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ABCA4-associated disease as a model for missing heritability in autosomal recessive disorders: novel noncoding splice, cis-regulatory, structural, and recurrent hypomorphic variants

Authors :
Bernd Wissinger
Thomy de Ravel de l'Argentière
Frans P.M. Cremers
Jim Bauwens
Bart P. Leroy
Riccardo Sangermano
Caroline Van Cauwenbergh
Julie De Zaeytijd
Ana Fakin
Sarah De Jaegere
Toon Rosseel
Mubeen Khan
Gavin Arno
Susanne Kohl
Andrew R. Webster
Meindert De Vries
Elfride De Baere
Rob W.J. Collin
Alejandro Garanto
Irina Balikova
Keren J. Carss
Thalia Van Laethem
Miriam Bauwens
Kim De Leeneer
Marnik Vuylsteke
Sarah Naessens
Yves Sznajer
Timothy J. Cherry
Françoise Sadler
Nicole Weisschuh
Software Languages Lab
Informatics and Applied Informatics
Faculty of Sciences and Bioengineering Sciences
UCL - (SLuc) Centre de génétique médicale UCL
UCL - SSS/IREC/SLUC - Pôle St.-Luc
Source :
Genetics in Medicine, Genetics in Medicine, 21, 1761-1771, Genetics in Medicine, Vol. 21, no.8, p. 1761-1771 (2019), GENETICS IN MEDICINE, Genetics in Medicine, 21, 8, pp. 1761-1771
Publication Year :
2019
Publisher :
Nature Publishing Group US, 2019.

Abstract

PURPOSE: ABCA4-associated disease, a recessive retinal dystrophy, is hallmarked by a large proportion of patients with only one pathogenic ABCA4 variant, suggestive for missing heritability. METHODS: By locus-specific analysis of ABCA4, combined with extensive functional studies, we aimed to unravel the missing alleles in a cohort of 67 patients (p), with one (p = 64) or no (p = 3) identified coding pathogenic variants of ABCA4. RESULTS: We identified eight pathogenic (deep-)intronic ABCA4 splice variants, of which five are novel and six structural variants, four of which are novel, including two duplications. Together, these variants account for the missing alleles in 40.3% of patients. Furthermore, two novel variants with a putative cis-regulatory effect were identified. The common hypomorphic variant c.5603A>T p.(Asn1868Ile) was found as a candidate second allele in 43.3% of patients. Overall, we have elucidated the missing heritability in 83.6% of our cohort. In addition, we successfully rescued three deep-intronic variants using antisense oligonucleotide (AON)-mediated treatment in HEK 293-T cells and in patient-derived fibroblast cells. CONCLUSION: Noncoding pathogenic variants, novel structural variants, and a common hypomorphic allele of the ABCA4 gene explain the majority of unsolved cases with ABCA4-associated disease, rendering this retinopathy a model for missing heritability in autosomal recessive disorders. ispartof: GENETICS IN MEDICINE vol:21 issue:8 pages:1761-1771 ispartof: location:United States status: published

Details

Language :
English
ISSN :
15300366 and 10983600
Volume :
21
Issue :
8
Database :
OpenAIRE
Journal :
Genetics in Medicine
Accession number :
edsair.doi.dedup.....92034d85a57cac93448dd668da98ab2e