Cargando…

Association of Forced Vital Capacity with the Developmental Gene NCOR2

BACKGROUND: Forced Vital Capacity (FVC) is an important predictor of all-cause mortality in the absence of chronic respiratory conditions. Epidemiological evidence highlights the role of early life factors on adult FVC, pointing to environmental exposures and genes affecting lung development as risk...

Descripción completa

Detalles Bibliográficos
Autores principales: Minelli, Cosetta, Dean, Charlotte H., Hind, Matthew, Alves, Alexessander Couto, Amaral, André F. S., Siroux, Valerie, Huikari, Ville, Soler Artigas, María, Evans, David M., Loth, Daan W., Bossé, Yohan, Postma, Dirkje S., Sin, Don, Thompson, John, Demenais, Florence, Henderson, John, Bouzigon, Emmanuelle, Jarvis, Deborah, Järvelin, Marjo-Riitta, Burney, Peter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4737618/
https://www.ncbi.nlm.nih.gov/pubmed/26836265
http://dx.doi.org/10.1371/journal.pone.0147388
_version_ 1782413495603560448
author Minelli, Cosetta
Dean, Charlotte H.
Hind, Matthew
Alves, Alexessander Couto
Amaral, André F. S.
Siroux, Valerie
Huikari, Ville
Soler Artigas, María
Evans, David M.
Loth, Daan W.
Bossé, Yohan
Postma, Dirkje S.
Sin, Don
Thompson, John
Demenais, Florence
Henderson, John
Bouzigon, Emmanuelle
Jarvis, Deborah
Järvelin, Marjo-Riitta
Burney, Peter
author_facet Minelli, Cosetta
Dean, Charlotte H.
Hind, Matthew
Alves, Alexessander Couto
Amaral, André F. S.
Siroux, Valerie
Huikari, Ville
Soler Artigas, María
Evans, David M.
Loth, Daan W.
Bossé, Yohan
Postma, Dirkje S.
Sin, Don
Thompson, John
Demenais, Florence
Henderson, John
Bouzigon, Emmanuelle
Jarvis, Deborah
Järvelin, Marjo-Riitta
Burney, Peter
author_sort Minelli, Cosetta
collection PubMed
description BACKGROUND: Forced Vital Capacity (FVC) is an important predictor of all-cause mortality in the absence of chronic respiratory conditions. Epidemiological evidence highlights the role of early life factors on adult FVC, pointing to environmental exposures and genes affecting lung development as risk factors for low FVC later in life. Although highly heritable, a small number of genes have been found associated with FVC, and we aimed at identifying further genetic variants by focusing on lung development genes. METHODS: Per-allele effects of 24,728 SNPs in 403 genes involved in lung development were tested in 7,749 adults from three studies (NFBC1966, ECRHS, EGEA). The most significant SNP for the top 25 genes was followed-up in 46,103 adults (CHARGE and SpiroMeta consortia) and 5,062 children (ALSPAC). Associations were considered replicated if the replication p-value survived Bonferroni correction (p<0.002; 0.05/25), with a nominal p-value considered as suggestive evidence. For SNPs with evidence of replication, effects on the expression levels of nearby genes in lung tissue were tested in 1,111 lung samples (Lung eQTL consortium), with further functional investigation performed using public epigenomic profiling data (ENCODE). RESULTS: NCOR2-rs12708369 showed strong replication in children (p = 0.0002), with replication unavailable in adults due to low imputation quality. This intronic variant is in a strong transcriptional enhancer element in lung fibroblasts, but its eQTL effects could not be tested due to low imputation quality in the eQTL dataset. SERPINE2-rs6754561 replicated at nominal level in both adults (p = 0.036) and children (p = 0.045), while WNT16-rs2707469 replicated at nominal level only in adults (p = 0.026). The eQTL analyses showed association of WNT16-rs2707469 with expression levels of the nearby gene CPED1. We found no statistically significant eQTL effects for SERPINE2-rs6754561. CONCLUSIONS: We have identified a new gene, NCOR2, in the retinoic acid signalling pathway pointing to a role of vitamin A metabolism in the regulation of FVC. Our findings also support SERPINE2, a COPD gene with weak previous evidence of association with FVC, and suggest WNT16 as a further promising candidate.
format Online
Article
Text
id pubmed-4737618
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-47376182016-02-04 Association of Forced Vital Capacity with the Developmental Gene NCOR2 Minelli, Cosetta Dean, Charlotte H. Hind, Matthew Alves, Alexessander Couto Amaral, André F. S. Siroux, Valerie Huikari, Ville Soler Artigas, María Evans, David M. Loth, Daan W. Bossé, Yohan Postma, Dirkje S. Sin, Don Thompson, John Demenais, Florence Henderson, John Bouzigon, Emmanuelle Jarvis, Deborah Järvelin, Marjo-Riitta Burney, Peter PLoS One Research Article BACKGROUND: Forced Vital Capacity (FVC) is an important predictor of all-cause mortality in the absence of chronic respiratory conditions. Epidemiological evidence highlights the role of early life factors on adult FVC, pointing to environmental exposures and genes affecting lung development as risk factors for low FVC later in life. Although