Grupo de Enfermedades Raras, Mitocondriales y Neuromusculares (ERMN) Instituto de Investigación Hospital 12 de Octubre (i+12), Madrid, Spain.
Centro de Investigación Biomédica en Red de Enfermedades Raras (CIBERER), Madrid, Spain.
Hum Mutat. 2022 Oct;43(10):1361-1367. doi: 10.1002/humu.24426. Epub 2022 Jul 1.
We report the clinical and genetic features of a Caucasian girl who presented a severe neurodevelopmental disorder with drug-resistant epilepsy, hypotonia, severe gastro-esophageal reflux and brain magnetic resonance imaging anomalies. WES uncovered a novel variant in homozygosis (g.197092814_197092824delinsC) in HECW2 gene that encodes the E3 ubiquitin-protein ligase HECW2. This protein induces ubiquitination and is implicated in the regulation of several important pathways involved in neurodevelopment and neurogenesis. Furthermore, de novo heterozygous missense variants in this gene have been associated with neurodevelopmental disorder with hypotonia, seizures, and absent language (NDHSAL). The homozygous variant of our patient disrupts the splice donor site of intron 22 and causes the elimination of exon 22 (r.3766_3917+1del) leading to an in-frame deletion of the protein (p.Leu1256_Trp1306del). Functional studies showed a twofold increase of its RNA expression, while the protein expression level was reduced by 60%, suggesting a partial loss-of-function mechanism of pathogenesis. Thus, this is the first patient with NDHSAL caused by an autosomal recessive splicing variant in HECW2.
我们报告了一位高加索女孩的临床和遗传特征,她表现出严重的神经发育障碍、耐药性癫痫、肌张力减退、严重的胃食管反流和脑磁共振成像异常。WES 发现了 HECW2 基因中的一种新型纯合变异(g.197092814_197092824delinsC),该基因编码 E3 泛素蛋白连接酶 HECW2。这种蛋白质诱导泛素化,并参与调节几个与神经发育和神经发生有关的重要途径。此外,该基因的新生杂合错义变异与肌张力减退、癫痫和无语言的神经发育障碍(NDHSAL)有关。我们患者的纯合变异破坏了内含子 22 的剪接供体位点,导致外显子 22(r.3766_3917+1del)缺失,从而导致蛋白质(p.Leu1256_Trp1306del)的框内缺失。功能研究显示其 RNA 表达增加了两倍,而蛋白质表达水平降低了 60%,提示发病机制存在部分功能丧失机制。因此,这是首例由 HECW2 中常染色体隐性剪接变异引起的 NDHSAL 患者。