gene SEZ6L2 (12/1106 autism vs. 3/1161 controls; p = 0.018). Sez6l2 expression in mouse embryos was restricted to the spinal cord and brain. SEZ6L2 expression in human fetal brain was highest in post-mitotic cortical layers, hippocampus, amygdala, and thalamus. Association analysis of SEZ6L2 in an independent sample set failed to replicate our initial findings. CONCLUSIONS/SIGNIFICANCE: We have identified sequence variation in at least one candidate gene in 16p11.2 that may represent a novel genetic risk factor for autism. However, further studies are required to substantiate these preliminary findings. Public Library of Science 2009-02-26 /pmc/articles/PMC2644762/ /pubmed/19242545 http://dx.doi.org/10.1371/journal.pone.0004582 Text en Kumar et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Kumar, Ravinesh A.
Marshall, Christian R.
Badner, Judith A.
Babatz, Timothy D.
Mukamel, Zohar
Aldinger, Kimberly A.
Sudi, Jyotsna
Brune, Camille W.
Goh, Gerald
KaraMohamed, Samer
Sutcliffe, James S.
Cook, Edwin H.
Geschwind, Daniel H.
Dobyns, William B.
Scherer, Stephen W.
Christian, Susan L.
Association and Mutation Analyses of 16p11.2 Autism Candidate Genes
title Association and Mutation Analyses of 16p11.2 Autism Candidate Genes
title_full Association and Mutation Analyses of 16p11.2 Autism Candidate Genes
title_fullStr Association and Mutation Analyses of 16p11.2 Autism Candidate Genes
title_full_unstemmed Association and Mutation Analyses of 16p11.2 Autism Candidate Genes
title_short Association and Mutation Analyses of 16p11.2 Autism Candidate Genes
title_sort association and mutation analyses of 16p11.2 autism candidate genes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2644762/
https://www.ncbi.nlm.nih.gov/pubmed/19242545
http://dx.doi.org/10.1371/journal.pone.0004582
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