首页> 外文期刊>Nucleic Acids Research >SNP genotyping using alkali cleavage of RNA/DNA chimeras and MALDI time-of-flight mass spectrometry - art. no. e18
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SNP genotyping using alkali cleavage of RNA/DNA chimeras and MALDI time-of-flight mass spectrometry - art. no. e18

机译:使用RNA / DNA嵌合体的碱裂解和MALDI飞行时间质谱进行SNP基因分型-艺术。没有。 e18

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摘要

Single nucleotide polymorphisms (SNPs) are now widely used for many DNA analysis applications such as linkage disequilibrium mapping, pharmacogenomics and traceability. Many methods for SNP genotyping exist with diverse strategies for allele-distinction. Mass spectrometers are used most commonly in conjunction with primer extension procedures with allele-specific termination. Here we present a novel concept for allele-preparation for SNP genotyping. Primer extension is carried out with an extension primer positioned immediately upstream of the SNP that is to be genotyped, a complete set of four ribonucleotides and a ribonucleotide incorporating DNA polymerase. The allele-extension products are then treated with alkali, which results in the cleavage immediately after the first added ribonucleotide. In addition, to obtain fragments easily detectable by mass spectrometry, we have included a ribonucleotide in the primer usually at the fourth nucleotide from the 3' terminus. The method was tested on four SNPs each with a different combination of nucleotides. The advantage over other mass spectrometry-based SNP genotyping assays is that this one only requires a PCR, a primer extension reaction with a universal extension mix and an inexpensive facile cleavage reaction, which makes it overall very cost effective and easy in handling.
机译:单核苷酸多态性(SNP)现在被广泛用于许多DNA分析应用中,例如连锁不平衡作图,药物基因组学和可追溯性。存在许多用于SNP基因分型的方法,以及用于等位基因区分的不同策略。质谱仪最常与具有等位基因特异性终止的引物延伸程序结合使用。在这里,我们提出了SNP基因分型的等位基因制备的新概念。引物的延伸是利用位于要进行基因分型的SNP上游的延伸引物,一套完整的四个核糖核苷酸和一个掺入DNA聚合酶的核糖核苷酸进行的。然后用碱处理等位基因延伸产物,这导致在首次添加核糖核苷酸后立即裂解。另外,为了获得易于通过质谱检测的片段,我们在引物中通常在3'末端的第四个核苷酸处包含了一个核糖核苷酸。该方法在四个具有不同核苷酸组合的SNP上进行了测试。相对于其他基于质谱的SNP基因分型分析的优势在于,该方法仅需要PCR,具有通用延伸混合物的引物延伸反应和廉价的易裂解反应,因此总体上非常经济高效且易于操作。

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