首页> 美国卫生研究院文献>other >Selective Preference of Parallel DNA Triplexes Is Due to the Disruption of Hoogsteen Hydrogen Bonds Caused by the Severe Nonisostericity between the G*GC and T*AT Triplets
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Selective Preference of Parallel DNA Triplexes Is Due to the Disruption of Hoogsteen Hydrogen Bonds Caused by the Severe Nonisostericity between the G*GC and T*AT Triplets

机译:平行DNA三元组的选择性偏好是由于G * GC和T * AT三元组之间严重的非等规性导致的Hoogsteen氢键的破坏

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摘要

Implications of DNA, RNA and RNA.DNA hybrid triplexes in diverse biological functions, diseases and therapeutic applications call for a thorough understanding of their structure-function relationships. Despite exhaustive studies mechanistic rationale for the discriminatory preference of parallel DNA triplexes with G*GC & T*AT triplets still remains elusive. Here, we show that the highest nonisostericity between the G*GC & T*AT triplets imposes extensive stereochemical rearrangements contributing to context dependent triplex destabilisation through selective disruption of Hoogsteen scheme of hydrogen bonds. MD simulations of nineteen DNA triplexes with an assortment of sequence milieu reveal for the first time fresh insights into the nature and extent of destabilization from a single (non-overlapping), double (overlapping) and multiple pairs of nonisosteric base triplets (NIBTs). It is found that a solitary pair of NIBTs, feasible either at a G*GC/T*AT or T*AT/G*GC triplex junction, does not impinge significantly on triplex stability. But two overlapping pairs of NIBTs resulting from either a T*AT or a G*GC interruption disrupt Hoogsteen pair to a noncanonical mismatch destabilizing the triplex by ~10 to 14 kcal/mol, implying that their frequent incidence in multiples, especially, in short sequences could even hinder triplex formation. The results provide (i) an unambiguous and generalised mechanistic rationale for the discriminatory trait of parallel triplexes, including those studied experimentally (ii) clarity for the prevalence of antiparallel triplexes and (iii) comprehensive perspectives on the sequence dependent influence of nonisosteric base triplets useful in the rational design of TFO’s against potential triplex target sites.
机译:DNA,RNA和RNA的含义DNA杂合三链体在各种生物学功能,疾病和治疗应用中的作用要求彻底了解它们的结构-功能关系。尽管进行了详尽的研究,但对于具有G * GC和T * AT三联体的平行DNA三链体的歧视性偏爱的机理原理仍然难以捉摸。在这里,我们显示G * GC和T * AT三胞胎之间的最高非等规性强加了广泛的立体化学重排,通过选择性破坏氢键的Hoogsteen方案,有助于上下文相关的三链体失稳。带有序列环境的19种DNA三链体的MD模拟首次揭示了从单对(非重叠),双对(重叠)和多对非等位碱基三联体(NIBT)对失稳性质和程度的新见解。发现在G * GC / T * AT或T * AT / G * GC三重连接处可行的单独一对NIBT不会显着影响三重稳定性。但是,由T * AT或G * GC中断产生的两对重叠的NIBT对将Hoogsteen对中断成非规范的失配,从而使三链体的稳定度降低了约10kcal / mol至14 kcal / mol,这意味着它们的频繁发生是多倍的,尤其是短时间的发生序列甚至可能阻碍三链体的形成。结果提供了(i)平行三元组的歧视性特征的明确和广义的机械原理,包括通过实验研究的(ii)反平行三元组的普遍性的清晰性和(iii)关于非等位碱基三联体的序列依赖性影响的综合观点针对潜在的三重目标站点合理设计TFO。

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