Yang Hui-Ling, Jiang Hu-Jun, Fang Wei-Yi, Xu Yang-Yan, Liao Duan-Fang, He Fu-Chu
SNP Institute, Institute of Pharmacy and Pharmacology, Nanhua University, Hengyang 421001, Hunan, China.
Biochem Biophys Res Commun. 2005 Mar 4;328(1):265-72. doi: 10.1016/j.bbrc.2004.12.159.
In the initial report, introducing a single phosphorothioate modification at the very 3' terminus of the oligodeoxynucleotide primer has been shown to effectively protect the oligodeoxynucleotide degradation due to the 3' exonuclease activity. In this study, we reported a novel finding that phosphorothioate modification at the 3' end of primers could not only effectively prevent the primer from degradation, but could also mediate an off-switch extension by Pfu polymerase when primers also carry single or multiple mismatched bases located in the first eight bases of the 3' terminus. This suggests that the combination of 3' phosphorothioate-modified primers with exo+ polymerases such as Pfu constituted an on/off switch, which allows perfectly matched primers to be extended but not mismatched primers. Furthermore, we found that polymerases with different fidelities showed different efficiencies in turning off mismatched-primer mediated extension. So we described here a SYBR green-based real-time quantitative PCR assay for the detection of abundance level of gene expression that did not require fluorescently labeled gene-specific probes or complicated primer combinations. The emergence of real-time quantitative RT-PCR technology is thus suited for a diverse application with a need for high-throughput methods to detect and quantify different gene expressions by way of simplicity, versatility, and accuracy, and thus could complement global microarray-based expression profiling strategies.
在最初的报告中,已表明在寡脱氧核苷酸引物的3'末端引入单个硫代磷酸酯修饰可有效保护寡脱氧核苷酸免受3'核酸外切酶活性导致的降解。在本研究中,我们报告了一项新发现,即引物3'末端的硫代磷酸酯修饰不仅可以有效防止引物降解,而且当引物在3'末端的前八个碱基中还携带单个或多个错配碱基时,还可以介导Pfu聚合酶的开关外延伸。这表明3'硫代磷酸酯修饰的引物与诸如Pfu的exo +聚合酶的组合构成了一个开/关开关,它允许完全匹配的引物延伸,但不允许错配的引物延伸。此外,我们发现具有不同保真度的聚合酶在关闭错配引物介导的延伸方面表现出不同的效率。因此,我们在此描述了一种基于SYBR Green的实时定量PCR测定法,用于检测基因表达的丰度水平,该方法不需要荧光标记的基因特异性探针或复杂的引物组合。因此,实时定量RT-PCR技术的出现适合于多种应用,这些应用需要高通量方法通过简单性、通用性和准确性来检测和定量不同的基因表达,从而可以补充基于全局微阵列的表达谱分析策略。