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Mutations in the spliceosome component CWC27 cause retinal degeneration with or without additional developmental anomalies

Title: Mutations in the spliceosome component CWC27 cause retinal degeneration with or without additional developmental anomalies
Authors: Xu, M; Xie, YA; Abouzeid, H; Gordon, CT; Fiorentino, A; Sun, Z; Lehman, A; Osman, IS; Dharmat, R; Riveiro-Alvarez, R; Bapst-Wicht, L; Babino, D; Arno, G; Busetto, V; Zhao, L; Li, H; Lopez-Martinez, MA; Azevedo, LF; Hubert, L; Pontikos, N; Eblimit, A; Lorda-Sanchez, I; Kheir, V; Plagnol, V; Oufadem, M; Soens, ZT; Yang, L; Bole-Feysot, C; Pfundt, R; Allaman-Pillet, N; Nitschké, P; Cheetham, ME; Lyonnet, S; Agrawal, SA; Pinton, G; Michaelides, M; Besmond, C; Li, Y; Yuan, Z; Von Lintig, J; Webster, AR; Le Hir, H; Stoilov, P; Consortium, UK Inherited Retinal Dystrophy; Halford, S; Amiel, J; Hardcastle, AJ; Ayuso, C; Sui, R; Chen, R; Allikmets, R; Schorderet, DF
Publisher Information: Elsevier
Publication Year: 2018
Collection: Oxford University Research Archive (ORA)
Description: Pre-mRNA splicing factors play a fundamental role in regulating transcript diversity both temporally and spatially. Genetic defects in several spliceosome components have been linked to a set of non-overlapping spliceosomopathy phenotypes in humans, among which skeletal developmental defects and non-syndromic retinitis pigmentosa (RP) are frequent findings. Here we report that defects in spliceosome-associated protein CWC27 are associated with a spectrum of disease phenotypes ranging from isolated RP to severe syndromic forms. By whole-exome sequencing, recessive protein-truncating mutations in CWC27 were found in seven unrelated families that show a range of clinical phenotypes, including retinal degeneration, brachydactyly, craniofacial abnormalities, short stature, and neurological defects. Remarkably, variable expressivity of the human phenotype can be recapitulated in Cwc27 mutant mouse models, with significant embryonic lethality and severe phenotypes in the complete knockout mice while mice with a partial loss-of-function allele mimic the isolated retinal degeneration phenotype. Our study describes a retinal dystrophy-related phenotype spectrum as well as its genetic etiology and highlights the complexity of the spliceosomal gene network.
Document Type: article in journal/newspaper
Language: English
Relation: https://doi.org/10.1016/j.ajhg.2017.02.008
DOI: 10.1016/j.ajhg.2017.02.008
Availability: https://doi.org/10.1016/j.ajhg.2017.02.008; https://ora.ox.ac.uk/objects/uuid:a808a1e4-379a-4ff4-84ca-df4324613453
Rights: info:eu-repo/semantics/openAccess
Accession Number: edsbas.3736FB48
Database: BASE