TY - JOUR
T1 - Novel missense mutation in the bZIP transcription factor, MAF, associated with congenital cataract, developmental delay, seizures and hearing loss (Aymé-Gripp syndrome)
AU - Javadiyan, Shahrbanou
AU - Craig, Jamie
AU - Sharma, Shiwani
AU - Lower, Karen
AU - Casey, Theresa
AU - Haan, Eric
AU - Souzeau, Emmanuelle
AU - Burdon, Kathryn
PY - 2017/5/8
Y1 - 2017/5/8
N2 - Background: Cataract is a major cause of severe visual impairment in childhood. The purpose of this study was to determine the genetic cause of syndromic congenital cataract in an Australian mother and son. Method: Fifty-one genes associated with congenital cataract were sequenced in the proband using a custom Ampliseq library on the Ion Torrent Personal Genome Machine (PGM). Reads were aligned against the human genome (hg19) and variants were annotated. Variants were prioritised for validation by Sanger sequencing if they were novel, rare or previously reported to be associated with paediatric cataract and were predicted to be protein changing. Variants were assessed for segregation with the phenotype in the affected mother. Result: A novel likely pathogenic variant was identified in the transactivation domain of the MAF gene (c.176C > G, p.(Pro59Arg)) in the proband and his affected mother., but was absent in 326 unrelated controls and absent from public variant databases. Conclusion: The MAF variant is the likely cause of the congenital cataract, Asperger syndrome, seizures, hearing loss and facial characteristics in the proband, providinga diagnosis of Aymé-Gripp syndrome for the family.
AB - Background: Cataract is a major cause of severe visual impairment in childhood. The purpose of this study was to determine the genetic cause of syndromic congenital cataract in an Australian mother and son. Method: Fifty-one genes associated with congenital cataract were sequenced in the proband using a custom Ampliseq library on the Ion Torrent Personal Genome Machine (PGM). Reads were aligned against the human genome (hg19) and variants were annotated. Variants were prioritised for validation by Sanger sequencing if they were novel, rare or previously reported to be associated with paediatric cataract and were predicted to be protein changing. Variants were assessed for segregation with the phenotype in the affected mother. Result: A novel likely pathogenic variant was identified in the transactivation domain of the MAF gene (c.176C > G, p.(Pro59Arg)) in the proband and his affected mother., but was absent in 326 unrelated controls and absent from public variant databases. Conclusion: The MAF variant is the likely cause of the congenital cataract, Asperger syndrome, seizures, hearing loss and facial characteristics in the proband, providinga diagnosis of Aymé-Gripp syndrome for the family.
KW - Aymé-Gripp syndrome
KW - Congenital cataract
KW - Ion Ampliseq
KW - MAF
KW - Next generation sequencing
KW - Pediatric cataract
KW - Syndromic cataract
UR - http://www.scopus.com/inward/record.url?scp=85018388642&partnerID=8YFLogxK
U2 - 10.1186/s12881-017-0414-7
DO - 10.1186/s12881-017-0414-7
M3 - Article
VL - 18
JO - BMC Medical Genetics
JF - BMC Medical Genetics
SN - 1471-2350
IS - 1
M1 - 52
ER -