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首页> 外文期刊>Seminars in pediatric neurology >Fraternal twins with autism, severe cognitive deficit, and epilepsy: Diagnostic role of chromosomal microarray analysis
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Fraternal twins with autism, severe cognitive deficit, and epilepsy: Diagnostic role of chromosomal microarray analysis

机译:患有自闭症,严重认知功能障碍和癫痫的异卵双胞胎:染色体微阵列分析的诊断作用

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摘要

A 7-year-old child presented with atypical absence epilepsy. He also had autism and severe cognitive deficit. As part of his diagnostic workup, a chromosomal microarray analysis was performed, which showed novel biallelic deletions in the neurexin 1 gene (NRXN1). His fraternal twin sister, who also had autism and cognitive impairment, was subsequently found to have the same biallelic deletions. Deletions included a 272-282kb loss at band 2p16.3 in one allele and a smaller 135-174-kb loss on the second allele. Neurexin 1 (NRXN1) is a cell adhesion protein, forming a synaptic complex with neuroligin. This signals a pathway that is critical for activity-dependent synaptic transmission. Mutations in this gene have been associated with autism and neurodevelopmental delay. Although there are many reports of heterozygous mutations with variable expressivity, only 3 cases with biallelic NRXN1 mutations have been previously reported, all of which have a more severe phenotype. We report 2 siblings with biallelic deletions, both of which affect the promoter region and exons 1-5 in the α-NRXN1 isoform, which has a role in the Ca2+-dependent release of neurotransmitters in the central nervous system. Our cases expand the phenotype of biallelic α NRXN 1 mutations and emphasize the important role of NRXN1 in autism and intellectual disability. Chromosomal microarray analysis should be the clinical standard in all specialties for first-tier genetic testing in autistic spectrum disorders.
机译:一名7岁儿童出现非典型性癫痫病。他还患有自闭症和严重的认知缺陷。作为诊断工作的一部分,进行了染色体微阵列分析,结果显示神经毒素1基因(NRXN1)中出现了新的双等位基因缺失。他的异卵双胞胎姐姐也患有自闭症和认知障碍,随后被发现具有相同的双等位基因缺失。缺失包括在一个等位基因中在2p16.3带缺失272-282kb,在第二个等位基因中缺失135-174kb。 Neurexin 1(NRXN1)是一种细胞粘附蛋白,与神经胶蛋白形成突触复合物。这表明对于依赖于活性的突触传递至关重要的途径。该基因的突变与自闭症和神经发育延迟有关。尽管有许多关于可变表达的杂合突变的报道,但以前仅报道了3个双等位基因NRXN1突变的病例,所有病例均具有更严重的表型。我们报告了具有双等位基因缺失的两个兄弟姐妹,它们都影响启动子区域和α-NRXN1亚型中的外显子1-5,后者在中枢神经系统中Ca2 +依赖性神经递质的释放中具有作用。我们的病例扩大了双等位基因αNRXN 1突变的表型,并强调了NRXN1在自闭症和智力障碍中的重要作用。染色体微阵列分析应成为自闭症谱系障碍一线基因检测所有专业的临床标准。

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