Hu Xiufu, Yang Junli, Zhang Man, Fang Tie, Gao Qin, Liu Xinjie
Department of Pediatrics, Qilu Hospital of Shandong University, Jinan, China.
The First Affiliated Hospital of Zhengzhou University, Zhengzhou, China.
Front Pediatr. 2022 Jul 7;10:858008. doi: 10.3389/fped.2022.858008. eCollection 2022.
The voltage-gated Kv10.2 potassium channel, encoded by KCNH5, is broadly expressed in mammalian tissues, including the brain. Its potential mechanism remains unclear. According to previous studies, dysfunction of Kv10.2 may be associated with epileptic encephalopathies and autism spectrum disorder (ASD). To date, only one disease-causing mutation of KCNH5 has been reported, and it involves a case that presented with seizures and autism symptoms. In this study, we discovered and characterized three mutations in KCNH5 that potentially caused severe conditions observed in three Chinese children. All of them experienced seizures, two of them presented with epileptic encephalopathy, one of them presented with ASD, and one did not relapse after drug withdrawal. Notably, treatment with antiepileptic drugs (AEDs) was effective in all patients whose epileptic seizures were controlled. The structures of the proteins resulting from the mutations were predicted in two of the three cases. This provides powerful insight into clinical heterogeneity and genotypephenotype correlation in KCNH5-related diseases.
由KCNH5编码的电压门控Kv10.2钾通道在包括大脑在内的哺乳动物组织中广泛表达。其潜在机制尚不清楚。根据以往的研究,Kv10.2功能障碍可能与癫痫性脑病和自闭症谱系障碍(ASD)有关。迄今为止,仅报道了一例KCNH5致病突变,该病例表现为癫痫发作和自闭症症状。在本研究中,我们发现并鉴定了KCNH5中的三个突变,这些突变可能导致了在中国三名儿童中观察到的严重病症。他们均经历过癫痫发作,其中两名患有癫痫性脑病,一名患有ASD,还有一名在停药后未复发。值得注意的是,抗癫痫药物(AEDs)治疗对所有癫痫发作得到控制的患者均有效。在三个病例中的两个病例中预测了由突变产生的蛋白质结构。这为KCNH5相关疾病的临床异质性和基因型 - 表型相关性提供了有力的见解。