Latorra David, Arar Khalil, Hurley J Michael
Proligo LLC, 6200 Lookout Road, Boulder, CO 80301, USA.
Mol Cell Probes. 2003 Oct;17(5):253-9. doi: 10.1016/s0890-8508(03)00062-8.
The effects of comprehensive LNA substitution in PCR primers for amplification of human genomic DNA targets are presented in this report. Previous research with LNA in other applications has shown interesting properties for molecular hybridization including enhanced specificity in allele-specific PCR. Here we systematically modified PCR primers and conditions for the human genomic DNA targets APOB and PAH, along with a beta-globin amplification control, to study whether the number and position of LNA residues improves or diminishes amplification sensitivity and specificity. It was observed that the design rules for LNA substitution in PCR primers are complex and depend upon number, position and sequence context. Technical advantages were seen when compared to DNA controls for the best LNA primer designs, which were typically one to a few centrally located LNA residues. LNA advantages include increased maximum annealing temperature (Tmax) and increased signal with limiting primer or Taq DNA polymerase. Several well-characterized designs exhibited different efficiencies with different brands of hot-start enzymes. Many shorter LNA primers were found to be functional compared to same-length non-functional native DNA controls. These results show that LNA-substituted PCR primers have potential for use in difficult PCR techniques, such as multiplex amplification at higher Tmax, once firm LNA primer design rules are established.
本报告介绍了在用于扩增人类基因组DNA靶标的PCR引物中进行全面锁核酸(LNA)取代的效果。先前在其他应用中对LNA的研究显示了分子杂交的有趣特性,包括等位基因特异性PCR中增强的特异性。在这里,我们系统地修改了针对人类基因组DNA靶标载脂蛋白B(APOB)和苯丙氨酸羟化酶(PAH)的PCR引物和条件,以及一个β-珠蛋白扩增对照,以研究LNA残基的数量和位置是提高还是降低扩增敏感性和特异性。据观察,PCR引物中LNA取代的设计规则很复杂,并且取决于数量、位置和序列背景。与DNA对照相比,最佳LNA引物设计(通常是一到几个位于中心位置的LNA残基)具有技术优势。LNA的优势包括提高最大退火温度(Tmax)以及在引物或Taq DNA聚合酶有限的情况下增加信号。几种特征明确的设计在不同品牌的热启动酶中表现出不同的效率。与相同长度的无功能天然DNA对照相比,许多较短的LNA引物被发现具有功能。这些结果表明,一旦建立了确定的LNA引物设计规则,LNA取代的PCR引物在困难的PCR技术中具有应用潜力,例如在更高Tmax下的多重扩增。