Development of a Genotype Assay for Age-Related Macular Degeneration

Anita de Breuk(Radboud University Nijmegen), İlhan E. Acar(Radboud University Nijmegen), Eveline Kersten(Radboud University Nijmegen), Mascha M.V.A.P. Schijvenaars(Radboud University Nijmegen), Johanna M. Colijn(Erasmus MC), Lonneke Haer‐Wigman(Radboud University Nijmegen), Bjorn Bakker(Radboud University Nijmegen), Sarah de Jong(Radboud University Nijmegen), Magda A. Meester‐Smoor(Erasmus MC), Timo Verzijden(Erasmus MC), Tom Missotten(Rotterdam Eye Hospital), Jordi Monés(Barcelona Macula Foundation), Marc Biarnés(Barcelona Macula Foundation), Daniel Pauleikhoff(St. Franziskus Hospital), Hans W. Hense(University of Münster), Rufino Silva(Hospitais da Universidade de Coimbra), Sandrina Nunes(Association for Innovation and Biomedical Research on Light and Image), Joana Barbosa Melo(University of Coimbra), Sascha Fauser(University Hospital Cologne), Carel B. Hoyng(Radboud University Nijmegen), Marius Ueffing(STZ eyetrial), Marieke J. H. Coenen(Radboud University Nijmegen), Caroline C. W. Klaver(Radboud University Nijmegen), Anneke I. den Hollander(Radboud University Nijmegen), Soufiane Ajana, Audrey Cougnard‐Grégoire, Cécile Delcourt, B. Merle, Blanca Arango‐González, Sascha Dammeier(University Hospital Cologne), Sigrid Diether, Sabina Honisch, Ellen Kilger, Marius Ueffing(STZ eyetrial), Tanja Endermann, Markus Zumbansen, Franz Badura, Berta de la Cerda, Marc Biarnés(Barcelona Macula Foundation), Anna Borrell(Erasmus MC), Lucia L. Ferraro, Míriam Garcia, Jordi Monés(Barcelona Macula Foundation), Eduardo Rodríguez, Johanna M. Colijn(Erasmus MC), M. Arfan Ikram, Caroline C. W. Klaver(Radboud University Nijmegen), Magda A. Meester‐Smoor(Erasmus MC), Timo Verzijden(Erasmus MC), Johannes Vingerling, Anneke I. den Hollander(Radboud University Nijmegen), Thomas J. Heesterbeek, Caroline C. W. Klaver(Radboud University Nijmegen), Eveline Kersten(Radboud University Nijmegen), Eiko K. de Jong(Radboud University Nijmegen), İlhan E. Acar(Radboud University Nijmegen), Anita de Breuk(Radboud University Nijmegen), Eszter Emri, Imre Lengyel, Hanno Langen, Everson Nogoceke, Tünde Pető, Philip J. Luthert, Frances M. Pool
Ophthalmology
July 24, 2020
Cited by 59Open Access
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Abstract

PURPOSE: To develop a genotype assay to assess associations with common and rare age-related macular degeneration (AMD) risk variants, to calculate an overall genetic risk score (GRS), and to identify potential misdiagnoses with inherited macular dystrophies that mimic AMD. DESIGN: Case-control study. PARTICIPANTS: Individuals (n = 4740) from 5 European cohorts. METHODS: We designed single-molecule molecular inversion probes for target selection and used next generation sequencing to sequence 87 single nucleotide polymorphisms (SNPs), coding and splice-site regions of 10 AMD-(related) genes (ARMS2, C3, C9, CD46, CFB, CFH, CFI, HTRA1, TIMP3, and SLC16A8), and 3 genes that cause inherited macular dystrophies (ABCA4, CTNNA1, and PRPH2). Genetic risk scores for common AMD risk variants were calculated based on effect size and genotype of 52 AMD-associated variants. Frequency of rare variants was compared between late AMD patients and control individuals with logistic regression analysis. MAIN OUTCOME MEASURES: Genetic risk score, association of genetic variants with AMD, and genotype-phenotype correlations. RESULTS: We observed high concordance rates between our platform and other genotyping platforms for the 69 successfully genotyped SNPs (>96%) and for the rare variants (>99%). We observed a higher GRS for patients with late AMD compared with patients with early/intermediate AMD (P < 0.001) and individuals without AMD (P < 0.001). A higher proportion of pathogenic variants in the CFH (odds ratio [OR] = 2.88; P = 0.006), CFI (OR = 4.45; P = 0.005), and C3 (OR = 6.56; P = 0.0003) genes was observed in late AMD patients compared with control individuals. In 9 patients, we identified pathogenic variants in the PRPH2, ABCA4, and CTNNA1 genes, which allowed reclassification of these patients as having inherited macular dystrophy. CONCLUSIONS: This study reports a genotype assay for common and rare AMD genetic variants, which can identify individuals at intermediate to high genetic risk of late AMD and enables differential diagnosis of AMD-mimicking dystrophies. Our study supports sequencing of CFH, CFI, and C3 genes because they harbor rare high-risk variants. Carriers of these variants could be amendable for new treatments for AMD that currently are under development.


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