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May 3, 20260 citations

Biallelic loss-of-function variants in DSCAM cause a neurodevelopmental syndrome with nystagmus and retinal dysfunction.

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SHSofia Douzgou HougeOslo University HospitalCBCecilie BredrupHaukeland University HospitalRJRagnhild Wivestad JanssonHaukeland University Hospital

Key Points

  • This research aims to characterize the neurodevelopmental syndrome associated with DSCAM loss-of-function variants and its clinical implications.
  • Cohort of 5 individuals with homozygous or compound heterozygous DSCAM variants.
  • Clinical assessments for neurodevelopmental delays and visual impairments.
  • Electroretinography used to evaluate retinal function.
  • Common clinical pattern includes moderate to severe neurodevelopmental delay and poor language development.
  • Identified nystagmus and visual impairment in affected individuals.
  • Electroretinography showed cone pathway dysfunction with a b-wave pattern indicating dysfunction at cone-associated bipolar cells.

Abstract

DSCAM occupies a 1 Mb locus in the original Down syndrome critical region on chromosome 21q22 and encodes a neuronal cell adhesion molecule of importance for brain and eye development. Singleton individuals, both born to first-cousin parents, with intellectual disability and homozygous DSCAM loss-of-function variants were reported in 2017 and in 2021, the latter also presenting with nystagmus and visual impairment. We present a cohort of 5 individuals, 4 new, including 2 sibling pairs with homozygosity or compound heterozygosity for predicted loss-of-function DSCAM variants. We identify a common clinical pattern of moderate to severe neurodevelopmental delay with poor language development, risk of focal seizures with onset in infancy, and nystagmus with poor vision. Electroretinography in two of the affected revealed cone pathway dysfunction with a b-wave pattern indicating main dysfunction at the level of the cone-associated bipolar cells of the central retina. Our electroclinical findings are in line with previous DSCAM knock-out-chicken and mice studies that evidenced disturbed horizontal and vertical patterning of the retina. Taken together, we delineate a rare syndromic form of recessive intellectual disability with a distinctive type of visual impairment.

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Cite This Study

Houge et al. (2026) studied this question.

synapsesocial.com/papers/69f6e6648071d4f1bdfc716chttps://doi.org/10.1016/j.xhgg.2026.100622
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