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research article

IROme, a New High-Throughput Molecular Tool for the Diagnosis of Inherited Retinal Dystrophies

Schorderet, Daniel F.
•
Iouranova, Alexandra
•
Favez, Tatiana
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2013
Biomed Research International

The molecular diagnosis of retinal dystrophies is difficult because of the very important number of genes implicated and is rarely helped by genotype-phenotype correlations. This prompted us to develop IROme, a custom designed in solution-based targeted exon capture assay (SeqCap EZ Choice library, Roche NimbleGen) for 60 retinitis pigmentosa-linked genes and three candidate genes (942 exons). Pyrosequencing was performed on a Roche 454 GS Junior benchtop high-throughput sequencing platform. In total, 23 patients affected by retinitis pigmentosa were analyzed. Per patient, 39.6 Mb were generated, and 1111 sequence variants were detected on average, at a median coverage of 17-fold. After data filtering and sequence variant prioritization, disease-causing mutations were identified in ABCA4, CNGB1, GUCY2D, PROM1, PRPF8, PRPF31, PRPH2, RHO, RP2, and TULP1 for twelve patients (55%), ten mutations having never been reported previously. Potential mutations were identified in 5 additional patients, and in only 6 patients no molecular diagnosis could be established (26%). In conclusion, targeted exon capture and next-generation sequencing are a valuable and efficient approach to identify disease-causing sequence variants in retinal dystrophies.

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Type
research article
DOI
10.1155/2013/198089
Web of Science ID

WOS:000314414300001

Author(s)
Schorderet, Daniel F.
Iouranova, Alexandra
Favez, Tatiana
Tiab, Leila
Escher, Pascal
Date Issued

2013

Publisher

Hindawi Publishing Corporation

Published in
Biomed Research International
Article Number

198089

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
SV  
Available on Infoscience
March 28, 2013
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/90956
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