生物
表型
神经鞘素
遗传学
先证者
智力残疾
语音延迟
家族性偏瘫性偏头痛
突变
神经科学
基因
先兆偏头痛
突触后电位
心理学
光环
偏头痛
精神科
受体
作者
Neda Kamal,Hossein Jafari Khamirani,Mahintaj Dara,Mehdi Dianatpour
出处
期刊:Gene
[Elsevier]
日期:2023-03-09
卷期号:867: 147347-147347
被引量:7
标识
DOI:10.1016/j.gene.2023.147347
摘要
NRXN3geneencodesneurexin-III which is a Neural Cell Adhesion Molecule (NCAM) with important synaptic functions in the brain. Neurexin-III deficiency could affect synapse development, synaptic signaling and neurotransmitter release. Hitherto, there is no related disorder in the OMIM due to NRXN3 mutation. In this study, two unrelated Iranian families with homozygous (NM_001330195.2:c.3995G>A, p.Arg1332His) and compound heterozygous (NM_001330195.2:c.4442G>A, p.Arg1481Gln; c.3142+3A>G) variants in theNRXN3gene were detected for the first time. The proband of the first family manifested learning disability, developmental delay, inability to walk, and behavioral problems such as difficulty in social communication. Also, global development delay, intellectual disability, abnormal gait, severe speech problems, muscle weakness, and behavioral problems were observed in the affected individual in the second family. In addition, deciphering the pathogenicity of NRXN3 variants was done by functional studies such as CRISPR edited cells, in-silico analysis, and NGS results. All of these data together with phenotype similarity between observed phenotypes in our patients and manifested symptoms in the homozygousNrxn3α/β knockout mice, demonstrate the homozygous and compound heterozygous mutations of NRXN3 could cause a novel syndromic mendelian genetic disorder with autosomal recessive inheritance. The main phenotype of patients with neurexin-III deficiency includes developmental delay, learning disability, movement disorder, and behavioral problems.
科研通智能强力驱动
Strongly Powered by AbleSci AI