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Synthesis of a Dibromoperylene Phosphoramidite Building Block and Its Incorporation at the 5' End of a G-Quadruplex Forming Oligonucleotide: Spectroscopic Properties and Structural Studies of the Resulting Dibromoperylene Conjugate

机译:二溴per亚磷酰胺基构件的合成及其在形成寡核苷酸的G-四链体的5'端掺入的光谱性质和结构研究

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Previous studies indicate that some perylene bisimide derivatives can drive the assembly of DNA G-quad-ruplexes, thus suggesting the possible advantage in the adoption of perylene-conjugated G-rich oligonucleotides in biological and biotechnological applications. Nevertheless, the typical poor solubility of perylene bisimides strongly limits the number of suitable chemical strategies to prepare perylene-conjugated oligonucleotides. In order to overcome these difficulties, we employed the earlier described core twisted perylene derivatives possessing unique optical and electronic properties, besides good solubility in common solvents. As a first result, the large-scale synthesis of a new dibromoperylene derivative (PEOEBr) phosphoramidite building block is herein reported. Furthermore, the structural behavior of the conjugated PEOEBr-GGGTTAGGG (HTRp2) human telomeric repeat was investigated by using GD, UV, fluorescence, and gel electrophoresis techniques in desalted water and in K~+- and Na~+-containing buffers. We observed that the peculiar property of PEOEBr moieties to form dimers instead of extended aggregates drives the HTRp2 strands toward dimerization and mainly promotes the formation of quadruplex species having both the 5'-ends located at the same side of the structures. However, the counterions present in solutions (K~+ or Na~+) as well as the strand concentration, also contribute to influence the topology and the stoichiometry of formed structures. Furthermore, unlike the unmodified sequence GGGTTAGGG (HTR2), HTRp2 strands quickly associate into G-quadruplexes even in desalted water, as assessed by CD experiments.
机译:先前的研究表明,某些per双酰亚胺衍生物可以驱动DNA G-quad-双链体的组装,因此表明在生物和生物技术应用中采用of-缀合的富含G的寡核苷酸可能具有优势。然而,per双酰亚胺的典型不良溶解性强烈地限制了制备per偶联的寡核苷酸的合适化学策略的数量。为了克服这些困难,我们使用了较早描述的核加捻的ylene衍生物,除了在普通溶剂中具有良好的溶解性外,还具有独特的光学和电子性能。作为第一个结果,本文报道了新的二溴di衍生物(PEOEBr)亚磷酰胺结构单元的大规模合成。此外,在脱盐水,含K +和Na +的缓冲液中,使用GD,UV,荧光和凝胶电泳技术研究了缀合的PEOEBr-GGGTTAGGG(HTRp2)人端粒重复序列的结构行为。我们观察到,PEOEBr部分形成二聚体而不是延伸的聚集体的独特特性驱使HTRp2链趋向二聚化,并主要促进具有两个5'-末端位于结构同一侧的四链体物种的形成。但是,溶液中存在的抗衡离子(K〜+或Na〜+)以及链的浓度也有助于影响所形成结构的拓扑和化学计量。而且,与未修饰的序列GGGTTAGGG(HTR2)不同,HTRp2链甚至可以在脱盐水中快速缔合为G-四链体,如CD实验所评估。

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