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Microarray-based detection of Korean-specific BRCA1 mutations

机译:基于微阵列的韩国特异性BRCA1突变检测

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摘要

A reliable multiplex assay procedure to detect human genetic mutations in the breast cancer susceptibility gene BRCA1 using zip-code microarrays and single base extension (SBE) reactions is described. Multiplex PCR amplification was performed to amplify the genomic regions containing the mutation sites. The PCR products were then employed as templates in subsequent multiplex SBE reactions using bifunctional primers carrying a unique complementary zip sequence in addition to a mutation-site-specific sequence. The SBE primers, terminating one base before their mutation sites, were extended by a single base at a mutation site with a corresponding biotin-labeled ddNTP. Hybridization of the SBE products to zip-code microarrays was followed by staining with streptavidin-Cy3, leading to successful genotyping of several selected BRCA1 mutation sites with wild-type and heterozygote mutant samples from breast cancer patients. This work has led to the development of a reliable DNA microarray-based system for the diagnosis of human genetic mutations.
机译:描述了使用邮政编码微阵列和单碱基延伸(SBE)反应检测乳腺癌易感基因BRCA1中人类遗传突变的可靠的多重分析程序。进行多重PCR扩增以扩增含有突变位点的基因组区域。然后将PCR产物用作随后的多重SBE反应中的模板,使用双功能引物除突变位点特异性序列外,还携带独特的互补zip序列。 SBE引物在其突变位点之前终止一个碱基,并在突变位点上用相应的生物素标记的ddNTP延伸了一个碱基。 SBE产品与邮政编码微阵列的杂交之后,用链霉亲和素-Cy3染色,从而成功地对几个选定的BRCA1突变位点进行了基因型分型,这些突变位点来自乳腺癌患者的野生型和杂合子突变体样品。这项工作导致开发了一种可靠的基于DNA微阵列的系统,用于诊断人类遗传突变。

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