» Articles » PMID: 29847639

Toward the Mutational Landscape of Autosomal Dominant Retinitis Pigmentosa: A Comprehensive Analysis of 258 Spanish Families

Abstract

Purpose: To provide a comprehensive overview of the molecular basis of autosomal dominant retinitis pigmentosa (adRP) in Spanish families. Thus, we established the molecular characterization rate, gene prevalence, and mutational spectrum in the largest European cohort reported to date.

Methods: A total of 258 unrelated Spanish families with a clinical diagnosis of RP and suspected autosomal dominant inheritance were included. Clinical diagnosis was based on complete ophthalmologic examination and family history. Retrospective and prospective analysis of Spanish adRP families was carried out using a combined strategy consisting of classic genetic techniques and next-generation sequencing (NGS) for single-nucleotide variants and copy number variation (CNV) screening.

Results: Overall, 60% of our families were genetically solved. Interestingly, 3.1% of the cohort carried pathogenic CNVs. Disease-causing variants were found in an autosomal dominant gene in 55% of the families; however, X-linked and autosomal recessive forms were also identified in 3% and 2%, respectively. Four genes (RHO, PRPF31, RP1, and PRPH2) explained up to 62% of the solved families. Missense changes were most frequently found in adRP-associated genes; however, CNVs represented a relevant disease cause in PRPF31- and CRX-associated forms.

Conclusions: Implementation of NGS technologies in the adRP study clearly increased the diagnostic yield compared with classic approaches. Our study outcome expands the spectrum of disease-causing variants, provides accurate data on mutation gene prevalence, and highlights the implication of CNVs as important contributors to adRP etiology.

Citing Articles

PRPH2 mutation c.582-1G>A causing adult-onset macular dystrophy with a benign concentric annular macular dystrophy phenotype in a family.

Fernandez-Berdasco K, Galvez-Olortegui J, Guillen-Lozada S, Gonzalez N, Castro-Navarro J Arq Bras Oftalmol. 2024; 87(5):e20210478.

PMID: 39298723 PMC: 11623322. DOI: 10.5935/0004-2749.2021-0478.


Large-scale genomic analysis of the domestic dog informs biological discovery.

Buckley R, Ostrander E Genome Res. 2024; 34(6):811-821.

PMID: 38955465 PMC: 11293549. DOI: 10.1101/gr.278569.123.


Retinal Dystrophies Associated With Peripherin-2: Genetic Spectrum and Novel Clinical Observations in 241 Patients.

Heath Jeffery R, Thompson J, Lo J, Chelva E, Armstrong S, Pulido J Invest Ophthalmol Vis Sci. 2024; 65(5):22.

PMID: 38743414 PMC: 11098050. DOI: 10.1167/iovs.65.5.22.


A Precision Therapy Approach for Retinitis Pigmentosa 11 Using Splice-Switching Antisense Oligonucleotides to Restore the Open Reading Frame of PRPF31.

Grainok J, Pitout I, Chen F, McLenachan S, Heath Jeffery R, Mitrpant C Int J Mol Sci. 2024; 25(6).

PMID: 38542364 PMC: 10970544. DOI: 10.3390/ijms25063391.


-Related Retinal Dystrophies: Mutational Spectrum in 103 Families from a Spanish Cohort.

Fernandez-Caballero L, Martin-Merida I, Blanco-Kelly F, Avila-Fernandez A, Carreno E, Fernandez-San Jose P Int J Mol Sci. 2024; 25(5).

PMID: 38474159 PMC: 10931554. DOI: 10.3390/ijms25052913.