GRIN2D variants in three cases of developmental and epileptic encephalopathy

错义突变 NMDA受体 癫痫 外显子组测序 谷氨酸受体 神经科学 脑病 生物 损失函数 受体 遗传学 突变 医学 内科学 表型 基因
作者
Naomi Tsuchida,K. Hamada,Masaaki Shiina,Mitsuhiro Kato,Yu Kobayashi,Jun Tohyama,Kazue Kimura,Kyoko Hoshino,Vigneswari Ganesan,Keng Wee Teik,Mitsuko Nakashima,Satomi Mitsuhashi,Takeshi Mizuguchi,Atsushi Takata,Noriko Miyake,Hirotomo Saitsu,Kazuhiro Ogata,Satoko Miyatake,Naomichi Matsumoto
出处
期刊:Clinical Genetics [Wiley]
卷期号:94 (6): 538-547 被引量:20
标识
DOI:10.1111/cge.13454
摘要

N ‐methyl‐ d ‐aspartate (NMDA) receptors are glutamate‐activated ion channels that are widely distributed in the central nervous system and essential for brain development and function. Dysfunction of NMDA receptors has been associated with various neurodevelopmental disorders. Recently, a de novo recurrent GRIN2D missense variant was found in two unrelated patients with developmental and epileptic encephalopathy. In this study, we identified by whole exome sequencing novel heterozygous GRIN2D missense variants in three unrelated patients with severe developmental delay and intractable epilepsy. All altered residues were highly conserved across vertebrates and among the four GluN2 subunits. Structural consideration indicated that all three variants are probably to impair GluN2D function, either by affecting intersubunit interaction or altering channel gating activity. We assessed the clinical features of our three cases and compared them to those of the two previously reported GRIN2D variant cases, and found that they all show similar clinical features. This study provides further evidence of GRIN2D variants being causal for epilepsy. Genetic diagnosis for GluN2‐related disorders may be clinically useful when considering drug therapy targeting NMDA receptors.
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