首页> 外文期刊>European journal of human genetics: EJHG >Expansion of mutation spectrum, determination of mutation cluster regions and predictive structural classification of SPAST mutations in hereditary spastic paraplegia.
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Expansion of mutation spectrum, determination of mutation cluster regions and predictive structural classification of SPAST mutations in hereditary spastic paraplegia.

机译:遗传性痉挛性截瘫的突变谱的扩展,突变簇区域的确定和SPAST突变的预测结构分类。

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摘要

The SPAST gene encoding for spastin plays a central role in the genetically heterogeneous group of diseases termed hereditary spastic paraplegia (HSP). In this study, we attempted to expand and refine the genetic and phenotypic characteristics of SPAST associated HSP by examining a large cohort of HSP patients/families. Screening of 200 unrelated HSP cases for mutations in the SPAST gene led to detection of 57 mutations (28.5%), of which 47 were distinct and 29 were novel mutations. The distribution analysis of known SPAST mutations over the structural domains of spastin led to the identification of several regions where the mutations were clustered. Mainly, the clustering was observed in the AAA (ATPases associated with diverse cellular activities) domain; however, significant clustering was also observed in the MIT (microtubule interacting and trafficking), MTBD (microtubule-binding domain) and an N-terminal region (228-269 residues). Furthermore, we used a previously generated structural model of spastin as a framework to classify the missense mutations in the AAA domain from the HSP patients into different structural/functional groups. Our data also suggest a tentative genotype-phenotype correlation and indicate that the missense mutations could cause an earlier onset of the disease.
机译:编码Spastin的SPAST基因在遗传性异质性疾病(遗传性痉挛性截瘫(HSP))中起着核心作用。在这项研究中,我们试图通过检查大量的HSP患者/家庭来扩展和完善SPAST相关HSP的遗传和表型特征。筛选200例不相关的HSP病例的SPAST基因突变可检测到57个突变(占28.5%),其中47个不同,29个为新突变。已知的SPAST突变在spastin结构域上的分布分析导致鉴定了突变聚集的几个区域。主要在AAA(与多种细胞活动相关的ATP酶)域中观察到了聚类。但是,在MIT(微管相互作用和运输),MTBD(微管结合域)和N端区域(228-269个残基)中也观察到了明显的聚类。此外,我们使用以前生成的spastin结构模型作为框架,将HSP患者AAA域中的错义突变分为不同的结构/功能组。我们的数据还表明基因型和表型之间存在暂定相关性,并表明错义突变可能导致该病的更早发作。

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