highly heritable, a small number of genes have been found associated with FVC, and we aimed at identifying further genetic variants by focusing on lung development genes. METHODS: Per-allele effects of 24,728 SNPs in 403 genes involved in lung development were tested in 7,749 adults from three studies (NFBC1966, ECRHS, EGEA). The most significant SNP for the top 25 genes was followed-up in 46,103 adults (CHARGE and SpiroMeta consortia) and 5,062 children (ALSPAC). Associations were considered replicated if the replication p-value survived Bonferroni correction (p<0.002; 0.05/25), with a nominal p-value considered as suggestive evidence. For SNPs with evidence of replication, effects on the expression levels of nearby genes in lung tissue were tested in 1,111 lung samples (Lung eQTL consortium), with further functional investigation performed using public epigenomic profiling data (ENCODE). RESULTS: NCOR2-rs12708369 showed strong replication in children (p = 0.0002), with replication unavailable in adults due to low imputation quality. This intronic variant is in a strong transcriptional enhancer element in lung fibroblasts, but its eQTL effects could not be tested due to low imputation quality in the eQTL dataset. SERPINE2-rs6754561 replicated at nominal level in both adults (p = 0.036) and children (p = 0.045), while WNT16-rs2707469 replicated at nominal level only in adults (p = 0.026). The eQTL analyses showed association of WNT16-rs2707469 with expression levels of the nearby gene CPED1. We found no statistically significant eQTL effects for SERPINE2-rs6754561. CONCLUSIONS: We have identified a new gene, NCOR2, in the retinoic acid signalling pathway pointing to a role of vitamin A metabolism in the regulation of FVC. Our findings also support SERPINE2, a COPD gene with weak previous evidence of association with FVC, and suggest WNT16 as a further promising candidate. Public Library of Science 2016-02-02 /pmc/articles/PMC4737618/ /pubmed/26836265 http://dx.doi.org/10.1371/journal.pone.0147388 Text en © 2016 Minelli 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Minelli, Cosetta
Dean, Charlotte H.
Hind, Matthew
Alves, Alexessander Couto
Amaral, André F. S.
Siroux, Valerie
Huikari, Ville
Soler Artigas, María
Evans, David M.
Loth, Daan W.
Bossé, Yohan
Postma, Dirkje S.
Sin, Don
Thompson, John
Demenais, Florence
Henderson, John
Bouzigon, Emmanuelle
Jarvis, Deborah
Järvelin, Marjo-Riitta
Burney, Peter
Association of Forced Vital Capacity with the Developmental Gene NCOR2
title Association of Forced Vital Capacity with the Developmental Gene NCOR2
title_full Association of Forced Vital Capacity with the Developmental Gene NCOR2
title_fullStr Association of Forced Vital Capacity with the Developmental Gene NCOR2
title_full_unstemmed Association of Forced Vital Capacity with the Developmental Gene NCOR2
title_short Association of Forced Vital Capacity with the Developmental Gene NCOR2
title_sort association of forced vital capacity with the developmental gene ncor2
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4737618/
https://www.ncbi.nlm.nih.gov/pubmed/26836265
http://dx.doi.org/10.1371/journal.pone.0147388
work_keys_str_mv AT minellicosetta associationofforcedvitalcapacitywiththedevelopmentalgenencor2
AT deancharlotteh associationofforcedvitalcapacitywiththedevelopmentalgenencor2
AT hindmatthew associationofforcedvitalcapacitywiththedevelopmentalgenencor2
AT alvesalexessandercouto associationofforcedvitalcapacitywiththedevelopmentalgenencor2
AT amaralandrefs associationofforcedvitalcapacitywiththedevelopmentalgenencor2
AT sirouxvalerie associationofforcedvitalcapacitywiththedevelopmentalgenencor2
AT huikariville associationofforcedvitalcapacitywiththedevelopmentalgenencor2
AT solerartigasmaria associationofforcedvitalcapacitywiththedevelopmentalgenencor2
AT evansdavidm associationofforcedvitalcapacitywiththedevelopmentalgenencor2
AT lothdaanw associationofforcedvitalcapacitywiththedevelopmentalgenencor2
AT bosseyohan associationofforcedvitalcapacitywiththedevelopmentalgenencor2
AT postmadirkjes associationofforcedvitalcapacitywiththedevelopmentalgenencor2
AT sindon associationofforcedvitalcapacitywiththedevelopmentalgenencor2
AT thompsonjohn associationofforcedvitalcapacitywiththedevelopmentalgenencor2
AT demenaisflorence associationofforcedvitalcapacitywiththedevelopmentalgenencor2
AT hendersonjohn associationofforcedvitalcapacitywiththedevelopmentalgenencor2
AT associationofforcedvitalcapacitywiththedevelopmentalgenencor2
AT associationofforcedvitalcapacitywiththedevelopmentalgenencor2
AT bouzigonemmanuelle associationofforcedvitalcapacitywiththedevelopmentalgenencor2
AT jarvisdeborah associationofforcedvitalcapacitywiththedevelopmentalgenencor2
AT jarvelinmarjoriitta associationofforcedvitalcapacitywiththedevelopmentalgenencor2
AT burneypeter associationofforcedvitalcapacitywiththedevelopmentalgenencor2