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The expanding clinical phenotype of Bosch-Boonstra-Schaaf optic atrophy syndrome: 20 new cases and possible genotype-phenotype correlations.

Authors :
Chen CA
Bosch DG
Cho MT
Rosenfeld JA
Shinawi M
Lewis RA
Mann J
Jayakar P
Payne K
Walsh L
Moss T
Schreiber A
Schoonveld C
Monaghan KG
Elmslie F
Douglas G
Boonstra FN
Millan F
Cremers FP
McKnight D
Richard G
Juusola J
Kendall F
Ramsey K
Anyane-Yeboa K
Malkin E
Chung WK
Niyazov D
Pascual JM
Walkiewicz M
Veluchamy V
Li C
Hisama FM
de Vries BB
Schaaf C
Source :
Genetics in medicine : official journal of the American College of Medical Genetics [Genet Med] 2016 Nov; Vol. 18 (11), pp. 1143-1150. Date of Electronic Publication: 2016 Mar 17.
Publication Year :
2016

Abstract

Purpose: Bosch-Boonstra-Schaaf optic atrophy syndrome (BBSOAS) is an autosomal-dominant disorder characterized by optic atrophy and intellectual disability caused by loss-of-function mutations in NR2F1. We report 20 new individuals with BBSOAS, exploring the spectrum of clinical phenotypes and assessing potential genotype-phenotype correlations.<br />Methods: Clinical features of individuals with pathogenic NR2F1 variants were evaluated by review of medical records. The functional relevance of coding nonsynonymous NR2F1 variants was assessed with a luciferase assay measuring the impact on transcriptional activity. The effects of two start codon variants on protein expression were evaluated by western blot analysis.<br />Results: We recruited 20 individuals with novel pathogenic NR2F1 variants (seven missense variants, five translation initiation variants, two frameshifting insertions/deletions, one nonframeshifting insertion/deletion, and five whole-gene deletions). All the missense variants were found to impair transcriptional activity. In addition to visual and cognitive deficits, individuals with BBSOAS manifested hypotonia (75%), seizures (40%), autism spectrum disorder (35%), oromotor dysfunction (60%), thinning of the corpus callosum (53%), and hearing defects (20%).<br />Conclusion: BBSOAS encompasses a broad range of clinical phenotypes. Functional studies help determine the severity of novel NR2F1 variants. Some genotype-phenotype correlations seem to exist, with missense mutations in the DNA-binding domain causing the most severe phenotypes.Genet Med 18 11, 1143-1150.

Details

Language :
English
ISSN :
1530-0366
Volume :
18
Issue :
11
Database :
MEDLINE
Journal :
Genetics in medicine : official journal of the American College of Medical Genetics
Publication Type :
Academic Journal
Accession number :
26986877
Full Text :
https://doi.org/10.1038/gim.2016.18