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Detection of mitochondrial single nucleotide polymorphisms using a primer elongation reaction on oligonucleotide microarrays

机译:检测线粒体单 使用引物延伸反应的核苷酸多态性 在寡核苷酸微阵列上

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摘要

We have developed a novel allele-specific primer elongation protocol using a DNA polymerase on oligonucleotide chips. Oligonucleotide primers carrying polymorphic sites at their free 3́end were covalently bound to glass slides. The generation of single-stranded targets of genomic DNA containing single nuclotide polymorphisms (SNPs) to be typed was achieved by an asymmetric PCR reaction or exonuclease treatment of phosphothioate (PTO)-modified PCR products. In the presence of DNA polymerase and all four dNTPs, with Cy3-dUTP replacing dTTP, allele-specific extension of the immobilized primers took place along a stretch of target DNA sequence. The yield of elongated products was increased by repeated reaction cycles. We performed multiplexed assays with many small DNA targets, or used single targets of up to 4.4 kb mitochondrial DNA (mtDNA) sequence to detect multiple SNPs in one reaction. The latter approach greatly simplifies preamplification of SNP-containing regions, thereby providing a framework for typing hundreds of mtDNA polymorphisms.
机译:我们已经开发了一种在寡核苷酸芯片上使用DNA聚合酶的新型等位基因特异性引物延伸方案。在其游离 3 ́ 末端带有多态性位点的寡核苷酸引物与载玻片共价结合。通过不对称PCR反应或硫代磷酸酯(PTO)修饰的PCR产物的核酸外切酶处理,实现了包含待分型的单个核苷酸多态性(SNP)的基因组DNA单链靶标的生成。在存在DNA聚合酶和所有四个dNTP的情况下,用Cy3-dUTP替代dTTP,固定引物的等位基因特异性延伸沿目标DNA序列延伸。通过重复的反应循环增加了细长产物的产率。我们对许多小的DNA靶标进行了多重分析,或使用了高达4.4 kb的线粒体DNA(mtDNA)序列的单个靶标在一个反应​​中检测了多个SNP。后一种方法极大地简化了包含SNP的区域的预扩增,从而提供了用于键入数百个mtDNA多态性的框架。

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