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KCTD3 相关性发育性癫痫性脑病的表型特征。

Phenotypic characterization of KCTD3-related developmental epileptic encephalopathy.

机构信息

Section of Medial Genetics, Department of Pediatrics Subspecialties, Children's Specialized Hospital, King Fahad Medical City, Riyadh, Saudi Arabia.

Department of Pediatric Neurology, National Neuroscience Institute, King Fahad Medical City, Riyadh, Saudi Arabia.

出版信息

Clin Genet. 2018 May;93(5):1081-1086. doi: 10.1111/cge.13227. Epub 2018 Mar 15.

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.

摘要

KCTD3 基因与神经遗传疾病的关联最近才被发现。在本报告中,我们描述了与 KCTD3 基因中的 2 个致病性变异相关的临床表型。来自 4 个近亲家庭的 7 名个体(包括一对同卵双胞胎)表现为发育性癫痫性脑病、全面发育迟缓、中枢性低张力、进行性周围性高张力和可变的畸形面容。除了脑积水和异常脑髓鞘形成等其他可变神经影像学异常外,还一致观察到后颅窝异常(从 Dandy-Walker 畸形到孤立的小脑蚓部发育不良)。全外显子组测序显示 KCTD3 基因中有 2 个可能的致病性纯合变异,与疾病完全分离。KCTD3 基因属于调节离子通道生物物理特性的辅助亚基家族,在肾脏和大脑中高度表达。在迄今为止最大的 KCTD3 突变患者系列研究中,我们表明 KCTD3 的双等位基因功能丧失突变导致发育性癫痫性脑病和脑成像上的异常小脑的一致表型。

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