Becher Jonas, Berdnikova Daria V, Ihmels Heiko, Stremmel Christopher
Department of Chemistry and Biology, University of Siegen and Center of Micro- and Nanochemistry and Engineering (Cμ); Adolf-Reichwein-Str. 2, 57068 Siegen, Germany.
Beilstein J Org Chem. 2020 Nov 18;16:2795-2806. doi: 10.3762/bjoc.16.230. eCollection 2020.
A small series of five novel berberine derivatives was synthesized by the Cu-catalyzed click reaction of 9-propargyladenine with 9--(azidoalkyl)berberine derivatives. The association of the resulting berberine-adenine conjugates with representative quadruplex-forming oligonucleotides dA(GTTA)G and d(ACAGTGTG) was examined with photometric and fluorimetric titrations, thermal DNA denaturation analysis, and CD spectroscopy. The results from the spectrometric titrations indicated the formation of 2:1 or 1:1 complexes (ligand:G4-DNA) with log values of 10-11 (2:1) and 5-6 (1:1), which are typical for berberine derivatives. Notably, a clear relationship between the binding affinity of the ligands with the length of the alkyl linker chain, , was not observed. However, depending on the structure, the ligands exhibited different effects when bound to the G4-DNA, such as fluorescent light-up effects and formation of ICD bands, which are mostly pronounced with a linker length of = 4 (with ) and = 5 (with ), thus indicating that each ligand-G4-DNA complex has a specific structure with respect to relative alignment and conformational flexibility of the ligand in the binding site. It was shown exemplarily with one representative ligand from the series that such berberine-adenine conjugates exhibit a selective binding, specifically a selectivity to quadruplex DNA in competition with duplex DNA, and a preferential thermal stabilization of the G4-DNA forms and . Notably, the experimental data do not provide evidence for a significant effect of the adenine unit on the binding affinity of the ligands, for example, by additional association with the loops, presumably because the adenine residue is sterically shielded by the neighboring triazole unit.
通过9-炔丙基腺嘌呤与9-(叠氮烷基)小檗碱衍生物的铜催化点击反应,合成了一小系列五种新型小檗碱衍生物。通过光度滴定和荧光滴定、热DNA变性分析以及圆二色光谱,研究了所得小檗碱-腺嘌呤缀合物与代表性的形成四链体的寡核苷酸dA(GTTA)G和d(ACAGTGTG)的结合情况。光谱滴定结果表明形成了2:1或1:1的配合物(配体:G4-DNA),其log 值为10-11(2:1)和5-6(1:1),这是小檗碱衍生物的典型值。值得注意的是,未观察到配体的结合亲和力与烷基连接链长度之间的明显关系。然而,根据结构不同,配体与G4-DNA结合时表现出不同的效应,如荧光增强效应和诱导圆二色带的形成,当连接链长度 = 4(对于 )和 = 5(对于 )时最为明显,这表明每个配体-G4-DNA配合物在结合位点中配体的相对排列和构象灵活性方面具有特定结构。以该系列中的一种代表性配体为例表明,此类小檗碱-腺嘌呤缀合物表现出选择性结合,特别是与双链DNA竞争时对四链体DNA的选择性,以及对G4-DNA形式 和 的优先热稳定作用。值得注意的是,实验数据没有提供腺嘌呤单元对配体结合亲和力有显著影响的证据,例如通过与环的额外结合,大概是因为腺嘌呤残基被相邻的三唑单元空间屏蔽。