Multitrait analysis of glaucoma identifies new risk loci and enables polygenic prediction of disease susceptibility and progression

被引:0
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作者
Jamie E. Craig
Xikun Han
Ayub Qassim
Mark Hassall
Jessica N. Cooke Bailey
Tyler G. Kinzy
Anthony P. Khawaja
Jiyuan An
Henry Marshall
Puya Gharahkhani
Robert P. Igo
Stuart L. Graham
Paul R. Healey
Jue-Sheng Ong
Tiger Zhou
Owen Siggs
Matthew H. Law
Emmanuelle Souzeau
Bronwyn Ridge
Pirro G. Hysi
Kathryn P. Burdon
Richard A. Mills
John Landers
Jonathan B. Ruddle
Ashish Agar
Anna Galanopoulos
Andrew J. R. White
Colin E. Willoughby
Nicholas H. Andrew
Stephen Best
Andrea L. Vincent
Ivan Goldberg
Graham Radford-Smith
Nicholas G. Martin
Grant W. Montgomery
Veronique Vitart
Rene Hoehn
Robert Wojciechowski
Jost B. Jonas
Tin Aung
Louis R. Pasquale
Angela Jane Cree
Sobha Sivaprasad
Neeru A. Vallabh
Ananth C. Viswanathan
Francesca Pasutto
Jonathan L. Haines
Caroline C. W. Klaver
Cornelia M. van Duijn
Robert J. Casson
机构
[1] Flinders University,Department of Ophthalmology
[2] Flinders Medical Centre,School of Medicine
[3] Queensland Institute of Medical Research Berghofer Medical Research Institute,Department of Population and Quantitative Health Sciences, Institute for Computational Biology
[4] University of Queensland,Faculty of Medicine and Health Sciences
[5] Case Western Reserve University School of Medicine,Centre for Vision Research, Westmead Institute for Medical Research
[6] National Institute for Health Research Biomedical Research Centre,Clinical Ophthalmology & Eye Health, Westmead Clinical School
[7] Moorfields Eye Hospital NHS Foundation Trust and UCL Institute of Ophthalmology,Department of Ophthalmology
[8] Macquarie University,Menzies Institute for Medical Research
[9] University of Sydney,Centre for Eye Research Australia
[10] University of Sydney,Department of Ophthalmology
[11] King’s College London,South Australian Institute of Ophthalmology
[12] St. Thomas’ Hospital,Biomedical Sciences Research Institute
[13] University of Tasmania,Department of Ophthalmology
[14] University of Melbourne,Discipline of Ophthalmology, Faculty of Medicine and Health
[15] Prince of Wales Hospital Randwick,Institute for Molecular Bioscience
[16] Royal Adelaide Hospital,Medical Research Council Human Genetics Unit, Medical Research Council Institute of Genetics and Molecular Medicine
[17] Ulster University,Department of Ophthalmology, University Hospital Bern, Inselspital
[18] Royal Victoria Hospital,Department of Ophthalmology
[19] Belfast Health and Social Care Trust,Department of Epidemiology and Medicine
[20] Eye Department,Department of Ophthalmology
[21] Greenlane Clinical Centre,Department of Ophthalmology
[22] Auckland District Health Board,Clinical and Experimental Sciences, Faculty of Medicine
[23] University of Auckland,Department of Eye and Vision Science, Institute of Ageing and Chronic Disease
[24] University of Sydney,St Paul’s Eye Unit
[25] Sydney Eye Hospital,Institute of Human Genetics
[26] University of Queensland,Department of Ophthalmology
[27] University of Edinburgh,Department of Epidemiology
[28] University of Bern,South Australian Institute of Ophthalmology
[29] University Medical Center Mainz,Lions Eye Institute, Centre for Ophthalmology and Vision Sciences
[30] Johns Hopkins Bloomberg School of Public Health,Department of Ophthalmology and Westmead Institute for Medical Research
[31] Computational and Statistical Genomics Branch,Department of Ophthalmology, Harvard Medical School
[32] National Human Genome Research Institute,undefined
[33] National Institutes of Health,undefined
[34] Medical Faculty Mannheim of the Ruprecht-Karls-University of Heidelberg,undefined
[35] Singapore Eye Research Institute,undefined
[36] Singapore National Eye Centre,undefined
[37] Icahn School of Medicine at Mount Sinai,undefined
[38] University of Southampton,undefined
[39] National Institute for Health Research Moorfields Biomedical Research Centre,undefined
[40] University of Liverpool,undefined
[41] Royal Liverpool University Hospital,undefined
[42] Friedrich-Alexander-Universität Erlangen-Nürnberg,undefined
[43] Erasmus Medical Center,undefined
[44] Erasmus Medical Center,undefined
[45] University of Adelaide,undefined
[46] University of Western Australia,undefined
[47] University of Sydney,undefined
[48] Massachusetts Eye and Ear Infirmary,undefined
来源
Nature Genetics | 2020年 / 52卷
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摘要
Glaucoma, a disease characterized by progressive optic nerve degeneration, can be prevented through timely diagnosis and treatment. We characterize optic nerve photographs of 67,040 UK Biobank participants and use a multitrait genetic model to identify risk loci for glaucoma. A glaucoma polygenic risk score (PRS) enables effective risk stratification in unselected glaucoma cases and modifies penetrance of the MYOC variant encoding p.Gln368Ter, the most common glaucoma-associated myocilin variant. In the unselected glaucoma population, individuals in the top PRS decile reach an absolute risk for glaucoma 10 years earlier than the bottom decile and are at 15-fold increased risk of developing advanced glaucoma (top 10% versus remaining 90%, odds ratio = 4.20). The PRS predicts glaucoma progression in prospectively monitored, early manifest glaucoma cases (P = 0.004) and surgical intervention in advanced disease (P = 3.6 × 10−6). This glaucoma PRS will facilitate the development of a personalized approach for earlier treatment of high-risk individuals, with less intensive monitoring and treatment being possible for lower-risk groups.
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页码:160 / 166
页数:6
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