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Prediction of the structure of the Y+.R-.R(+)-type DNA triple helix by molecular modelling.

机译:通过分子建模预测Y + .R-.R(+)型DNA三重螺旋的结构。

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摘要

Molecular mechanics has been used to predict the structure of the Y+.R-.R(+)-type DNA triple helix, in which a second polypurine strand binds antiparallel to the homopurine strand of a homopurine/homopyrimidine stretch of duplex DNA. From calculations on the sequence d(C)10.d(G)10.d(G)10, two likely structures emerge. One has the glycosidic torsions of the third strand bases in the anti-conformation and Hoogsteen hydrogen-bonds to the purine strand of the duplex, the other has the third strand purines in the syn orientation and uses a reverse-Hoogsteen hydrogen-bonding pattern. Despite the large structural differences between these two types of triplex, calculations performed in vacuo with a distance-dependent dielectric constant to mimic the shielding effect of solvent show them to be energetically very similar, with the latter (syn) slightly preferred. However, if explicit solvent molecules are included in the calculation, the anti conformation is found to be much preferred. This difference in the results seems to stem from an underestimation of short-range electrostatic interactions in the in vacuo simulations. When TAA or TAT base triples are substituted for the sixth CGG triple in the sequence, it is found that, for the solvated model, the third strand base of the TAA triple prefers the syn orientation while that in the TAT triple retains a preference, though reduced, for the anti conformation.
机译:分子力学已用于预测Y + .R-.R(+)型DNA三重螺旋的结构,其中第二条多嘌呤链与平行双链DNA的高嘌呤/高嘧啶段的高嘌呤链反平行结合。通过对序列d(C)10.d(G)10.d(G)10的计算,出现了两种可能的结构。一个在反构象中具有第三链碱基的糖苷扭转,并且Hoogsteen氢键结合至双链体的嘌呤链,另一个在反方向具有第三链嘌呤,并使用反向Hoogsteen氢键模式。尽管这两种类型的三链体之间存在巨大的结构差异,但在真空中以距离相关的介电常数来模拟溶剂的屏蔽效果进行的计算显示,它们在能量上非常相似,而后者(syn)则稍为优选。但是,如果计算中包括明确的溶剂分子,则反构象是非常优选的。结果的差异似乎是由于真空模拟中对短程静电相互作用的低估所致。发现当用TAA或TAT碱基三元组取代序列中的第六个CGG三元组时,虽然对于溶剂化模型,TAA三元组的第三链碱基偏爱syn方向,而TAT三元组中的三链碱基仍具有偏好性,还原,用于反构象。

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