Functional characterization of novel MFSD8 pathogenic variants anticipates neurological involvement in juvenile
Miriam Bauwens1, Stephan Storch2, Nicole Weisschuh3
1Center for Medical Genetics, Ghent University, Ghent, Belgium.
Abstract:
Biallelic MFSD8 variants are an established cause of severe late-infantile subtype of neuronal ceroid lipofuscinosis (v-LINCL), a severe lysosomal storage disorder, but have also been associated with nonsyndromic adult-onset maculopathy. Here, we functionally characterized two novel MFSD8 variants found in a child with juvenile isolated maculopathy, in order to establish a refined prognosis. ABCA4 locus resequencing was followed by the analysis of other inherited retinal disease genes by whole exome sequencing (WES). Minigene assays and cDNA sequencing were used to assess the effect of a novel MFSD8 splice variant. MFSD8 expression was quantified with qPCR and overexpression studies were analyzed by immunoblotting. Transmission electron microscopy (TEM) was performed on a skin biopsy and ophthalmological and neurological re-examinations were conducted. WES revealed two novel MFSD8 variants: c.[590del];[439+3A>C] p.[Gly197Valfs*2];[Ile67Glufs*3]. Characterization of the c.439+3A>C variant via splice assays showed exon-skipping (p.Ile67Glufs*3), while overexpression studies of the corresponding protein indicated expression of a truncated polypeptide. In addition, a significantly reduced MFSD8 RNA expression was noted in patient's lymphocytes. TEM of a skin biopsy revealed typical v-LINCL lipopigment inclusions while neurological imaging of the proband displayed subtle cerebellar atrophy. Functional characterization demonstrated the pathogenicity of two novel MFSD8 variants, found in a child with an initial diagnosis of juvenile isolated maculopathy but likely evolving to v-LINCL with a protracted disease course. Our study allowed a refined neurological prognosis in the proband and expands the natural history of MFSD8-associated disease.
Insights
Novel variants in the MFSD8 gene were identified in a child with juvenile maculopathy. Functional studies confirmed their pathogenicity, suggesting a potential evolution to neuronal ceroid lipofuscinosis (v-LINCL) with a protracted course.
Area of Science:
- Genetics and Molecular Biology
- Neuroscience
- Ophthalmology
Background:
- Biallelic MFSD8 variants cause neuronal ceroid lipofuscinosis (v-LINCL), a lysosomal storage disorder, and adult-onset maculopathy.
- Juvenile isolated maculopathy diagnosis requires precise genetic and prognostic evaluation.
Observation:
- Two novel MFSD8 variants, c.[590del];[439+3A>C], were identified in a child with juvenile isolated maculopathy.
- Functional studies revealed exon-skipping and reduced MFSD8 RNA expression in patient lymphocytes.
- Transmission electron microscopy showed lipopigment inclusions, and neurological imaging revealed cerebellar atrophy.
Findings:
- The novel MFSD8 variants are pathogenic, causing exon-skipping and reduced gene expression.
- The patient's presentation suggests a protracted course of v-LINCL, initially diagnosed as juvenile isolated maculopathy.
- The study refines the neurological prognosis for MFSD8-associated disorders.
Implications:
- This research expands the understanding of the MFSD8-associated disease spectrum and natural history.
- Accurate genetic diagnosis and functional characterization are crucial for predicting disease progression and prognosis.
- The findings aid in refining diagnostic and prognostic approaches for patients with inherited retinal and neurological disorders.
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