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首页> 外文期刊>The Journal of molecular diagnostics: JMD >Design and validation of a conformation sensitive capillary electrophoresis-based mutation scanning system and automated data analysis of the more than 15 kbp-spanning coding sequence of the SACS gene.
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Design and validation of a conformation sensitive capillary electrophoresis-based mutation scanning system and automated data analysis of the more than 15 kbp-spanning coding sequence of the SACS gene.

机译:基于构象敏感性毛细管电泳的突变扫描系统的设计和验证,以及SACS基因跨度超过15 kbp的编码序列的自动数据分析。

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摘要

In this study, we developed and analytically validated a fully automated, robust confirmation sensitive capillary electrophoresis (CSCE) method to perform mutation scanning of the large SACS gene. This method facilitates a rapid and cost-effective molecular diagnosis of autosomal recessive spastic ataxia of Charlevoix-Saguenay. Critical issues addressed during the development of the CSCE system included the position of a DNA variant relative to the primers and the CG-content of the amplicons. The validation was performed in two phases; a retrospective analysis of 32 samples containing 41 different known DNA variants and a prospective analysis of 20 samples of patients clinically suspected of having autosomal recessive spastic ataxia of Charlevoix-Saguenay. These 20 samples appeared to contain 73 DNA variants. In total, in 32 out of the 45 amplicons, a DNA variant was present, which allowed verification of the detection capacity during the validation process. After optimization of the original design, the overall analytical sensitivity of CSCE for the SACS gene was 100%, and the analytical specificity of CSCE was 99.8%. In conclusion, CSCE is a robust technique with a high analytical sensitivity and specificity, and it can readily be used for mutation scanning of the large SACS gene. Furthermore this technique is less time-consuming and less expensive, as compared with standard automated sequencing.
机译:在这项研究中,我们开发并分析验证了一种全自动,稳健的确认灵敏毛细管电泳(CSCE)方法,可对大型SACS基因进行突变扫描。这种方法有助于快速和经济高效的分子诊断Charlevoix-Saguenay常染色体隐性痉挛性共济失调。 CSCE系统开发过程中解决的关键问题包括DNA变体相对于引物的位置以及扩增子的CG含量。验证分两个阶段进行:对包含41种不同已知DNA变体的32个样本进行回顾性分析,并对临床怀疑患有Charlevoix-Saguenay的常染色体隐性痉挛性共济失调的患者的20个样本进行前瞻性分析。这20个样品似乎含有73个DNA变体。总共,在45个扩增子中的32个中,存在一个DNA变异体,可以在验证过程中验证检测能力。经过优化的原始设计,CSCE对SACS基因的总体分析灵敏度为100%,CSCE的分析特异性为99.8%。总之,CSCE是一种鲁棒的技术,具有很高的分析灵敏度和特异性,可轻松用于大型SACS基因的突变扫描。此外,与标准自动测序相比,该技术耗时少且成本低。

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