Mouritzen Peter, Nielsen Alex Toftgaard, Pfundheller Henrik M, Choleva Yoanna, Kongsbak Lars, Møller Søren
Exiqon A/S, Bygstubben 9, DK-2950 Vedbaek, Denmark.
Expert Rev Mol Diagn. 2003 Jan;3(1):27-38. doi: 10.1586/14737159.3.1.27.
Locked nucleic acid (LNA) is a new class of bicyclic high affinity DNA analogs. LNA-containing oligonucleotides confer significantly increased affinity against their complementary DNA targets, increased mismatch discrimination (delta Tm) and allow full control of the melting point of the hybridization reaction. LNA chemistry is completely compatible with the traditional DNA phosphoramidite chemistry and therefore LNA-DNA mixmer oligonucleotides can be designed with complete freedom for optimal performance. These properties render LNA oligonucleotides very well suited for SNP genotyping and have enabled several approaches for enzyme-independent SNP genotyping based on allele-specific hybridization. In addition, allele-specific PCR assays relying on enzymatically-enhanced discrimination can be improved using LNA-modified oligonucleotides. The use of LNA transforms enzyme-independent genotyping approaches into experimentally simple, robust and cost-effective assays, which are highly suited for genotyping in clinical and industrial settings.
锁核酸(LNA)是一类新型的双环高亲和力DNA类似物。含LNA的寡核苷酸对其互补DNA靶标的亲和力显著增加,错配识别能力增强(ΔTm),并能完全控制杂交反应的熔点。LNA化学与传统的DNA亚磷酰胺化学完全兼容,因此可以完全自由地设计LNA-DNA混合体寡核苷酸以实现最佳性能。这些特性使LNA寡核苷酸非常适合用于单核苷酸多态性(SNP)基因分型,并促成了几种基于等位基因特异性杂交的非酶促SNP基因分型方法。此外,使用LNA修饰的寡核苷酸可以改进依赖酶促增强识别的等位基因特异性PCR检测。LNA的使用将非酶促基因分型方法转变为实验简单、稳健且经济高效的检测方法,非常适合临床和工业环境中的基因分型。