Laboratory of Bioorganic Chemistry and Chemical Biology, Center for Nanotechnology, Heisenbergstraße 11, 48149 Münster, Germany.
Chemistry. 2012 Jul 27;18(31):9590-600. doi: 10.1002/chem.201103385. Epub 2012 Jul 5.
New pyrrolo-dC click adducts (4 and 5) tethered with a 1,2,3-triazole skeleton were synthesized and oligonucleotides were prepared. The triazole system was either directly linked to the pyrrolo moiety (5) or connected via an n-butyl linker (4). The quantum yield of nucleoside 5 (Φ=0.32), which is 10 times higher than those of 8-methylpyrrolo-dC (1 b, Φ=0.026) or the long linker derivative 4 (Φ=0.03), is maintained in oligonucleotides. Compound 5 was used as a nucleobase-discriminating fluorescence sensor in duplex DNA. Excellent mismatch discrimination was observed when 5 was positioned opposite the four canonical nucleosides. Compound 5 has the potential to be used for SNP detection in long DNA targets when conventional techniques such as high resolution melt analysis fail.
新的吡咯并-dC 点击加合物(4 和 5)与 1,2,3-三唑骨架连接,合成了寡核苷酸。三唑系统要么直接连接到吡咯部分(5),要么通过正丁基连接体(4)连接。核苷 5 的量子产率(Φ=0.32)比 8-甲基吡咯并-dC(1b,Φ=0.026)或长连接体衍生物 4(Φ=0.03)高 10 倍,在寡核苷酸中得以保持。化合物 5 被用作双链 DNA 中的核碱基分辨荧光传感器。当 5 与四个标准核苷相对时,观察到极好的错配分辨。当常规技术(如高分辨率熔解分析)失败时,化合物 5 有可能用于长 DNA 靶标中的 SNP 检测。