Germer S, Higuchi R
Roche Molecular Systems (RMS), Alameda, California 94510, USA.
Genome Res. 1999 Jan;9(1):72-8.
We report the development of a self-contained (homogeneous), single-tube assay for the genotyping of single-nucleotide polymorphisms (SNPs), which does not rely on fluorescent oligonucleotide probes. The method, which we call Tm-shift genotyping, combines allele-specific PCR with the discrimination between amplification products by their melting temperatures (Tm). Two distinct forward primers, each of which contains a 3'-terminal base that corresponds to one of the two SNP allelic variants, are combined with a common reverse primer in a single-tube reaction. A GC-tail is attached to one of the forward allele-specific primers to increase the Tm of the amplification product from the corresponding allele. PCR amplification, Tm analysis, and allele determination of genomic template DNA are carried out on a fluorescence-detecting thermocycler with a dye that fluoresces when bound to dsDNA. We demonstrate the accuracy and reliability of Tm-shift genotyping on 100 samples typed for two SNPs, and recommend it both as a simple and inexpensive diagnostic tool for genotyping medically relevant SNPs and as a high-throughput SNP genotyping method for gene mapping.
我们报道了一种用于单核苷酸多态性(SNP)基因分型的独立(均相)单管检测方法,该方法不依赖于荧光寡核苷酸探针。我们将此方法称为Tm位移基因分型,它将等位基因特异性PCR与根据扩增产物的解链温度(Tm)区分扩增产物相结合。在单管反应中,将两个不同的正向引物(每个正向引物的3'末端碱基对应于两个SNP等位基因变体之一)与一个共同的反向引物组合。将一个GC尾连接到其中一个正向等位基因特异性引物上,以提高相应等位基因扩增产物的Tm。利用一种与双链DNA结合时会发出荧光的染料,在荧光检测热循环仪上对基因组模板DNA进行PCR扩增、Tm分析和等位基因测定。我们在对100个样本进行两个SNP分型时证明了Tm位移基因分型的准确性和可靠性,并推荐它作为一种简单且廉价的医学相关SNP基因分型诊断工具以及一种用于基因定位的高通量SNP基因分型方法。