Géci Imrich, Filichev Vyacheslav V, Pedersen Erik B
Nucleic Acid Center, Department of Physics and Chemistry, University of Southern Denmark, Campusvej 55, 5230, Odense M, Denmark.
Chemistry. 2007;13(22):6379-86. doi: 10.1002/chem.200700053.
A highly efficient method for postsynthetic modification of unprotected oligonucleotides incorporating internal insertions of (R)-1-O-(4-ethynylbenzyl)glycerol has been developed through the application of click chemistry with water-insoluble pyren-1-yl azide and water-soluble benzyl azide and acceleration by microwave irradiation. The twisted intercalating nucleic acids (TINAs) obtained in these reactions, possessing bulged insertions of (R)-3-O-{4-[1-(pyren-1-yl)-1H-1,2,3-triazol-4-yl]benzyl}glycerol (7), formed parallel triplexes with thermal stabilities of 20.0, 34.0, and 40.0 degrees C at pH 7.2 in the cases of one, two, or three insertions of 7, respectively, separated by three nucleic bases. An oligonucleotide with four insertions of 7--each between three nucleic bases in the sequence--was unable to form complexes with complementary single- or double-stranded DNAs, as a result of self-aggregation of the pyrene moieties. This assumption was supported by the formation of a very strong excimer band at 460 nm in the fluorescence spectra. Molecular modeling of the parallel triplex with bulged insertion of the monomer 7 in the triplex-forming oligonucleotide (TFO) showed that only the pyrene moiety was stacking between the bases of the dsDNA, whereas 1,2,3-triazole did not participate in the triplex stabilization. Thermal denaturation studies of the duplexes and triplexes, as well as the fluorescence properties of TINA-triazole 7, are discussed and compared with previous studies on TINA.
通过应用与水不溶性芘-1-基叠氮化物和水溶性苄基叠氮化物的点击化学,并借助微波辐射加速,开发了一种用于对未保护的寡核苷酸进行合成后修饰的高效方法,该方法可引入(R)-1-O-(4-乙炔基苄基)甘油的内部插入片段。在这些反应中获得的扭曲插入核酸(TINA),具有(R)-3-O-{4-[1-(芘-1-基)-1H-1,2,3-三唑-4-基]苄基}甘油(7)的凸起插入片段,在pH 7.2时,分别有一个、两个或三个7的插入片段(由三个核酸碱基隔开)的情况下,形成了热稳定性分别为20.0、34.0和40.0摄氏度的平行三链体。一个具有四个7插入片段(每个插入片段位于序列中的三个核酸碱基之间)的寡核苷酸,由于芘部分的自聚集,无法与互补的单链或双链DNA形成复合物。荧光光谱中在460 nm处形成非常强的准分子带支持了这一假设。对在三链体形成寡核苷酸(TFO)中具有凸起插入单体7的平行三链体进行分子建模表明,只有芘部分堆积在dsDNA的碱基之间,而1,2,3-三唑不参与三链体的稳定。讨论了双链体和三链体的热变性研究以及TINA-三唑7的荧光特性,并与之前关于TINA的研究进行了比较。