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首页> 外文期刊>Research Letters in Biochemistry >Multiplex Detection and Genotyping of Point Mutations Involved in Charcot-Marie-Tooth Disease Using a Hairpin Microarray-Based Assay
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Multiplex Detection and Genotyping of Point Mutations Involved in Charcot-Marie-Tooth Disease Using a Hairpin Microarray-Based Assay

机译:使用基于发夹微阵列的分析的炭黑-玛丽-齿病涉及的点突变的多重检测和基因分型

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摘要

We previously developed a highly specific method for detecting SNPs with a microarray-based system using stem-loop probes. In this paper we demonstrate that coupling a multiplexing procedure with our microarray method is possible for the simultaneous detection and genotyping of four point mutations, in three different genes, involved in Charcot-Marie-Tooth disease. DNA from healthy individuals and patients was amplified, labeled with Cy3 by multiplex PCR; and hybridized to microarrays. Spot signal intensities were 18 to 74 times greater for perfect matches than for mismatched target sequences differing by a single nucleotide (discrimination ratio) for “homozygous” DNA from healthy individuals. “Heterozygous” mutant DNA samples gave signal intensity ratios close to 1 at the positions of the mutations as expected. Genotyping by this method was therefore reliable. This system now combines the principle of highly specific genotyping based on stem-loop structure probes with the advantages of multiplex analysis.
机译:我们以前开发了一种高度特异性的方法,用于使用茎环探针的基于微阵列的系统检测SNP。在本文中,我们证明了将多重程序与我们的微阵列方法相结合,对于同时检测和涉及Charcot-Marie-Tooth病的三个不同基因中的四个点突变是可能的。扩增来自健康个体和患者的DNA,并通过多重PCR标记Cy3;并与微阵列杂交。完美匹配的点信号强度比不匹配的靶序列的信号强度高18到74倍,而目标序列与来自健康个体的“纯合” DNA的单个核苷酸(区分率)不同。如预期的那样,“杂合”突变体DNA样品在突变位置处的信号强度比接近1。因此,通过这种方法进行基因分型是可靠的。该系统现在结合了基于茎环结构探针的高特异性基因分型原理和多重分析的优势。

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