Van Daele Ineke, Bomholt Niels, Filichev Vyacheslav V, Van Calenbergh Serge, Pedersen Erik B
Nucleic Acid Center, Department of Physics and Chemistry, University of Southern Denmark, Campusvej 55, 5230 Odense M, Denmark.
Chembiochem. 2008 Mar 25;9(5):791-801. doi: 10.1002/cbic.200700533.
Triplex-forming homopyrimidine oligonucleotides containing insertions of a 2'-5' uridine linkage featuring a pyrene moiety at the 3'-position exhibit strong fluorescence enhancement upon binding to double-stranded DNA through Hoogsteen base pairing. It is shown that perfect matching of the new modification to the base pair in the duplex is a prerequisite for strong fluorescence, thus offering the potential to detect single mutations in purine stretches of duplex DNA. The increase in the fluorescence signal was dependent on the thermal stability of the parallel triplex, so a reduction in the pH from 6.0 to 5.0 resulted in an increase in thermal stability from 25.0 to 55.0 degrees C and in an increase in the fluorescence quantum yield (Phi(F)) from 0.061 to 0.179, while the probe alone was fluorescently silent (Phi(F)=0.001-0.004). To achieve higher triplex stability, five nucleobases in a 14-mer sequence were substituted with alpha-L-LNA monomers, which provided a triplex with a T(m) of 49.5 degrees C and a Phi(F) of 0.158 at pH 6.0. Under similar conditions, a Watson-Crick-type duplex formed with the latter probe showed lower fluorescence intensity (Phi(F)=0.081) than for the triplex.
含有2'-5'尿苷连接插入片段且在3'-位带有芘部分的三链形成同型嘧啶寡核苷酸,通过Hoogsteen碱基配对与双链DNA结合时表现出强烈的荧光增强。结果表明,新修饰与双链体中碱基对的完美匹配是产生强荧光的先决条件,因此有潜力检测双链DNA嘌呤区段中的单突变。荧光信号的增加取决于平行三链体的热稳定性,所以将pH从6.0降至5.0会导致热稳定性从25.0℃增加到55.0℃,荧光量子产率(ΦF)从0.061增加到0.179,而单独的探针无荧光(ΦF = 0.001 - 0.004)。为了实现更高的三链体稳定性,在14聚体序列中的五个核碱基被α-L-锁核酸单体取代,这在pH 6.0时提供了一个熔解温度为49.5℃且ΦF为0.158的三链体。在类似条件下,与后一种探针形成的沃森-克里克型双链体显示出比三链体更低的荧光强度(ΦF = 0.081)。