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Whole-Genome Sequencing of Individuals from a Founder Population Identifies Candidate Genes for Asthma

Asthma is a complex genetic disease caused by a combination of genetic and environmental risk factors. We sought to test classes of genetic variants largely missed by genome-wide association studies (GWAS), including copy number variants (CNVs) and low-frequency variants, by performing whole-genome...

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Autores principales: Campbell, Catarina D., Mohajeri, Kiana, Malig, Maika, Hormozdiari, Fereydoun, Nelson, Benjamin, Du, Gaixin, Patterson, Kristen M., Eng, Celeste, Torgerson, Dara G., Hu, Donglei, Herman, Catherine, Chong, Jessica X., Ko, Arthur, O'Roak, Brian J., Krumm, Niklas, Vives, Laura, Lee, Choli, Roth, Lindsey A., Rodriguez-Cintron, William, Rodriguez-Santana, Jose, Brigino-Buenaventura, Emerita, Davis, Adam, Meade, Kelley, LeNoir, Michael A., Thyne, Shannon, Jackson, Daniel J., Gern, James E., Lemanske, Robert F., Shendure, Jay, Abney, Mark, Burchard, Esteban G., Ober, Carole, Eichler, Evan E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4130548/
https://www.ncbi.nlm.nih.gov/pubmed/25116239
http://dx.doi.org/10.1371/journal.pone.0104396
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author Campbell, Catarina D.
Mohajeri, Kiana
Malig, Maika
Hormozdiari, Fereydoun
Nelson, Benjamin
Du, Gaixin
Patterson, Kristen M.
Eng, Celeste
Torgerson, Dara G.
Hu, Donglei
Herman, Catherine
Chong, Jessica X.
Ko, Arthur
O'Roak, Brian J.
Krumm, Niklas
Vives, Laura
Lee, Choli
Roth, Lindsey A.
Rodriguez-Cintron, William
Rodriguez-Santana, Jose
Brigino-Buenaventura, Emerita
Davis, Adam
Meade, Kelley
LeNoir, Michael A.
Thyne, Shannon
Jackson, Daniel J.
Gern, James E.
Lemanske, Robert F.
Shendure, Jay
Abney, Mark
Burchard, Esteban G.
Ober, Carole
Eichler, Evan E.
author_facet Campbell, Catarina D.
Mohajeri, Kiana
Malig, Maika
Hormozdiari, Fereydoun
Nelson, Benjamin
Du, Gaixin
Patterson, Kristen M.
Eng, Celeste
Torgerson, Dara G.
Hu, Donglei
Herman, Catherine
Chong, Jessica X.
Ko, Arthur
O'Roak, Brian J.
Krumm, Niklas
Vives, Laura
Lee, Choli
Roth, Lindsey A.
Rodriguez-Cintron, William
Rodriguez-Santana, Jose
Brigino-Buenaventura, Emerita
Davis, Adam
Meade, Kelley
LeNoir, Michael A.
Thyne, Shannon
Jackson, Daniel J.
Gern, James E.
Lemanske, Robert F.
Shendure, Jay
Abney, Mark
Burchard, Esteban G.
Ober, Carole
Eichler, Evan E.
author_sort Campbell, Catarina D.
collection PubMed
description Asthma is a complex genetic disease caused by a combination of genetic and environmental risk factors. We sought to test classes of genetic variants largely missed by genome-wide association studies (GWAS), including copy number variants (CNVs) and low-frequency variants, by performing whole-genome sequencing (WGS) on 16 individuals from asthma-enriched and asthma-depleted families. The samples were obtained from an extended 13-generation Hutterite pedigree with reduced genetic heterogeneity due to a small founding gene pool and reduced environmental heterogeneity as a result of a communal lifestyle. We sequenced each individual to an average depth of 13-fold, generated a comprehensive catalog of genetic variants, and tested the most severe mutations for association with asthma. We identified and validated 1960 CNVs, 19 nonsense or splice-site single nucleotide variants (SNVs), and 18 insertions or deletions that were out of frame. As follow-up, we performed targeted sequencing of 16 genes in 837 cases and 540 controls of Puerto Rican ancestry and found that controls carry a significantly higher burden of mutations in IL27RA (2.0% of controls; 0.23% of cases; nominal p = 0.004; Bonferroni p = 0.21). We also genotyped 593 CNVs in 1199 Hutterite individuals. We identified a nominally significant association (p = 0.03; Odds ratio (OR) = 3.13) between a 6 kbp deletion in an intron of NEDD4L and increased risk of asthma. We genotyped this deletion in an additional 4787 non-Hutterite individuals (nominal p = 0.056; OR = 1.69). NEDD4L is expressed in bronchial epithelial cells, and conditional knockout of this gene in the lung in mice leads to severe inflammation and mucus accumulation. Our study represents one of the early instances of applying WGS to complex disease with a large environmental component and demonstrates how WGS can identify risk variants, including CNVs and low-frequency variants, largely untested in GWAS.
