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.

Clinical Genetics
|November 14, 2019
PubMed

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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