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A clinical and molecular characterisation of CRB1-associated maculopathy
Kamron N Khan1,2,3,4, Anthony Robson5, Omar A R Mahroo6,7
1University College London Institute of Ophthalmology, University College London, London, UK. medknk@leeds.ac.uk.
Insights
A specific CRB1 gene variant, c.498_506del, is linked to milder retinal dysfunction, unlike severe Leber congenital amaurosis or retinitis pigmentosa. This finding helps understand CRB1-related macular dystrophy in non-Asian populations.
Area of Science:
- Ophthalmology
- Genetics
- Molecular Biology
Background:
- Over 150 disease-associated variants in the CRB1 gene have been identified, causing various retinal diseases like Leber congenital amaurosis and retinitis pigmentosa.
- Currently, no clear genotype-phenotype correlations exist for CRB1 variants, hindering precise diagnosis and treatment strategies.
Purpose of the Study:
- To investigate the genotype-phenotype correlation of CRB1 variants in patients presenting with macular dystrophy.
- To identify specific CRB1 variants associated with localized retinal dysfunction and milder disease phenotypes.
Main Methods:
- Retrospective review of electronic patient records.
- Clinical examination including fundoscopy and optical coherence tomography (OCT).
- Genetic testing to identify CRB1 variants in affected individuals.
Main Results:
- Seven unrelated individuals with macular dystrophy due to CRB1 variants were identified.
- A specific rare allele, c.498_506del (p.(Ile167_Gly169del)), was present in all patients, suggesting a strong association with localized retinal dysfunction.
- Clinical manifestations were milder than those typically seen with loss-of-function CRB1 variants, indicating the c.498_506del variant acts as a hypomorphic allele.
Conclusions:
- The CRB1 variant c.498_506del is strongly associated with a milder form of macular dystrophy, distinct from severe retinal degenerations.
- This hypomorphic CRB1 allele is the most prevalent disease-causing variant identified in the non-Asian population to date.
- Further research into CRB1 variants can improve understanding and management of inherited retinal diseases.
Abstract:
To date, over 150 disease-associated variants in CRB1 have been described, resulting in a range of retinal disease phenotypes including Leber congenital amaurosis and retinitis pigmentosa. Despite this, no genotype-phenotype correlations are currently recognised. We performed a retrospective review of electronic patient records to identify patients with macular dystrophy due to bi-allelic variants in CRB1. In total, seven unrelated individuals were identified. The median age at presentation was 21 years, with a median acuity of 0.55 decimalised Snellen units (IQR = 0.43). The follow-up period ranged from 0 to 19 years (median = 2.0 years), with a median final decimalised Snellen acuity of 0.65 (IQR = 0.70). Fundoscopy revealed only a subtly altered foveal reflex, which evolved into a bull's-eye pattern of outer retinal atrophy. Optical coherence tomography identified structural changes-intraretinal cysts in the early stages of disease, and later outer retinal atrophy. Genetic testing revealed that one rare allele (c.498_506del, p.(Ile167_Gly169del)) was present in all patients, with one patient being homozygous for the variant and six being heterozygous. In trans with this, one variant recurred twice (p.(Cys896Ter)), while the four remaining alleles were each observed once (p.(Pro1381Thr), p.(Ser478ProfsTer24), p.(Cys195Phe) and p.(Arg764Cys)). These findings show that the rare CRB1 variant, c.498_506del, is strongly associated with localised retinal dysfunction. The clinical findings are much milder than those observed with bi-allelic, loss-of-function variants in CRB1, suggesting this in-frame deletion acts as a hypomorphic allele. This is the most prevalent disease-causing CRB1 variant identified in the non-Asian population to date.
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