An Application of NGS for Molecular Investigations in Perrault Syndrome: Study of 14 Families and Review of the Literature
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Titre | An Application of NGS for Molecular Investigations in Perrault Syndrome: Study of 14 Families and Review of the Literature |
Type de publication | Journal Article |
Year of Publication | 2016 |
Auteurs | Lerat J, Jonard L, Loundon N, Christin-Maitre S, Lacombe D, Goizet C, Rouzier C, Van Maldergem L, Gherbi S, Garabedian E-N, Bonnefont J-P, Touraine P, Mosnier I, Munnich A, Denoyelle F, Marlin S |
Journal | HUMAN MUTATION |
Volume | 37 |
Pagination | 1354-1362 |
Date Published | DEC |
Type of Article | Review |
ISSN | 1059-7794 |
Mots-clés | C10orf2, CLPP, HARS2, HSD17B4, LARS2, NGS, Perrault syndrome |
Résumé | Perrault syndrome (PS) is a rare autosomal recessive condition characterized by deafness and gonadic dysgenesis. Recently, mutations in five genes have been identified: C10orf2, CLPP, HARS2, HSD17B4, and LARS2. Probands included are presented with sensorineural deafness associated with gonadic dysgenesis. DNA was sequenced using next-generation sequencing (NGS) with a panel of 35 deafness genes including the five Perrault genes. Exonic variations known as pathogenic mutations or detected with <1% frequency in public databases were extracted and subjected to segregation analysis within each family. Both mutations and low coverage regions were analyzed by Sanger sequencing. Fourteen female index patients were included. The screening in four cases has been extended to four family members presenting with PS phenotype. For four unrelated patients (28.6%), causative mutations were identified: three homozygous mutations in C10orf2, CLPP, and HARS2, and one compound heterozygous mutation in LARS2. Three additional heterozygous mutations in LARS2 and HSD17B4 were found in three independent familial cases. All these missense mutations were verified by Sanger sequencing. Familial segregation analyses confirmed the molecular diagnosis in all cases carrying biallelic mutations. Because of NGS, molecular analysis confirmed the clinical diagnosis of PS in 28.6% of our cohort and four novel mutations were found in four Perrault genes. For the unsolved cases, exome sequencing should be performed to search for a sixth unknown PS gene. (C) 2016 Wiley Periodicals, Inc. |
DOI | 10.1002/humu.23120 |