Tsourkas Andrew, Behlke Mark A, Bao Gang
Department of Biomedical Engineering, Georgia Institute of Technology and Emory University, Atlanta, GA 30332, USA.
Nucleic Acids Res. 2002 Dec 1;30(23):5168-74.
Molecular beacons are stem-loop hairpin oligonucleotide probes labeled with a fluorescent dye at one end and a fluorescence quencher at the other end; they can differentiate between bound and unbound probes in homogeneous hybridization assays with a high signal-to-background ratio and enhanced specificity compared with linear oligonucleotide probes. However, in performing cellular imaging and quantification of gene expression, degradation of unmodified molecular beacons by endogenous nucleases can significantly limit the detection sensitivity, and results in fluorescence signals unrelated to probe/target hybridization. To substantially reduce nuclease degradation of molecular beacons, it is possible to protect the probe by substituting 2'-O-methyl RNA for DNA. Here we report the analysis of the thermodynamic and kinetic properties of 2'-O-methyl and 2'-deoxy molecular beacons in the presence of RNA and DNA targets. We found that in terms of molecular beacon/target duplex stability, 2'-O-methyl/RNA > 2'-deoxy/RNA > 2'-deoxy/DNA > 2'-O-methyl/DNA. The improved stability of the 2'-O-methyl/RNA duplex was accompanied by a slightly reduced specificity compared with the duplex of 2'-deoxy molecular beacons and RNA targets. However, the 2'-O-methyl molecular beacons hybridized to RNA more quickly than 2'-deoxy molecular beacons. For the pairs tested, the 2'-deoxy-beacon/DNA-target duplex showed the fastest hybridization kinetics. These findings have significant implications for the design and application of molecular beacons.
分子信标是一种茎环发夹状寡核苷酸探针,一端标记有荧光染料,另一端标记有荧光淬灭剂;与线性寡核苷酸探针相比,它们能够在均相杂交分析中区分结合和未结合的探针,具有高信噪比和更高的特异性。然而,在进行细胞成像和基因表达定量时,未修饰的分子信标被内源性核酸酶降解会显著限制检测灵敏度,并导致与探针/靶标杂交无关的荧光信号。为了大幅减少分子信标的核酸酶降解,可以用2'-O-甲基RNA替代DNA来保护探针。在此,我们报告了在存在RNA和DNA靶标的情况下对2'-O-甲基和2'-脱氧分子信标的热力学和动力学性质的分析。我们发现,就分子信标/靶标双链体稳定性而言,2'-O-甲基/RNA > 2'-脱氧/RNA > 2'-脱氧/DNA > 2'-O-甲基/DNA。与2'-脱氧分子信标和RNA靶标的双链体相比,2'-O-甲基/RNA双链体稳定性的提高伴随着特异性略有降低。然而,2'-O-甲基分子信标与RNA杂交的速度比2'-脱氧分子信标更快。对于所测试的配对,2'-脱氧信标/DNA靶标双链体显示出最快的杂交动力学。这些发现对分子信标的设计和应用具有重要意义。