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High throughput measurement of duplex, triplex and quadruplex melting curves using molecular beacons and a LightCycler

机译:使用分子信标和LightCycler高通量测量双链,三链和四链解链曲线

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摘要

We have used oligonucleotides containing molecular beacons to determine melting profiles for intramolecular DNA duplexes, triplexes and quadruplexes (tetraplexes). The synthetic oligonucleotides used in these studies contain a fluorophore (fluorescein) and quencher (methyl red) attached either to deoxyribose or to the 5 position of dU. In the folded DNA structures the fluorophore and quencher are in close proximity and the fluorescence is quenched. When the structures melt, the fluorophore and quencher are separated and there is a large increase in fluorescence. These experiments were performed in a Roche LightCycler; this requires small amounts of material (typically 4 pmol oligonucleotide) and can perform 32 melting profiles in parallel. We have used this technique to compare the stability of triplexes containing different base analogues and to confirm the selectivity of a triplex-binding ligand for triplex, rather than duplex, DNA. We have also compared the melting of inter- and intramolecular quadruplexes.
机译:我们已使用包含分子信标的寡核苷酸来确定分子内DNA双链体,三链体和四链体(四链体)的解链谱。这些研究中使用的合成寡核苷酸包含一个荧光团(荧光素)和一个淬灭剂(甲基红),它们附着在脱氧核糖或dU的5位上。在折叠的DNA结构中,荧光团和淬灭剂非常接近,荧光被淬灭。当结构熔化时,荧光团和淬灭剂分离,并且荧光大大增加。这些实验是在Roche LightCycler中进行的;这需要少量的材料(通常为4 pmol寡核苷酸),并且可以并行执行32个熔解曲线。我们已经使用这种技术来比较包含不同碱基类似物的三链体的稳定性,并确认三链体结合配体对三链体(而不是双链体)DNA的选择性。我们还比较了分子间和分子内四链体的熔化。

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