Department of Chemistry-Biology, Center of Micro- and Nanochemistry and (Bio-)Technology (Cµ), University of Siegen, Adolf-Reichwein-Str. 2, 57068 Siegen, Germany.
Molecules. 2021 Oct 30;26(21):6595. doi: 10.3390/molecules26216595.
Recently, several quadruplex-DNA-forming sequences have been identified in the insulin-linked polymorphic region (ILPR), which is a guanine-rich oligonucleotide sequence in the promoter region of insulin. The formation of this non-canonical quadruplex DNA (G4-DNA) has been shown to be involved in the biological activity of the ILPR, specifically with regard to its interplay with insulin. In this context, this contribution reports on the investigation of the association of the quadruplex-forming ILPR sequence with insulin as well as with the well-known G4-DNA ligand 3,11-difluoro-6,8,13-trimethyl-8-quino[4,3,2-]acridinium (), also named RHPS4, by optical and NMR spectroscopy. CD- and NMR-spectroscopic measurements confirmed the preferential formation of an antiparallel quadruplex structure of with four stacked guanine quartets. Furthermore, ligand has high affinity toward and binds by terminal stacking to the G1-G11-G15-G25 quartet. In addition, the spectroscopic studies pointed to an association of insulin to the deoxyribose backbone of the loops of .
最近,在胰岛素连接多态性区域 (ILPR) 中已经鉴定出了几个四链体 DNA 形成序列,该序列是胰岛素启动子区域中富含鸟嘌呤的寡核苷酸序列。已经证明这种非典型的四链体 DNA (G4-DNA) 的形成与 ILPR 的生物学活性有关,特别是与胰岛素的相互作用有关。在这种情况下,本研究报告了对四链体形成的 ILPR 序列与胰岛素以及与众所周知的 G4-DNA 配体 3,11-二氟-6,8,13-三甲基-8-喹诺[4,3,2-]吖啶(),也称为 RHPS4 的结合的研究,通过光学和 NMR 光谱学进行研究。CD 和 NMR 光谱测量证实了 优先形成具有四个堆叠的鸟嘌呤四联体的反平行四链体结构。此外,配体 对 具有高亲和力,并通过末端堆积结合到 G1-G11-G15-G25 四联体上。此外,光谱研究表明胰岛素与 的脱氧核糖骨架的环结合。