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Title
Aicardi Syndrome Is a Genetically Heterogeneous Disorder.
Publication Date
2023-07-31
Author(s)
Ha, Thuong T
Burgess, Rosemary
Newman, Morgan
Moey, Ching
Mandelstam, Simone A
Gardner, Alison E
Ivancevic, Atma M
Pham, Duyen
Kumar, Raman
Smith, Nicholas
Patel, Chirag
Malone, Stephen
Ryan, Monique M
Calvert, Sophie
van Eyk, Clare L
Lardelli, Michael
Berkovic, Samuel F
Leventer, Richard J
Richards, Linda J
Scheffer, Ingrid E
Gecz, Jozef
Corbett, Mark A
Subject
DNA repair
DNA sequencing
X-linked
developmental epileptic encephalopathy
sex bias
wnt signalling
Type of document
Journal Article
OrcId
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0000-0001-6287-0819
#PLACEHOLDER_PARENT_METADATA_VALUE#
0000-0002-0101-9876
#PLACEHOLDER_PARENT_METADATA_VALUE#
0000-0001-7976-8386
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#PLACEHOLDER_PARENT_METADATA_VALUE#
#PLACEHOLDER_PARENT_METADATA_VALUE#
#PLACEHOLDER_PARENT_METADATA_VALUE#
#PLACEHOLDER_PARENT_METADATA_VALUE#
0000-0003-0345-9944
0000-0002-4289-444X
0000-0003-4580-841X
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#PLACEHOLDER_PARENT_METADATA_VALUE#
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0000-0002-7884-6861
0000-0001-9298-3072
DOI
10.3390/genes14081565
Abstract
Aicardi Syndrome (AIC) is a rare neurodevelopmental disorder recognized by the classical triad of agenesis of the corpus callosum, chorioretinal lacunae and infantile epileptic spasms syndrome. The diagnostic criteria of AIC were revised in 2005 to include additional phenotypes that are frequently observed in this patient group. AIC has been traditionally considered as X-linked and male lethal because it almost exclusively affects females. Despite numerous genetic and genomic investigations on AIC, a unifying X-linked cause has not been identified. Here, we performed exome and genome sequencing of 10 females with AIC or suspected AIC based on current criteria. We identified a unique de novo variant, each in different genes: KMT2B, SLF1, SMARCB1, SZT2 and WNT8B, in five of these females. Notably, genomic analyses of coding and non-coding single nucleotide variants, short tandem repeats and structural variation highlighted a distinct lack of X-linked candidate genes. We assessed the likely pathogenicity of our candidate autosomal variants using the TOPflash assay for WNT8B and morpholino knockdown in zebrafish (Danio rerio) embryos for other candidates. We show expression of Wnt8b and Slf1 are restricted to clinically relevant cortical tissues during mouse development. Our findings suggest that AIC is genetically heterogeneous with implicated genes converging on molecular pathways central to cortical development.
Link
Citation
Genes 2023-07-31; 14(8)
Jornal Title
Genes
ISSN
2073-4425

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