Abstract
Objectives: To perform a genotype-phenotype correlation study in an X-linked congenital idiopathic nystagmus pedigree (pedigree 1) and to assess the allelic variance of the FRMD7 gene in congenital idiopathic nystagmus. Methods: Subjects from pedigree 1 underwent detailed clinical examination including nystagmology. Screening of FRMD7 was undertaken in pedigree 1 and in 37 other congenital idiopathic nystagmus probands and controls. Direct sequencing confirmed sequence changes. X-inactivation studies were performed in pedigree 1. Results: The nystagmus phenotype was extremely variable in pedigree 1. We identified 2 FRMD7 mutations. However, 80% of X-linked families and 96% of simplex cases showed no mutations. X-inactivation studies demonstrated no clear causal link between skewing and variable penetrance. Conclusions: We confirm profound phenotypic variation in X-linked congenital idiopathic nystagmus pedigrees. We demonstrate that other congenital nystagmus genes exist besides FRMD7. We show that the role of X inactivation in variable penetrance is unclear in congenital idiopathic nystagmus. Clinical Relevance: We demonstrate that phenotypic variation of nystagmus occurs in families with FRMD7 mutations. While FRMD7 mutations may be found in some cases of X-linked congenital idiopathic nystagmus, the diagnostic yield is low. X-inactivation assays are unhelpful as a test for carrier status for this disease. ©2007 American Medical Association. All rights reserved.
| Original language | English |
|---|---|
| Pages (from-to) | 1255-1263 |
| Number of pages | 8 |
| Journal | Archives of Ophthalmology |
| Volume | 125 |
| Issue number | 9 |
| Publication status | Published - Sept 2007 |
Keywords
- Alleles
- genetics: Cytoskeletal Proteins
- Electronystagmography
- Eye Movements
- Female
- genetics: Genes, X-Linked
- genetics: Genetic Diseases, X-Linked
- Genotype
- Humans
- Linkage (Genetics)
- Male
- genetics: Membrane Proteins
- Mutation
- genetics: Nystagmus, Congenital
- Pedigree
- Phenotype
- Polymorphism, Single-Stranded Conformational
- Sequence Analysis, DNA
- Variation (Genetics)
- genetics: X Chromosome Inactivation