| Literature DB >> 29406573 |
E A Faqeih1, M Almannai1, M M Saleh1, A H AlWadei2, M M Samman3, F S Alkuraya4,5.
Abstract
The association between KCTD3 gene and neurogenetic disorders has only been published recently. In this report, we describe the clinical phenotype associated with 2 pathogenic variants in KCTD3 gene. Seven individuals (including one set of monozygotic twin) from 4 consanguineous families presented with developmental epileptic encephalopathy, global developmental delay, central hypotonia, progressive peripheral hypertonia, and variable dysmorphic facial features. Posterior fossa abnormalities (ranging from Dandy-Walker malformation to isolated hypoplasia of the cerebellar vermis) were consistently observed in addition to other variable neuroradiological abnormalities such as hydrocephalus and abnormal brain myelination. One patient also had a multicystic kidney. Whole exome sequencing revealed 2 probably pathogenic homozygous variants in KCTD3 gene that fully segregated with the disease. KCTD3 gene belongs to a family of accessory subunits that regulate the biophysical properties of ion channels, and is highly expressed in the kidney and brain. In this largest series to date on KCTD3-mutated patients, we show that biallelic loss of function mutations in KCTD3 lead to a consistent phenotype of developmental epileptic encephalopathy and abnormal cerebellum on brain imaging.Entities:
Keywords: Dandy-Walker malformation (DWM); KCTD3; cerebellar atrophy; whole exome sequencing
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Year: 2018 PMID: 29406573 DOI: 10.1111/cge.13227
Source DB: PubMed Journal: Clin Genet ISSN: 0009-9163 Impact factor: 4.438