4.2 Article

Genetic analysis of 14 families with Schnyder crystalline corneal dystrophy reveals clues to UBIAD1 protein function

Journal

AMERICAN JOURNAL OF MEDICAL GENETICS PART A
Volume 146A, Issue 3, Pages 271-283

Publisher

WILEY-BLACKWELL
DOI: 10.1002/ajmg.a.32201

Keywords

Schnyder crystalline corneal dystrophy; Schnyder corneal dystrophy; UBIAD1; hypercholesterolemia; HDL; prenyltransferase; corneal dystrophy; phospholipids; LDL; cholesterol; genetic disease; ocular; eye; cornea

Funding

  1. NCRR NIH HHS [KL2 RR024990] Funding Source: Medline
  2. NEI NIH HHS [EY12972] Funding Source: Medline

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Schnyder crystalline corneal dystrophy (SCCD) is a rare autosomal dominant disease characterized by progressive corneal opacification resulting from abnormal deposition of cholesterol and phospholipids. Recently, six different mutations on the UBIAD1 gene on chromosome 1p36 were found to result in SCCD. The purpose of this article is to further characterize the mutation spectrum of SCCD and identify structural and functional consequences for UBIAD1 protein activity. DNA sequencing was performed on samples from 36 individuals front 14 SCCD families. One affected individual was African American and SCCD has not been previously reported in this ethnic group. We identified UBIAD1 mutations in all 14 families which had 30 affected and 6 unaffected individuals. Eight different UBIAD1. mutations, novel (L121F, D118G, and S171P in exon 1, G186R and D236E in exon 2) were identified. in four families with DNA samples from both affected and unaffected individuals, the D118G, G186R, T175I, and G177R mutations cosegregated with SCCD. In combination with our previous report, we have identified the genetic mutation in UBIAD1 in 20 unrelated families with 10 (including 5 reported here), having the N102S imitation. The results suggest that N102S may be a mutation hot spot because the affected families were unrelated including Caucasian and Asian individuals. There was no genotype phenotype correlation except for the T175I Mutation which demonstrated prominent diffuse corneal haze, typically without corneal crystals. Protein analysis revealed structural and functional implications of SCCD mutations which may affect UBIAD1 function, ligand binding and interaction with binding partners, like apo E. (C) 2008 Wiley-Liss, Inc.

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