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Genome-Wide Scan Informed by Age-Related Disease Identifies Loci for Exceptional Human Longevity

We developed a new statistical framework to find genetic variants associated with extreme longevity. The method, informed GWAS (iGWAS), takes advantage of knowledge from large studies of age-related disease in order to narrow the search for SNPs associated with longevity. To gain support for our app...

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Autores principales: Fortney, Kristen, Dobriban, Edgar, Garagnani, Paolo, Pirazzini, Chiara, Monti, Daniela, Mari, Daniela, Atzmon, Gil, Barzilai, Nir, Franceschi, Claudio, Owen, Art B., Kim, Stuart K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4683064/
https://www.ncbi.nlm.nih.gov/pubmed/26677855
http://dx.doi.org/10.1371/journal.pgen.1005728
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author Fortney, Kristen
Dobriban, Edgar
Garagnani, Paolo
Pirazzini, Chiara
Monti, Daniela
Mari, Daniela
Atzmon, Gil
Barzilai, Nir
Franceschi, Claudio
Owen, Art B.
Kim, Stuart K.
author_facet Fortney, Kristen
Dobriban, Edgar
Garagnani, Paolo
Pirazzini, Chiara
Monti, Daniela
Mari, Daniela
Atzmon, Gil
Barzilai, Nir
Franceschi, Claudio
Owen, Art B.
Kim, Stuart K.
author_sort Fortney, Kristen
collection PubMed
description We developed a new statistical framework to find genetic variants associated with extreme longevity. The method, informed GWAS (iGWAS), takes advantage of knowledge from large studies of age-related disease in order to narrow the search for SNPs associated with longevity. To gain support for our approach, we first show there is an overlap between loci involved in disease and loci associated with extreme longevity. These results indicate that several disease variants may be depleted in centenarians versus the general population. Next, we used iGWAS to harness information from 14 meta-analyses of disease and trait GWAS to identify longevity loci in two studies of long-lived humans. In a standard GWAS analysis, only one locus in these studies is significant (APOE/TOMM40) when controlling the false discovery rate (FDR) at 10%. With iGWAS, we identify eight genetic loci to associate significantly with exceptional human longevity at FDR < 10%. We followed up the eight lead SNPs in independent cohorts, and found replication evidence of four loci and suggestive evidence for one more with exceptional longevity. The loci that replicated (FDR < 5%) included APOE/TOMM40 (associated with Alzheimer’s disease), CDKN2B/ANRIL (implicated in the regulation of cellular senescence), ABO (tags the O blood group), and SH2B3/ATXN2 (a signaling gene that extends lifespan in Drosophila and a gene involved in neurological disease). Our results implicate new loci in longevity and reveal a genetic overlap between longevity and age-related diseases and traits, including coronary artery disease and Alzheimer’s disease. iGWAS provides a new analytical strategy for uncovering SNPs that influence extreme longevity, and can be applied more broadly to boost power in other studies of complex phenotypes.
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spelling pubmed-46830642015-12-31 Genome-Wide Scan Informed by Age-Related Disease Identifies Loci for Exceptional Human Longevity Fortney, Kristen Dobriban, Edgar Garagnani, Paolo Pirazzini, Chiara Monti, Daniela Mari, Daniela Atzmon, Gil Barzilai, Nir Franceschi, Claudio Owen, Art B. Kim, Stuart K. PLoS Genet Research Article We developed a new statistical framework to find genetic variants associated with extreme longevity. The method, informed GWAS (iGWAS), takes advantage of knowledge from large studies of age-related disease in order to narrow the search for SNPs associated with longevity. To gain support for our approach, we first show there is an overlap between loci involved in disease and loci associated with extreme longevity. These results indicate that several disease variants may be depleted in centenarians versus the general population. Next, we used iGWAS to harness information from 14 meta-analyses of disease and trait GWAS to identify longevity loci in two studies of long-lived humans. In a standard GWAS analysis, only one locus in these studies is significant (APOE/TOMM40) when controlling the false discovery rate (FDR) at 10%. With iGWAS, we identify eight genetic loci to associate significantly with exceptional human longevity at FDR < 10%. We followed up the eight lead SNPs in independent cohorts, and found replication evidence of four loci and suggestive evidence for one more with exceptional longevity. The loci that replicated (FDR < 5%) included APOE/TOMM40 (associated with Alzheimer’s disease), CDKN2B/ANRIL (implicated in the regulation of cellular senescence), ABO (tags the O blood group), and SH2B3/ATXN2 (a signaling gene that extends lifespan in Drosophila and a gene involved in neurological disease). Our results implicate new loci in longevity and reveal a genetic overlap between longevity and age-related diseases and traits, including coronary artery disease and Alzheimer’s disease. iGWAS provides a new analytical strategy for uncovering SNPs that influence extreme longevity, and can be applied more broadly to boost power in other studies of complex phenotypes. Public Library of Science 2015-12-17 /pmc/articles/PMC4683064/ /pubmed/26677855 http://dx.doi.org/10.1371/journal.pgen.1005728 Text en © 2015 Fortney 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
Fortney, Kristen
Dobriban, Edgar
Garagnani, Paolo
Pirazzini, Chiara
Monti, Daniela
Mari, Daniela
Atzmon, Gil
Barzilai, Nir
Franceschi, Claudio
Owen, Art B.
Kim, Stuart K.
Genome-Wide Scan Informed by Age-Related Disease Identifies Loci for Exceptional Human Longevity
title Genome-Wide Scan Informed by Age-Related Disease Identifies Loci for Exceptional Human Longevity
title_full Genome-Wide Scan Informed by Age-Related Disease Identifies Loci for Exceptional Human Longevity
title_fullStr Genome-Wide Scan Informed by Age-Related Disease Identifies Loci for Exceptional Human Longevity
title_full_unstemmed Genome-Wide Scan Informed by Age-Related Disease Identifies Loci for Exceptional Human Longevity
title_short Genome-Wide Scan Informed by Age-Related Disease Identifies Loci for Exceptional Human Longevity
title_sort genome-wide scan informed by age-related disease identifies loci for exceptional human longevity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4683064/
https://www.ncbi.nlm.nih.gov/pubmed/26677855
http://dx.doi.org/10.1371/journal.pgen.1005728
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