Department of Physics , Jadavpur University , 188, Raja S. C. Mallick Road , Kolkata , West Bengal 700032 , India.
School of Physics , Sambalpur University , Jyoti Vihar, Burla , Odisha 768 019 , India.
J Phys Chem B. 2018 Nov 15;122(45):10279-10290. doi: 10.1021/acs.jpcb.8b07856. Epub 2018 Nov 2.
This article describes how a natural alkaloid allocryptopine (ALL) is able to differentiate two forms of biologically relevant human telomeric (htel22) G-quadruplex DNAs (GQ-DNA) depending on the presence of K and Na ions by steady-state and time-resolved spectroscopic techniques. For both interactions, predominant involvements of static-type quenching mechanism with the negligible influence of dynamic collision are established by UV-vis absorption and fluorescence emission study, which is further supported by fluorescence lifetime measurements. ALL exhibits appreciable affinity toward both GQ-DNAs. Both the mixed-hybrid (3 + 1) quadruplex structures in K ions and the basket-type antiparallel quadruplex structure under Na condition are converted to parallel types in the presence of ALL. Fluorescence intercalator displacement assay experiment revealed modest selectivity of ALL to both quadruplexes over duplex DNA along with higher selectivity for antiparallel types among the two quadruplexes via groove and/or loop binding, which is distinct from the conventional π-stacking of the ligands on external G-quartets. ALL stabilized both GQ-DNA topologies moderately. The differences in the dynamics of ALL within both DNA environments have been demonstrated vividly by time-resolved anisotropy measurements using the wobbling-in-cone model. These results suggest groove binding with antiparallel G-quartet with high affinity and moderate loop binding with mixed-hybrid G-quartet accompanied by the partial end stacking additionally in both of the cases. Our conclusions are further supported by steady-state anisotropy measurements and molecular docking. The present investigation can be used in the development of a biocompatible antitumour/anticancer agent targeting particular GQ-DNA conformation.
本文描述了一种天然生物碱阿枯米定(ALLOC)如何通过稳态和时间分辨光谱技术,根据存在的 K 和 Na 离子,区分两种形式的具有生物学相关性的人类端粒(htel22)G-四链体 DNA(GQ-DNA)。对于两种相互作用,通过紫外-可见吸收和荧光发射研究都确立了主要涉及静态型猝灭机制,且动态碰撞的影响可以忽略不计,这进一步得到了荧光寿命测量的支持。ALLOC 对两种 GQ-DNA 都表现出相当的亲和力。在 ALLOC 的存在下,K 离子中的混合杂交(3+1)四链体结构和 Na 条件下的篮型反平行四链体结构都转化为平行类型。荧光嵌入剂置换实验表明,ALLOC 对两种四链体相对于双链 DNA 具有适度的选择性,并且通过沟槽和/或环结合对两种四链体中的反平行类型具有更高的选择性,这与配体在外部 G-四联体上的传统 π-堆积不同。ALLOC 适度稳定两种 GQ-DNA 拓扑结构。通过使用摇摆锥模型的时间分辨各向异性测量,生动地证明了 ALLOC 在两种 DNA 环境中的动力学差异。这些结果表明,在两种情况下,ALLOC 都与高亲和力的反平行 G-四联体发生沟槽结合,并与混合杂交 G-四联体发生适度的环结合,另外还伴有部分末端堆积。稳态各向异性测量和分子对接进一步支持了我们的结论。本研究可用于开发针对特定 GQ-DNA 构象的生物相容抗肿瘤/抗癌药物。