首页> 外文期刊>Chembiochem: A European journal of chemical biology >Efficient DNA Strand Displacement by a W-Shaped Nucleoside Analogue (WNA-βT) Containing an ortho-Methyl-Substituted Phenyl Ring
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Efficient DNA Strand Displacement by a W-Shaped Nucleoside Analogue (WNA-βT) Containing an ortho-Methyl-Substituted Phenyl Ring

机译:W型核苷类似物(WNA-βT)含有邻甲基取代的苯基环的有效DNA链置换。

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摘要

Molecules that can target duplex DNA with sequence selectivity have the potential to be useful tools in genomic research and also as therapeutic agents. Homopurine-homopyrimidine stretches in duplex DNA can be recognized by homopurine or homopyrimidine TFOs (triplex-forming oligonucleotides) through the formation of triplex DNA. We have previously developed bicyclic nucleoside analogues (WNAs) for the formation of stable triplexes in the formation of stable antiparallel triplexes containing a TA or a CG interrupting site. In this study, we investigated the effects on triplex DNA formation of ortho-, meta-, and para-methyl substituent groups on the aromatic ring of the WNA analogue. It was found that the homopurine TFO containing meta- and para-methyl-substituted WNA-βT (mMe-WNA-βT, pMe-WNA-βT) stabilized triplexes containing a TA interrupting site or a GC site, respectively. Interestingly, the ortho-methyl-substituted WNA-βT (oMe-WNA-βT) efficiently promoted DNA strand displacement to form the TFO/pyrimidine duplex. A detailed investigation showed that the duplex was in the antiparallel orientation and that its formation took place prior to triplex formation with the need for a magnesium cation. NOESY measurements indicated a significant difference in the rotation flexibilities of the phenyl rings of WNA-βTs: that is, the conformation of the ortho-methylated phenyl ring was stable in a temperature-independent manner. It was speculated that the initial formation of a ternary complex was followed by strand displacement and then the formation of the TFO/pyrimidine duplex together with the TFO _2/pyrimidine triplex formation during the early stage, and that the equilibrium shifted to the triplex during the later stage. Although the detailed role is still uncertain, the fixed phenyl ring of oMe-WNA-βT might play a role in the displacement reaction.
机译:可以以序列选择性靶向双链体DNA的分子具有成为基因组研究中有用的工具以及用作治疗剂的潜力。高纯嘌呤或高嘧啶TFO(形成三重链的寡核苷酸)可以通过形成三链DNA来识别双链DNA中的高嘌呤-高嘧啶片段。我们以前已经开发了双环核苷类似物(WNAs),用于在形成包含TA或CG中断位点的稳定反平行三链体的过程中形成稳定三链体。在这项研究中,我们调查了WNA类似物的芳香环上邻,间和对甲基取代基对三链DNA形成的影响。已经发现,含有间甲基和对甲基取代的WNA-βT(mMe-WNA-βT,pMe-WNA-βT)的高嘌呤TFO分别稳定了含有TA中断位点或GC位点的三链体。有趣的是,邻甲基取代的WNA-βT(oMe-WNA-βT)有效地促进了DNA链置换,形成了TFO /嘧啶双链体。详尽的研究表明,双链体处于反平行方向,并且在形成三链体之前需要镁阳离子才能形成双链体。 NOESY测量表明WNA-βTs的苯环的旋转柔韧性存在显着差异:也就是说,邻甲基化苯环的构象以与温度无关的方式稳定。据推测,三元复合物的最初形成是链转移,然后是TFO /嘧啶双链体的形成以及TFO _2 /嘧啶三链体的早期形成,并且在三聚体形成期间平衡转移到三链体。后期。尽管具体作用尚不确定,但oMe-WNA-βT的固定苯环可能在置换反应中起作用。

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