首页> 外文期刊>Chemistry: A European journal >Highly Fluorescent Conjugated Pyrenes in Nucleic Acid Probes: (Phenylethynyl)pyrenecarbonyl-Functionalized Locked Nucleic Acids
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Highly Fluorescent Conjugated Pyrenes in Nucleic Acid Probes: (Phenylethynyl)pyrenecarbonyl-Functionalized Locked Nucleic Acids

机译:核酸探针中的高荧光共轭P :(苯基乙炔基)py羰基官能化的锁定核酸

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摘要

In recent years, fluorescently labeled oligonucleotides have become a widely used tool in diagnostics, DNA sequencing, and nanotechnology. The recently developed (phenylethynyl)pyrenes are attractive dyes for nucleic acid labeling, with the advantages of long-wave emission relative to the parent pyrene, high fluorescence quantum yields, and the ability to form excimers. Herein, the synthesis of six (phenylethynyl)pyrene-functionalized locked nucleic acid (LNA) monomers M-1-M-6 and their incorporation into DNA oligomers is described. Multilabeled duplexes display higher thermal stabilities than singly modified analogues. An increase in the number of phenylethynyl substituents attached to the pyrene results in decreased binding affinity towards complementary DNA and RNA and remarkable bathochromic shifts of absorption/emission maxima relative to the parent pyrene fluorochrome. This bathochromic shift leads to the bright fluorescence colors of the probes, which differ drastically from the blue emission of unsubstituted pyrene. The formation of intra- and interstrand excimers was observed for duplexes that have monomers M-1-M-6 in both complementary strands and in numerous single-stranded probes. If more phenylethynyl groups are inserted, the detected excimer signals become more intense. In addition, (phenylethynyl)pyrenecarbonyl-LNA monomers M-4, M-5, and M-6 proved highly useful for the detection of single mismatches in DNA/RNA targets.
机译:近年来,荧光标记的寡核苷酸已成为诊断,DNA测序和纳米技术中广泛使用的工具。最近开发的(苯基乙炔基)py烯是用于核酸标记的有吸引力的染料,具有相对于母体pyr长波发射,高荧光量子产率和形成准分子的能力的优点。在此,描述了六个(苯基乙炔基)py官能化的锁核酸(LNA)单体M-1-M-6的合成及其掺入DNA寡聚体中。与单修饰的类似物相比,多标记的双链体显示出更高的热稳定性。与the连接的苯基乙炔基取代基数量增加,导致相对于互补DNA和RNA的结合亲和力降低,并且相对于母体pyr荧光染料,吸收/发射最大值的显着红移。这种红移导致探针的明亮荧光色,与未取代的pyr的蓝色发射显着不同。对于在互补链和许多单链探针中均具有单体M-1-M-6的双链体,观察到了链内和链间准分子的形成。如果插入更多的苯基乙炔基,则检测到的准分子信号变得更强。另外,已证明(苯基乙炔基))羰基-LNA单体M-4,M-5和M-6对于检测DNA / RNA靶中的单个错配非常有用。

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