PUBLICATION

First implication of STRA6 mutations in isolated anophthalmia, microphthalmia, and coloboma: A new dimension to the STRA6 phenotype

Authors
Casey, J., Kawaguchi, R., Morrissey, M., Sun, H., McGettigan, P., Nielsen, J.E., Conroy, J., Regan, R., Kenny, E., Cormican, P., Morris, D.W., Tormey, P., Ní Chróinín, M., Kennedy, B.N., Lynch, S., Green, A., and Ennis, S.
ID
ZDB-PUB-110914-20
Date
2011
Source
Human Mutation   32(12): 1417-26 (Journal)
Registered Authors
Kennedy, Breandan N.
Keywords
STRA6, homozygosity mapping, Matthew-Wood syndrome, MWS
MeSH Terms
  • Adolescent
  • Adult
  • Animals
  • Anophthalmos/genetics*
  • Anophthalmos/pathology
  • Child, Preschool
  • Chromosome Mapping/methods
  • Coloboma/genetics*
  • Coloboma/parasitology
  • Consanguinity
  • Family
  • Female
  • Homozygote
  • Humans
  • Infant
  • Ireland
  • Male
  • Membrane Proteins/genetics*
  • Microphthalmos/genetics*
  • Microphthalmos/parasitology
  • Mutation*
  • Pedigree
  • Phenotype
  • Polymorphism, Single Nucleotide
  • Young Adult
  • Zebrafish
PubMed
21901792 Full text @ Hum. Mutat.
Abstract

Microphthalmia, anophthalmia, and coloboma (MAC) are structural congenital eye malformations that cause a significant proportion of childhood visual impairments. Several disease genes have been identified but do not account for all MAC cases, suggesting that additional risk loci exist. We used single nucleotide polymorphism (SNP) homozygosity mapping (HM) and targeted next-generation sequencing to identify the causative mutation for autosomal recessive isolated colobomatous microanophthalmia (MCOPCB) in a consanguineous Irish Traveller family. We identified a double-nucleotide polymorphism (g.1157G>A and g.1156G>A; p.G304K) in STRA6 that was homozygous in all of the MCOPCB patients. The STRA6 p.G304K mutation was subsequently detected in additional MCOPCB patients, including one individual with Matthew-Wood syndrome (MWS; MCOPS9). STRA6 encodes a transmembrane receptor involved in vitamin A uptake, a process essential to eye development and growth. We have shown that the G304K mutant STRA6 protein is mislocalized and has severely reduced vitamin A uptake activity. Furthermore, we reproduced the MCOPCB phenotype in a zebrafish disease model by inhibiting retinoic acid (RA) synthesis, suggesting that diminished RA levels account for the eye malformations in STRA6 p.G304K patients. The current study demonstrates that STRA6 mutations can cause isolated eye malformations in addition to the congenital anomalies observed in MWS.

Genes / Markers
Figures
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Expression
Phenotype
Mutations / Transgenics
Human Disease / Model
Sequence Targeting Reagents
Fish
Antibodies
Orthology
Engineered Foreign Genes
Mapping