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spelling pubmed-41305482014-08-14 Whole-Genome Sequencing of Individuals from a Founder Population Identifies Candidate Genes for Asthma Campbell, Catarina D. Mohajeri, Kiana Malig, Maika Hormozdiari, Fereydoun Nelson, Benjamin Du, Gaixin Patterson, Kristen M. Eng, Celeste Torgerson, Dara G. Hu, Donglei Herman, Catherine Chong, Jessica X. Ko, Arthur O'Roak, Brian J. Krumm, Niklas Vives, Laura Lee, Choli Roth, Lindsey A. Rodriguez-Cintron, William Rodriguez-Santana, Jose Brigino-Buenaventura, Emerita Davis, Adam Meade, Kelley LeNoir, Michael A. Thyne, Shannon Jackson, Daniel J. Gern, James E. Lemanske, Robert F. Shendure, Jay Abney, Mark Burchard, Esteban G. Ober, Carole Eichler, Evan E. PLoS One Research Article Asthma is a complex genetic disease caused by a combination of genetic and environmental risk factors. We sought to test classes of genetic variants largely missed by genome-wide association studies (GWAS), including copy number variants (CNVs) and low-frequency variants, by performing whole-genome sequencing (WGS) on 16 individuals from asthma-enriched and asthma-depleted families. The samples were obtained from an extended 13-generation Hutterite pedigree with reduced genetic heterogeneity due to a small founding gene pool and reduced environmental heterogeneity as a result of a communal lifestyle. We sequenced each individual to an average depth of 13-fold, generated a comprehensive catalog of genetic variants, and tested the most severe mutations for association with asthma. We identified and validated 1960 CNVs, 19 nonsense or splice-site single nucleotide variants (SNVs), and 18 insertions or deletions that were out of frame. As follow-up, we performed targeted sequencing of 16 genes in 837 cases and 540 controls of Puerto Rican ancestry and found that controls carry a significantly higher burden of mutations in IL27RA (2.0% of controls; 0.23% of cases; nominal p = 0.004; Bonferroni p = 0.21). We also genotyped 593 CNVs in 1199 Hutterite individuals. We identified a nominally significant association (p = 0.03; Odds ratio (OR) = 3.13) between a 6 kbp deletion in an intron of NEDD4L and increased risk of asthma. We genotyped this deletion in an additional 4787 non-Hutterite individuals (nominal p = 0.056; OR = 1.69). NEDD4L is expressed in bronchial epithelial cells, and conditional knockout of this gene in the lung in mice leads to severe inflammation and mucus accumulation. Our study represents one of the early instances of applying WGS to complex disease with a large environmental component and demonstrates how WGS can identify risk variants, including CNVs and low-frequency variants, largely untested in GWAS. Public Library of Science 2014-08-12 /pmc/articles/PMC4130548/ /pubmed/25116239 http://dx.doi.org/10.1371/journal.pone.0104396 Text en © 2014 Campbell 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
Campbell, Catarina D.
Mohajeri, Kiana
Malig, Maika
Hormozdiari, Fereydoun
Nelson, Benjamin
Du, Gaixin
Patterson, Kristen M.
Eng, Celeste
Torgerson, Dara G.
Hu, Donglei
Herman, Catherine
Chong, Jessica X.
Ko, Arthur
O'Roak, Brian J.
Krumm, Niklas
Vives, Laura
Lee, Choli
Roth, Lindsey A.
Rodriguez-Cintron, William
Rodriguez-Santana, Jose
Brigino-Buenaventura, Emerita
Davis, Adam
Meade, Kelley
LeNoir, Michael A.
Thyne, Shannon
Jackson, Daniel J.
Gern, James E.
Lemanske, Robert F.
Shendure, Jay
Abney, Mark
Burchard, Esteban G.
Ober, Carole
Eichler, Evan E.
Whole-Genome Sequencing of Individuals from a Founder Population Identifies Candidate Genes for Asthma
title Whole-Genome Sequencing of Individuals from a Founder Population Identifies Candidate Genes for Asthma
title_full Whole-Genome Sequencing of Individuals from a Founder Population Identifies Candidate Genes for Asthma
title_fullStr Whole-Genome Sequencing of Individuals from a Founder Population Identifies Candidate Genes for Asthma
title_full_unstemmed Whole-Genome Sequencing of Individuals from a Founder Population Identifies Candidate Genes for Asthma
title_short Whole-Genome Sequencing of Individuals from a Founder Population Identifies Candidate Genes for Asthma
title_sort whole-genome sequencing of individuals from a founder population identifies candidate genes for asthma
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4130548/
https://www.ncbi.nlm.nih.gov/pubmed/25116239
http://dx.doi.org/10.1371/journal.pone.0104396
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