The first genetic landscape of inherited retinal dystrophies in Portuguese patients identifies recurrent homozygous mutations as a frequent cause of pathogenesis

Author:

Peter Virginie G123ORCID,Kaminska Karolina12ORCID,Santos Cristina45ORCID,Quinodoz Mathieu126ORCID,Cancellieri Francesca12ORCID,Cisarova Katarina7ORCID,Pescini Gobert Rosanna7ORCID,Rodrigues Raquel8,Custódio Sónia8,Paris Liliana P4ORCID,Sousa Ana Berta89ORCID,Coutinho Santos Luisa4ORCID,Rivolta Carlo126ORCID

Affiliation:

1. Institute of Molecular and Clinical Ophthalmology Basel (IOB) , Basel 4031 , Switzerland

2. Department of Ophthalmology, University of Basel , Basel 4031 , Switzerland

3. Department of Ophthalmology, Inselspital, Bern University Hospital , Bern 3010 , Switzerland

4. Department of Ophthalmology, Instituto de Oftalmologia Dr Gama Pinto (IOGP) , Lisbon 1169-019 , Portugal

5. iNOVA4Health, NOVA Medical School, Faculdade de Ciências Médicas, NMS, FCM, Universidade NOVA de Lisboa , Lisbon 1169-056 , Portugal

6. Department of Genetics and Genome Biology, University of Leicester , Leicester LE1 7RH , UK

7. Department of Computational Biology, University of Lausanne , Lausanne 1015 , Switzerland

8. Department of Medical Genetics, Hospital Santa Maria, Centro Hospitalar Universitário Lisboa Norte (CHULN) , Lisbon 1649-035 , Portugal

9. Laboratory of Basic Immunology, Faculty of Medicine, University of Lisbon , Lisbon 1649-028 , Portugal

Abstract

Abstract Inherited retinal diseases (IRDs) are a group of ocular conditions characterized by an elevated genetic and clinical heterogeneity. They are transmitted almost invariantly as monogenic traits. However, with more than 280 disease genes identified so far, association of clinical phenotypes with genotypes can be very challenging, and molecular diagnosis is essential for genetic counseling and correct management of the disease. In addition, the prevalence and the assortment of IRD mutations are often population-specific. In this work, we examined 230 families from Portugal, with individuals suffering from a variety of IRD diagnostic classes (270 subjects in total). Overall, we identified 157 unique mutations (34 previously unreported) in 57 distinct genes, with a diagnostic rate of 76%. The IRD mutational landscape was, to some extent, different from those reported in other European populations, including Spanish cohorts. For instance, the EYS gene appeared to be the most frequently mutated, with a prevalence of 10% among all IRD cases. This was, in part, due to the presence of a recurrent and seemingly founder mutation involving the deletion of exons 13 and 14 of this gene. Moreover, our analysis highlighted that as many as 51% of our cases had mutations in a homozygous state. To our knowledge, this is the first study assessing a cross-sectional genotype–phenotype landscape of IRDs in Portugal. Our data reveal a rather unique distribution of mutations, possibly shaped by a small number of rare ancestral events that have now become prevalent alleles in patients.

Funder

Swiss National Science Foundation

Publisher

Oxford University Press (OUP)

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