Di Giusto Daniel A, King Garry C
School of Biotechnology and Biomolecular Sciences, The University of New South Wales, Sydney, NSW 2052, Australia.
Nucleic Acids Res. 2004 Feb 18;32(3):e32. doi: 10.1093/nar/gnh036.
The effect of locked nucleic acid (LNA) modification position upon representative DNA polymerase and exonuclease activities has been examined for potential use in primer extension genotyping applications. For the 3'-->5' exonuclease activities of four proofreading DNA polymerases (Vent, Pfu, Klenow fragment and T7 DNA polymerase) as well as exonuclease III, an LNA at the terminal (L-1) position of a primer is found to provide partial protection against the exonucleases of the two family B polymerases only. In contrast, an LNA residue at the penultimate (L-2) position generates essentially complete nuclease resistance. The polymerase active sites of these enzymes also display a distinct preference. An L-1 LNA modification has modest effects upon poly merization, but an L-2 LNA group slows dTTP incorporation somewhat while virtually abolishing extension with ddTTP or acyTTP terminators, even with A488L Vent DNA polymerase engineered for terminator incorporation. These observations on active site preference have been utilized to demonstrate two novel assays: exonuclease-mediated single base extension (E-SBE) and proofreading allele-specific extension (PRASE). We show that a model PRASE genotyping reaction with L-2 LNA primers offers greater specificity than existing non-proofreading assays, whether or not the non-proofreading reaction employs LNA-modified primers.
研究了锁核酸(LNA)修饰位置对代表性DNA聚合酶和核酸外切酶活性的影响,以探讨其在引物延伸基因分型应用中的潜在用途。对于四种校正DNA聚合酶(Vent、Pfu、Klenow片段和T7 DNA聚合酶)以及核酸外切酶III的3'→5'核酸外切酶活性,发现引物末端(L-1)位置的LNA仅对两个B族聚合酶的核酸外切酶提供部分保护。相比之下,倒数第二个(L-2)位置的LNA残基产生了基本完全的核酸酶抗性。这些酶的聚合酶活性位点也表现出明显的偏好。L-1 LNA修饰对聚合作用有适度影响,但L-2 LNA基团会稍微减慢dTTP的掺入,同时实际上消除了使用ddTTP或acyTTP终止剂的延伸,即使使用为掺入终止剂而改造的A488L Vent DNA聚合酶也是如此。这些关于活性位点偏好的观察结果已被用于证明两种新的测定方法:核酸外切酶介导的单碱基延伸(E-SBE)和校正等位基因特异性延伸(PRASE)。我们表明,与现有的非校正测定相比,使用L-2 LNA引物的模型PRASE基因分型反应具有更高的特异性,无论非校正反应是否使用LNA修饰的引物。