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Familial amyotrophic lateral sclerosis is associated with a mutation in D-amino acid oxidase

机译:家族性肌萎缩性侧索硬化症与D-氨基酸氧化酶的突变有关

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摘要

We report a unique mutation in the D-amino acid oxidase gene (R199W DAO) associated with classical adult onset familial amyotrophic lateral sclerosis (FALS) in a three generational FALS kindred, after candidate gene screening in a 14.52 cM region on chromosome 12q22-23 linked to disease. Neuronal cell lines expressing R199W DAO showed decreased viability and increased ubiquitinated aggregates compared with cells expressing the wild-type protein. Similarly, lentiviral-mediated expression of R199W DAO in primary motor neuron cultures caused increased TUNEL labeling. This effect was also observed when motor neurons were cocultured on transduced astrocytes expressing R199W, indicating that the motor neuron cell death induced by this mutation is mediated by both cell autonomous and noncell autonomous processes. DAO controls the level of D-serine, which accumulates in the spinal cord in cases of sporadic ALS and in a mouse model of ALS, indicating that this abnormality may represent a fundamental component of ALS pathogenesis.
机译:在候选基因筛选后,我们在染色体12q22-23的14.52 cM区筛选了三代FALS,报告了与经典成人发作家族性肌萎缩性侧索硬化症(FALS)相关的D-氨基酸氧化酶基因(R199W DAO)的独特突变与疾病有关。与表达野生型蛋白的细胞相比,表达R199W DAO的神经元细胞系活力降低,泛素化聚集体增加。同样,慢病毒介导的R199W DAO在原代运动神经元培养物中的表达引起TUNEL标记增加。当运动神经元在表达R199W的转导星形胶质细胞上共培养时,也观察到了这种效果,表明该突变诱导的运动神经元细胞死亡是由细胞自主过程和非细胞自主过程介导的。 DAO控制D-丝氨酸的水平,在散发性ALS的情况下以及在ALS小鼠模型中,D-丝氨酸会积聚在脊髓中,表明该异常可能代表ALS发病机理的基本组成部分。

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