Kovaliov Marina, Weitman Michal, Major Dan Thomas, Fischer Bilha
Department of Chemistry, Gonda-Goldschmied Medical Research Center and the Lise-Meitner-Minerva Center of Computational Quantum Chemistry, Bar-Ilan University , Ramat-Gan 52900, Israel.
J Org Chem. 2014 Aug 1;79(15):7051-62. doi: 10.1021/jo5011944. Epub 2014 Jul 14.
To expand the arsenal of fluorescent cytidine analogues for the detection of genetic material, we synthesized para-substituted phenyl-imidazolo-cytidine ((Ph)ImC) analogues 5a-g and established a relationship between their structure and fluorescence properties. These analogues were more emissive than cytidine (λem 398-420 nm, Φ 0.009-0.687), and excellent correlation was found between Φ of 5a-g and σp(-) of the substituent on the phenyl-imidazolo moiety (R(2) = 0.94). Calculations suggested that the dominant tautomer of (Ph)ImC in methanol solution is identical to that of cytidine. DFT calculations of the stable tautomer of selected (Ph)ImC analogues suggested a relationship between the HOMO-LUMO gap and Φ and explained the loss of fluorescence in the nitro analogue. Incorporation of the CF3-(Ph)ImdC analogue into a DNA probe resulted in 6-fold fluorescence quenching of the former. A 17-fold reduction of fluorescence was observed for the G-matched duplex vs ODN(CF3-(Ph)ImdC), while for A-mismatched duplex, only a 2-fold decrease was observed. Furthermore, since the quantum yield of ODN(CF3-(Ph)ImdC):ODN(G) was reduced 17-fold vs that of a single strand, whereas that of ODN(CF3-(Ph)ImdC):ORN(G) was reduced only 3.8-fold, ODN(CF3-(Ph)ImdC) appears to be a DNA-selective probe. We conclude that the ODN(CF3-(Ph)ImdC) probe, exhibiting emission sensitivity upon single nucleotide replacement, may be potentially useful for DNA single nucleotide polymorphism (SNP) typing.
为了扩充用于检测遗传物质的荧光胞苷类似物库,我们合成了对位取代苯基 - 咪唑并胞苷((Ph)ImC)类似物5a - g,并建立了它们的结构与荧光性质之间的关系。这些类似物比胞苷更具发射性(发射波长λem 398 - 420 nm,荧光量子产率Φ 0.009 - 0.687),并且发现5a - g的Φ与苯基 - 咪唑并部分上取代基的σp(-)之间具有极好的相关性(R(2) = 0.94)。计算表明,(Ph)ImC在甲醇溶液中的主要互变异构体与胞苷的相同。对选定的(Ph)ImC类似物的稳定互变异构体进行密度泛函理论(DFT)计算,揭示了最高占据分子轨道(HOMO)-最低未占据分子轨道(LUMO)能隙与Φ之间的关系,并解释了硝基类似物中荧光的丧失。将CF3-(Ph)ImdC类似物掺入DNA探针导致前者荧光猝灭6倍。与ODN(CF3-(Ph)ImdC)相比,G匹配双链体的荧光降低了17倍,而对于A错配双链体,仅观察到2倍的降低。此外,由于ODN(CF3-(Ph)ImdC):ODN(G)的量子产率相对于单链降低了17倍,而ODN(CF3-(Ph)ImdC):ORN(G)的量子产率仅降低了3.8倍,因此ODN(CF3-(Ph)ImdC)似乎是一种DNA选择性探针。我们得出结论,ODN(CF3-(Ph)ImdC)探针在单核苷酸替换时表现出发射敏感性,可能对DNA单核苷酸多态性(SNP)分型具有潜在用途。