International Journal of Molecular Sciences (Jul 2021)

Paternal Uniparental Isodisomy of Chromosome 2 in a Patient with <i>CNGA3</i>-Associated Autosomal Recessive Achromatopsia

  • Susanne Kohl,
  • Britta Baumann,
  • Francesca Dassie,
  • Anja K. Mayer,
  • Maria Solaki,
  • Peggy Reuter,
  • Laura Kühlewein,
  • Bernd Wissinger,
  • Pietro Maffei

DOI
https://doi.org/10.3390/ijms22157842
Journal volume & issue
Vol. 22, no. 15
p. 7842

Abstract

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Achromatopsia (ACHM) is a rare autosomal recessively inherited retinal disease characterized by congenital photophobia, nystagmus, low visual acuity, and absence of color vision. ACHM is genetically heterogeneous and can be caused by biallelic mutations in the genes CNGA3, CNGB3, GNAT2, PDE6C, PDE6H, or ATF6. We undertook molecular genetic analysis in a single female patient with a clinical diagnosis of ACHM and identified the homozygous variant c.778G>C;p.(D260H) in the CNGA3 gene. While segregation analysis in the father, as expected, identified the CNGA3 variant in a heterozygous state, it could not be displayed in the mother. Microsatellite marker analysis provided evidence that the homozygosity of the CNGA3 variant is due to partial or complete paternal uniparental isodisomy (UPD) of chromosome 2 in the patient. Apart from the ACHM phenotype, the patient was clinically unsuspicious and healthy. This is one of few examples proving UPD as the underlying mechanism for the clinical manifestation of a recessive mutation in a patient with inherited retinal disease. It also highlights the importance of segregation analysis in both parents of a given patient or especially in cases of homozygous recessive mutations, as UPD has significant implications for genetic counseling with a very low recurrence risk assessment in such families.

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