| Literature DB >> 29688594 |
Véronique Geoffroy1, Corinne Stoetzel1, Sophie Scheidecker1,2, Elise Schaefer1,3, Isabelle Perrault4, Séverine Bär5, Ariane Kröll1, Marion Delbarre2, Manuela Antin2, Anne-Sophie Leuvrey2, Charline Henry6, Hélène Blanché7, Eva Decker8, Katja Kloth9, Günter Klaus10, Christoph Mache11, Dominique Martin-Coignard12, Steven McGinn13, Anne Boland13, Jean-François Deleuze7,13, Sylvie Friant5, Sophie Saunier6, Jean-Michel Rozet4, Carsten Bergmann8,14, Hélène Dollfus1,15, Jean Muller1,2.
Abstract
Ciliopathies represent a wide spectrum of rare diseases with overlapping phenotypes and a high genetic heterogeneity. Among those, IFT140 is implicated in a variety of phenotypes ranging from isolated retinis pigmentosa to more syndromic cases. Using whole-genome sequencing in patients with uncharacterized ciliopathies, we identified a novel recurrent tandem duplication of exon 27-30 (6.7 kb) in IFT140, c.3454-488_4182+2588dup p.(Tyr1152_Thr1394dup), missed by whole-exome sequencing. Pathogenicity of the mutation was assessed on the patients' skin fibroblasts. Several hundreds of patients with a ciliopathy phenotype were screened and biallelic mutations were identified in 11 families representing 12 pathogenic variants of which seven are novel. Among those unrelated families especially with a Mainzer-Saldino syndrome, eight carried the same tandem duplication (two at the homozygous state and six at the heterozygous state). In conclusion, we demonstrated the implication of structural variations in IFT140-related diseases expanding its mutation spectrum. We also provide evidences for a unique genomic event mediated by an Alu-Alu recombination occurring on a shared haplotype. We confirm that whole-genome sequencing can be instrumental in the ability to detect structural variants for genomic disorders.Entities:
Keywords: Alu-mediated recombination; IFT140; Mainzer-Saldino syndrome; copy number variation; structural variation; tandem duplication; whole-genome sequencing
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Year: 2018 PMID: 29688594 DOI: 10.1002/humu.23539
Source DB: PubMed Journal: Hum Mutat ISSN: 1059-7794 Impact factor: 4.878