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平行基序三链体形成:一种将合成的氰尿苷掺入有义链中的新型双向氢键模式。

Parallel motif triplex formation a new, bi-directional hydrogen bonding pattern incorporating a synthetic cyanuryl nucleoside into the sense chain.

作者信息

Hatano Akihiko, Shimazaki Kei, Otsu Maina, Kawai Gota

机构信息

Department of Chemistry, Shibaura Institute of Technology 307 Fukasaku, Minuma-ku Saitama-City Saitama 337-8570 Japan

Department of Life and Environmental Sciences, Faculty of Engineering, Chiba Institute of Technology 2-17-1 Tsudanuma Narashino Chiba 275-0016 Japan.

出版信息

RSC Adv. 2020 Jun 12;10(38):22766-22774. doi: 10.1039/d0ra03889j. eCollection 2020 Jun 10.

Abstract

This research presents the first example of the formation of a triplex hydrogen bonding of a synthetic cyanuryl nucleoside (Cn) composed of a 6-membered ring compound (triazine-2,4,6-trione) which functions as a pyrimidine base. The Cn was able to form the triad hydrogen bonding in two directions with two adenines, one in the antisense and one in the parallel chain. The thermal stability of the duplex between the antisense and sense chains was evaluated its UV melting temperature. The melting curves of triplexes possessing the cyanuryl nucleoside (sense chain) and two adenines (antisense and parallel chains) were biphasic. To prove the formation of hydrogen bonding between the cyanuryl nucleoside and the adenine base toward the major groove, structural analysis NMR was undertaken. A cyanuryl nucleoside containing three N in triazine-2,4,6-trione was synthesized first, and then the N cyanuryl nucleoside was incorporated into target sequences. The triplex containing the A·Cn[double bond, length as m-dash]A triad was analyzed H NMR, coupled and decoupled with N. This triad has two imino proton signals derived from the cyanuryl nucleoside, split according to the N coupling condition, at low field. These results are evidence of the formation of hydrogen bonds between the Cn and adenosine. The solution structure of the triplex was analyzed NOE information from the imino proton. The cyanuryl nucleoside-containing triplex forms a right-handed helical structure similar to natural triplex DNA, albeit DNA having an enhanced pyrimidine analog in the sense chain capable of bidirectional hydrogen bonding with high sequence selectivity.

摘要

本研究展示了由六元环化合物(三嗪 - 2,4,6 - 三酮)构成的、作为嘧啶碱基发挥作用的合成氰尿酰核苷(Cn)形成三链氢键的首个实例。Cn能够在两个方向上与两个腺嘌呤形成三联体氢键,一个在反义链,一个在平行链。通过紫外熔解温度评估了反义链与有义链之间双链体的热稳定性。含有氰尿酰核苷(有义链)和两个腺嘌呤(反义链和平行链)的三链体的熔解曲线是双相的。为了证明氰尿酰核苷与腺嘌呤碱基在大沟方向形成氢键,采用了核磁共振(NMR)进行结构分析。首先合成了在三嗪 - 2,4,6 - 三酮中含有三个氮的氰尿酰核苷,然后将含氮氰尿酰核苷掺入目标序列。通过与氮耦合和解耦的氢核磁共振(H NMR)分析了含有A·Cn[双键,长度如m - 破折号]A三联体的三链体。在低场下,这个三联体有两个源自氰尿酰核苷的亚氨基质子信号,根据氮耦合条件分裂。这些结果证明了Cn与腺苷之间形成了氢键。利用来自亚氨基质子的核Overhauser效应(NOE)信息分析了三链体的溶液结构。含氰尿酰核苷的三链体形成了与天然三链体DNA相似的右手螺旋结构,尽管在有义链中具有增强的嘧啶类似物,能够以高序列选择性进行双向氢键结合。

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