Koizumi Makoto, Morita Koji, Takagi Miho, Yasumo Hiroaki, Kasuya Atsushi
Lead Discovery Research Laboratories, Sankyo Company Ltd., 2-58, Hiromachi 1-Chome, Shinagawa-ku, Tokyo 140-8710, Japan.
Anal Biochem. 2005 May 15;340(2):287-94. doi: 10.1016/j.ab.2005.02.029.
When we placed an ENA residue into primers at the 3' end, or the n-1, n-2, or n-3 position, which included a single nucleotide polymorphism (SNP) site at the 3' end, only primers containing the ENA residue at the n-2 position were read by Taq DNA polymerase for amplification. The use of the ENA primers avoided the generation of undesired short products, which are thought to be derived from primer-dimers. A greater discrimination of the SNP site by these primers containing the ENA residue was observed compared with that of the corresponding unmodified DNA primers that are often used for allele-specific polymerase chain reaction (AS-PCR). This improvement is probably due to the difficulty of incorporating a nucleotide into the mismatched ENA primer by Taq DNA polymerase in the modified primer-template duplex. These results demonstrate that ENA primer-based AS-PCR would enable a rapid and reliable technique for SNP genotyping.
当我们将一个ENA残基置于引物的3'端,即n-1、n-2或n-3位置(其中3'端包含一个单核苷酸多态性(SNP)位点)时,只有在n-2位置含有ENA残基的引物能被Taq DNA聚合酶识别用于扩增。使用ENA引物可避免产生不期望的短产物,这些短产物被认为源自引物二聚体。与常用于等位基因特异性聚合酶链反应(AS-PCR)的相应未修饰DNA引物相比,含有ENA残基的这些引物对SNP位点具有更强的识别能力。这种改进可能是由于在修饰的引物-模板双链体中,Taq DNA聚合酶难以将核苷酸掺入错配的ENA引物中。这些结果表明,基于ENA引物的AS-PCR将成为一种快速且可靠的SNP基因分型技术。