Institute of Biochemistry, Universität Greifswald, Felix-Hausdorff-Str. 4, 17489, Greifswald, Germany.
Chemistry. 2022 Feb 1;28(7):e202103718. doi: 10.1002/chem.202103718. Epub 2022 Jan 5.
Quadruplex-duplex (Q-D) junctions are increasingly considered promising targets for medicinal and technological applications. Here, a Q-D hybrid with a hairpin-type snapback loop coaxially stacked onto the quadruplex 3'-outer tetrad was designed and employed as a target structure for the indoloquinoline ligand SYUIQ-5. NMR spectral analysis demonstrated high-affinity binding of the ligand at the quadruplex-duplex interface with association constants determined by isothermal titration calorimetry of about 10 M and large exothermicities ΔH° of -14 kcal/mol in a 120 mM K buffer at 40 °C. Determination of the ligand-bound hybrid structure revealed intercalation of SYUIQ-5 between 3'-outer tetrad and the neighboring CG base pair, maximizing π-π stacking as well as electrostatic interactions with guanine carbonyl groups in close vicinity to the positively charged protonated quinoline nitrogen of the tetracyclic indoloquinoline. Exhibiting considerable flexibility, the SYUIQ-5 sidechain resides in the duplex minor groove. Based on comparative binding studies with the non-substituted N5-methylated indoloquinoline cryptolepine, the sidechain is suggested to confer additional affinity and to fix the alignment of the intercalated indoloquinoline aromatic core. However, selectivity for the Q-D junction mostly relies on the geometry and charge distribution of the indoloquinoline ring system. The presented results are expected to provide valuable guidelines for the design of ligands specifically targeting Q-D interfaces.
四联体- duplex (Q-D) 接头越来越被认为是有前途的医学和技术应用目标。在这里,设计了一种带有发夹型回跳环的 Q-D 杂交体,同轴堆叠在四联体的 3'-外四联体上,作为吲喹啉配体 SYUIQ-5 的靶结构。NMR 光谱分析表明,该配体在四联体- duplex 界面上具有高亲和力结合,通过等温滴定量热法测定的结合常数约为 10 M,在 40°C 的 120 mM K 缓冲液中ΔH°为-14 kcal/mol。确定配体结合的杂交体结构表明,SYUIQ-5 插入 3'-外四联体和相邻 CG 碱基对之间,最大限度地增加了 π-π 堆积以及与紧邻带正电荷的质子化喹啉氮的鸟嘌呤羰基之间的静电相互作用。吲喹啉的四环稠环。SYUIQ-5 的侧链具有相当的灵活性,位于双链体的小沟中。基于与未取代的 N5-甲基化吲喹啉 cryptolepine 的比较结合研究,建议侧链赋予额外的亲和力并固定插入的吲喹啉芳核的取向。然而,对 Q-D 接头的选择性主要依赖于吲喹啉环系统的几何形状和电荷分布。预期这些结果将为专门针对 Q-D 界面的配体设计提供有价值的指导。