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A Water‐Soluble Tetraazaperopyrene Dye as Strong G‐Quadruplex DNA Binder

机译:水溶性四氮杂萘并吡喃染料作为强G-四链体DNA结合剂

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摘要

The interactions of the water‐soluble tetraazaperopyrene dye >1 with ct‐DNA, duplex‐[(dAdT)12 >⋅(dAdT)12], duplex‐[(dGdC)12 >⋅(dGdC)12] as well as with two G‐quadruplex‐forming sequences, namely the human telomeric 22AG and the promotor sequence c‐myc, were investigated by means of UV/visible and fluorescence spectroscopy, isothermal titration calorimetry (ITC) and molecular docking studies. Dye >1 exhibits a high affinity for G‐quadruplex structures over duplex DNA structures. Furthermore, the ligand shows promising G‐quadruplex discrimination, with an affinity towards c‐myc of 2×107  m −1 (i.e., K d=50 nm), which is higher than for 22AG (4×106  m −1). The ITC data reveal that compound >1 interacts with c‐myc in a stoichiometric ratio of 1:1 but also indicate the presence of two identical lower affinity secondary binding sites per quadruplex. In 22AG, there are two high affinity binding sites per quadruplex, that is, one on each side, with a further four weaker binding sites. For both quadruplex structures, the high affinity interactions between compound >1 and the quadruplex‐forming nucleic acid structures are weakly endothermic. Molecular docking studies suggest an end‐stacking binding mode for compound >1 interacting with quadruplex structures, and a higher affinity for the parallel conformation of c‐myc than for the mixed‐hybrid conformation of 22AG. In addition, docking studies also suggest that the reduced affinity for duplex DNA structures is due to the non‐viability of an intercalative binding mode.
机译:水溶性四氮杂戊op染料> 1 与ct‐DNA,双链体[[dAdT)12 >⋅(dAdT)12],双链体[[dGdC)12的相互作用>⋅(dGdC)12]以及两个G-四链体形成序列,即人端粒22AG和启动子序列c-myc,通过紫外/可见和荧光光谱法进行了研究,等温滴定热法(ITC)和分子对接研究。染料> 1 对G-四链体结构的亲和力高于双链DNA结构。此外,配体显示出有希望的G-四链体歧视,对c-myc的亲和力为2×10 7 m -1 (即K d = 50 nm),高于22AG(4×10 6 m -1 )。 ITC数据显示,化合物> 1 与c-myc的化学计量比为1:1,但也表明每个四链体存在两个相同的较低亲和力二级结合位点。在22AG中,每个四链体有两个高亲和力结合位点,即每侧一个,另外四个弱结合位点。对于两个四链体结构,化合物> 1 与形成四链体的核酸结构之间的高亲和力相互作用均具有弱吸热性。分子对接研究表明,化合物> 1 与四链体结构相互作用的末端堆积结合模式,对c-myc平行构象的亲和力高于对22AG的混合杂交构象的亲和力。此外,对接研究还表明,对双链DNA结构的亲和力降低是由于嵌入结合模式的不可行所致。

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