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Published on: January 16, 2019
MERTK missense variants in three patients with retinitis pigmentosa
Federica E Poli1,2, Imran H Yusuf1,2, Penny Clouston3
1Nuffield Laboratory of Ophthalmology, Nuffield Department of Clinical Neurosciences, University of Oxford, Oxford, UK.
Background:
MERTK (MER proto-oncogene, tyrosine kinase) is a transmembrane protein essential in regulating photoreceptor outer segment phagocytosis. Biallelic mutations in MERTK cause retinal degeneration. Here we present the retinal phenotype of three patients with missense variants in MERTK.
Materials And Methods:
All patients underwent a full clinical examination, fundus photography, short-wavelength fundus autofluorescence and optical coherence tomography imaging. Two patients also underwent Goldmann visual field testing and electroretinography was undertaken for the third patient. Molecular genetic testing was undertaken using next generation or whole-exome sequencing with all variants confirmed by Sanger sequencing.
Results:
The first patient was a 29-year-old female heterozygous for a missense variant (c.1133C>T, p.Thr378 Met) and a nonsense variant (c.1744_1751delinsT, p.Ile582Ter) in MERTK. The second patient was a 26-year-old male homozygous for a c.2163T>A, p.His721Gln variant in MERTK. The third patient was an 11-year-old female heterozygous for a deletion of exons 5-19 and a missense variant (c.1866 G>C, p.Lys622Asn) in MERTK. Reduced night vision was the initial symptom in all patients. Fundoscopy revealed typical signs of retinitis pigmentosa (RP) with early-onset macular atrophy. All three MERTK missense variants affect highly conserved residues within functional domains, have low population frequencies and are predicted to be pathogenic in silico.
Conclusions:
We report three missense variants in MERTK and present the associated phenotypic data, which are supportive of non-syndromic RP. MERTK is a promising candidate for viral-mediated gene replacement therapy. Moreover, one variant represents a single nucleotide transition, which is theoretically targetable with CRISPR-Cas9 base-editing.
Insights
This study details three patients with MERTK gene variants causing retinitis pigmentosa. These findings support MERTK as a target for gene therapy and potential gene editing treatments.
Area of Science:
- Ophthalmology
- Genetics
- Molecular Biology
Background:
- MERTK (MER proto-oncogene, tyrosine kinase) is crucial for photoreceptor health.
- Mutations in MERTK are linked to retinal degeneration.
- This study investigates the retinal phenotype of patients with MERTK missense variants.
Observation:
- Three patients with MERTK variants presented with reduced night vision and macular atrophy.
- Clinical examinations included fundus photography, autofluorescence, and OCT.
- Genetic testing identified specific missense and nonsense variants in MERTK.
Findings:
- All identified MERTK missense variants affect conserved residues and are predicted to be pathogenic.
- The clinical presentation was consistent with non-syndromic retinitis pigmentosa (RP).
- Phenotypic data support the role of MERTK variants in RP.
Implications:
- MERTK is a potential target for gene replacement therapy for RP.
- One identified variant is theoretically amenable to CRISPR-Cas9 base editing.
- Understanding MERTK variants advances the genetic basis of retinal diseases.
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