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Whole exome sequence analysis in 51 624 participants identifies novel genes and variants associated with refractive error and myopia

Refractive errors are associated with a range of pathological conditions, such as myopic maculopathy and glaucoma, and are highly heritable. Studies of missense and putative loss of function (pLOF) variants identified via whole exome sequencing (WES) offer the prospect of directly implicating potent...

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Autores principales: Guggenheim, Jeremy A, Clark, Rosie, Cui, Jiangtian, Terry, Louise, Patasova, Karina, Haarman, Annechien E G, Musolf, Anthony M, Verhoeven, Virginie J M, Klaver, Caroline C W, Bailey-Wilson, Joan E, Hysi, Pirro G, Williams, Cathy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9169456/
https://www.ncbi.nlm.nih.gov/pubmed/35022715
http://dx.doi.org/10.1093/hmg/ddac004
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author Guggenheim, Jeremy A
Clark, Rosie
Cui, Jiangtian
Terry, Louise
Patasova, Karina
Haarman, Annechien E G
Musolf, Anthony M
Verhoeven, Virginie J M
Klaver, Caroline C W
Bailey-Wilson, Joan E
Hysi, Pirro G
Williams, Cathy
author_facet Guggenheim, Jeremy A
Clark, Rosie
Cui, Jiangtian
Terry, Louise
Patasova, Karina
Haarman, Annechien E G
Musolf, Anthony M
Verhoeven, Virginie J M
Klaver, Caroline C W
Bailey-Wilson, Joan E
Hysi, Pirro G
Williams, Cathy
author_sort Guggenheim, Jeremy A
collection PubMed
description Refractive errors are associated with a range of pathological conditions, such as myopic maculopathy and glaucoma, and are highly heritable. Studies of missense and putative loss of function (pLOF) variants identified via whole exome sequencing (WES) offer the prospect of directly implicating potentially causative disease genes. We performed a genome-wide association study for refractive error in 51 624 unrelated adults, of European ancestry, aged 40–69 years from the UK and genotyped using WES. After testing 29 179 pLOF and 495 263 missense variants, 1 pLOF and 18 missense variants in 14 distinct genomic regions were taken forward for fine-mapping analysis. This yielded 19 putative causal variants of which 18 had a posterior inclusion probability >0.5. Of the 19 putative causal variants, 12 were novel discoveries. Specific variants were associated with a more myopic refractive error, while others were associated with a more hyperopic refractive error. Association with age of onset of spectacle wear (AOSW) was examined in an independent validation sample (38 100 early AOSW cases and 74 243 controls). Of 11 novel variants that could be tested, 8 (73%) showed evidence of association with AOSW status. This work identified COL4A4 and ATM as novel candidate genes associated with refractive error. In addition, novel putative causal variants were identified in the genes RASGEF1, ARMS2, BMP4, SIX6, GSDMA, GNGT2, ZNF652 and CRX. Despite these successes, the study also highlighted the limitations of community-based WES studies compared with high myopia case–control WES studies.
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spelling pubmed-91694562022-06-06 Whole exome sequence analysis in 51 624 participants identifies novel genes and variants associated with refractive error and myopia Guggenheim, Jeremy A Clark, Rosie Cui, Jiangtian Terry, Louise Patasova, Karina Haarman, Annechien E G Musolf, Anthony M Verhoeven, Virginie J M Klaver, Caroline C W Bailey-Wilson, Joan E Hysi, Pirro G Williams, Cathy Hum Mol Genet Association Studies Article Refractive errors are associated with a range of pathological conditions, such as myopic maculopathy and glaucoma, and are highly heritable. Studies of missense and putative loss of function (pLOF) variants identified via whole exome sequencing (WES) offer the prospect of directly implicating potentially causative disease genes. We performed a genome-wide association study for refractive error in 51 624 unrelated adults, of European ancestry, aged 40–69 years from the UK and genotyped using WES. After testing 29 179 pLOF and 495 263 missense variants, 1 pLOF and 18 missense variants in 14 distinct genomic regions were taken forward for fine-mapping analysis. This yielded 19 putative causal variants of which 18 had a posterior inclusion probability >0.5. Of the 19 putative causal variants, 12 were novel discoveries. Specific variants were associated with a more myopic refractive error, while others were associated with a more hyperopic refractive error. Association with age of onset of spectacle wear (AOSW) was examined in an independent validation sample (38 100 early AOSW cases and 74 243 controls). Of 11 novel variants that could be tested, 8 (73%) showed evidence of association with AOSW status. This work identified COL4A4 and ATM as novel candidate genes associated with refractive error. In addition, novel putative causal variants were identified in the genes RASGEF1, ARMS2, BMP4, SIX6, GSDMA, GNGT2, ZNF652 and CRX. Despite these successes, the study also highlighted the limitations of community-based WES studies compared with high myopia case–control WES studies. Oxford University Press 2022-01-12 /pmc/articles/PMC9169456/ /pubmed/35022715 http://dx.doi.org/10.1093/hmg/ddac004 Text en © The Author(s) 2022. Published by Oxford University Press. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Association Studies Article
Guggenheim, Jeremy A
Clark, Rosie
Cui, Jiangtian
Terry, Louise
Patasova, Karina
Haarman, Annechien E G
Musolf, Anthony M
Verhoeven, Virginie J M
Klaver, Caroline C W
Bailey-Wilson, Joan E
Hysi, Pirro G
Williams, Cathy
Whole exome sequence analysis in 51 624 participants identifies novel genes and variants associated with refractive error and myopia
title Whole exome sequence analysis in 51 624 participants identifies novel genes and variants associated with refractive error and myopia
title_full Whole exome sequence analysis in 51 624 participants identifies novel genes and variants associated with refractive error and myopia
title_fullStr Whole exome sequence analysis in 51 624 participants identifies novel genes and variants associated with refractive error and myopia
title_full_unstemmed Whole exome sequence analysis in 51 624 participants identifies novel genes and variants associated with refractive error and myopia
title_short Whole exome sequence analysis in 51 624 participants identifies novel genes and variants associated with refractive error and myopia
title_sort whole exome sequence analysis in 51 624 participants identifies novel genes and variants associated with refractive error and myopia
topic Association Studies Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9169456/
https://www.ncbi.nlm.nih.gov/pubmed/35022715
http://dx.doi.org/10.1093/hmg/ddac004
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