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首页> 外文期刊>American journal of medical genetics, Part B. Neuropsychiatric genetics: the official publication of the International Society of Psychiatric Genetics >Identification of candidate genes involved in the etiology of sporadic Tourette syndrome by exome sequencing
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Identification of candidate genes involved in the etiology of sporadic Tourette syndrome by exome sequencing

机译:EXMES测序鉴定致偶旋转曲线综合征病因的候选基因

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Tourette Syndrome (TS) is a neurodevelopmental disorder characterized by chronic motor and vocal tics. Although there is a large genetic contribution, the genetic architecture of TS remains unclear. Exome sequencing has successfully revealed the contribution of de novo mutations in sporadic cases with neuropsychiatric disorders such as autism and schizophrenia. Here, using exome sequencing, we investigated de novo mutations in individuals with sporadic TS to identify novel risk loci and elucidate the genetic background of TS. Exome analysis was conducted for sporadic TS cases: nine trio families and one quartet family with concordant twins were investigated. Missense mutations were evaluated using functional prediction algorithms, and their population frequencies were calculated based on three public databases. Gene expression patterns in the brain were analyzed using the BrainSpan Developmental Transcriptome. Thirty de novo mutations, including four synonymous and four missense mutations, were identified. Among the missense mutations, one in the rapamycin-insensitive companion of mammalian target of rapamycin (RICTOR)-coding gene (rs140964083: G A, found in one proband) was predicted to be hazardous. In the three public databases analyzed, variants in the same SNP locus were absent, and variants in the same gene were either absent or present at an extremely low frequency (3/5,008), indicating the rarity of hazardous RICTOR mutations in the general population. The de novo variant of RICTOR may be implicated in the development of sporadic TS, and RICTOR is a novel candidate factor for TS etiology.
机译:Tourette综合征(TS)是一种神经发育障碍,其特征是慢性电机和声带。虽然存在巨大的遗传贡献,但TS的遗传建筑仍然不清楚。 EXMES测序已成功揭示了De Novo突变在散发病例中的散发病例,例如自闭症和精神分裂症等散发病例。这里,使用Exome测序,我们研究了具有零星TS的个体中的Novo突变,以识别新的风险基因座,并阐明Ts的遗传背景。对零星的TS病例进行了外壳分析:调查了九个三重奏家族和一个双胞胎家族,并进行了一致的双胞胎。使用功能预测算法评估致畸突变,并且它们的人口频率基于三个公共数据库计算。使用BRINSPAN发育转录组分析大脑中的基因表达模式。鉴定了三十de Novo突变,包括四个同义和四个畸形突变。在灭鼠突变中,预计预测催乳素的哺乳动物靶标的哺乳动物靶标的伴侣伴哺乳动物(RICTOR)的催乳素靶标的伴侣(RS140964083:g& A,在一个副经中发现)危险。在分析的三个公共数据库中,不存在同一SNP基因座中的变体,并且在极低的频率(3 / 5,008)中不存在或存在相同基因中的变体,表明一般人群中的危险性Rictor突变的罕见。 Rictor的De Novo变体可以涉及散发性Ts的发展,并且Rictor是TS病因的新候选因子。

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