Mutation in the auxiliary calcium-channel subunit CACNA2D4 causes autosomal recessive cone dystrophy

Katharina Agnes Wycisk1, Christina Zeitz, Silke Feil

  • 1Division of Medical Molecular Genetics and Gene Diagnostics, Institute of Medical Genetics, University of Zurich, Schwerzenbach, Switzerland.

Insights

Mutations in the CACNA2D4 gene cause autosomal recessive cone dystrophy, a progressive vision disorder. This research identifies a novel genetic cause for this retinal disease.

Area of Science:

  • Ophthalmology
  • Genetics
  • Neuroscience

Background:

  • Photoreceptor ribbon synapses are crucial for retinal signal transmission, relying on high voltage-gated l-type calcium channels.
  • The Cacna2d4 gene encodes a critical alpha (2) delta auxiliary subunit for these calcium channels.

Observation:

  • A spontaneous mouse mutant with profound vision loss exhibited abnormal ribbon synapse morphology, linked to a Cacna2d4 gene mutation.
  • Human orthologue CACNA2D4 mutations were previously unknown to cause disease.

Findings:

  • A homozygous CACNA2D4 mutation (c.2406C-->A) was identified in two siblings with night blindness and progressive cone dystrophy.
  • This mutation introduces a premature stop codon, truncating the protein and leading to autosomal recessive cone dystrophy.

Implications:

  • This study reports the first human mutation in CACNA2D4.
  • It establishes CACNA2D4 as a novel gene defect responsible for autosomal recessive cone dystrophy.
  • This discovery advances understanding of the genetic basis of retinal disorders.