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一种通过单管双向等位基因特异性扩增进行SNP分型的简单快速新方法

[A simple and rapid new method for SNP typing by single-tube bi-directional allele specific amplification].

作者信息

Jiang Z, Shi J, Yang S, Zhang C, Jiang H, Chen Z, Jin L, Lu D, Huang W

机构信息

Chinese National Human Genome Center at Shanghai, Shanghai 201203 P.R.China. zhengwenj @hotmail. com

出版信息

Zhonghua Yi Xue Yi Chuan Xue Za Zhi. 2001 Aug;18(4):306-9.

Abstract

OBJECTIVE

To establish a new method for single nucleotide polymorphism(SNP) typing based on allele specific PCR: single-tube bi-directional amplification (SB-ASA), and study the influence on specific extension by introducing a mismatch at the third 3'terminal base of allele specific primers.

METHODS

Two allele specific primers, with a mismatch introduced at the third 3'terminal base, were both included in PCR system; they extended in opposite directions and amplified two allele specific fragments different in size. The genotype was determined by observing the length of amplified fragments after agarose electrophoresis. The proper ranges of annealing temperature (Ta) under which primers can specifically extend were achieved by observing the amplification status at different temperatures.

RESULTS

SB-ASA was successfully used to type 36 samples for four different kinds of SNPs. Typing results were completely consistent with those by directional sequencing. Proper Ta ranges of two primers were expanded respectively from 64-69 degrees centigrade to 46-66 degrees centigrade and from 60-62 degrees centigrade to 56-61 degrees centigrade by introducing a mismatch at the third 3'terminal base.

CONCLUSION

SB-ASA is a simple, rapid and efficient new method for SNP typing. During allele specific PCR reaction, specific primers with a mismatch at the third 3'terminal base have more power to identify two alleles.

摘要

目的

建立一种基于等位基因特异性PCR的单核苷酸多态性(SNP)分型新方法:单管双向扩增(SB-ASA),并研究在等位基因特异性引物的3'末端第三位碱基引入错配对等位基因特异性延伸的影响。

方法

在PCR体系中同时加入两条在3'末端第三位碱基引入错配的等位基因特异性引物;它们向相反方向延伸并扩增出大小不同的两个等位基因特异性片段。通过观察琼脂糖电泳后扩增片段的长度来确定基因型。通过观察不同温度下的扩增情况,得出引物能够特异性延伸的合适退火温度(Ta)范围。

结果

SB-ASA成功用于对36个样本的4种不同SNP进行分型。分型结果与直接测序结果完全一致。通过在3'末端第三位碱基引入错配,两条引物合适的Ta范围分别从64-69℃扩展到46-66℃和从60-62℃扩展到56-61℃。

结论

SB-ASA是一种简单、快速且高效的SNP分型新方法。在等位基因特异性PCR反应中,3'末端第三位碱基引入错配的特异性引物在区分两个等位基因方面更具优势。

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