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首页> 外文期刊>Human mutation >A clinical, genetic, and biochemical characterization of SPG7 mutations in a large cohort of patients with hereditary spastic paraplegia.
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A clinical, genetic, and biochemical characterization of SPG7 mutations in a large cohort of patients with hereditary spastic paraplegia.

机译:大量遗传性痉挛性截瘫患者的SPG7突变的临床,遗传和生化特征。

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摘要

Mutations in the SPG7 gene encoding a mitochondrial protein termed paraplegin, are responsible for a recessive form of hereditary spastic paraparesis. Only few studies have so far been performed in large groups of hereditary spastic paraplegia (HSP) patients to determine the frequency of SPG7 mutations. Here, we report the result of a mutation screening conducted in a large cohort of 135 Italian HSP patients with the identification of six novel point mutations and one large intragenic deletion. Sequence analysis of the deletion breakpoint, together with secondary structure predictions of the deleted region, indicate that a complex rearrangement, likely caused by extensive secondary structure formation mediated by the short interspersed nuclear element (SINE) retrotransposons, is responsible for the deletion event. Biochemical studies performed on fibroblasts from three mutant patients revealed mild and heterogeneous mitochondrial dysfunctions that would exclude a specific association of a complex I defect with the pathology at the fibroblast level. Overall, our data confirm that SPG7 point mutations are rare causes of HSP, in both sporadic and familial forms, while underlying the puzzling and intriguing aspects of histological and biochemical consequences of paraplegin loss.
机译:编码线粒体蛋白的SPG7基因突变称为截瘫,是遗传性痉挛性轻瘫的隐性形式。迄今为止,在大批遗传性痉挛性截瘫(HSP)患者中仅进行了很少的研究来确定SPG7突变的频率。在这里,我们报告了在135名意大利HSP患者的大队列中进行的突变筛查的结果,确定了6个新的点突变和1个大的基因内缺失。缺失断点的序列分析以及缺失区域的二级结构预测表明,复杂的重排很可能是由短散布的核素(SINE)逆转座子介导的大量二级结构形成所引起的。对来自三名突变患者的成纤维细胞进行的生化研究表明,轻度和异质性线粒体功能障碍可排除复杂I缺陷与成纤维细胞水平病理学的特定关联。总体而言,我们的数据证实,SPG7点突变无论是散发性还是家族性形式,都是HSP的罕见病因,同时也是截瘫患者丧失组织学和生化后果的令人困惑和令人着迷的方面。

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