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A measure of bending in nucleic acids structures applied to A-tract DNA

机译:应用于A级DNA的核酸结构弯曲的量度

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摘要

A method is proposed to measure global bending in DNA and RNA structures. It relies on a properly defined averaging of base-fixed coordinate frames, computes mean frames of suitably chosen groups of bases and uses these mean frames to evaluate bending. The method is applied to DNA A-tracts, known to induce considerable bend to the double helix. We performed atomistic molecular dynamics simulations of sequences containing the A(4)T(4) and T(4)A(4) tracts, in a single copy and in two copies phased with the helical repeat. Various temperature and salt conditions were investigated. Our simulations indicate bending by roughly 10 degrees per A(4)T(4) tract into the minor groove, and an essentially straight structure containing T(4)A(4), in agreement with electrophoretic mobility data. In contrast, we show that the published NMR structures of analogous sequences containing A(4)T(4) and T(4)A(4) tracts are significantly bent into the minor groove for both sequences, although bending is less pronounced for the T(4)A(4) containing sequence. The bending magnitudes obtained by frame averaging are confirmed by the analysis of superhelices composed of repeated tract monomers.
机译:提出了一种测量DNA和RNA结构整体弯曲的方法。它依赖于一个适当定义的基固定坐标帧的平均,计算的碱适当地选择基团的平均帧,并使用这些平均帧来评价弯曲。该方法应用于已知引起双螺旋显着弯曲的DNA A片段。我们对包含A(4)T(4)和T(4)A(4)片段的序列进行了原子分子动力学模拟,以单拷贝和以螺旋重复相移的两个拷贝进行。研究了各种温度和盐条件。我们的模拟表明,每条A(4)T(4)进入弯曲槽的弯曲程度大约为10度,并且与电泳迁移率数据一致,包含T(4)A(4)的基本笔直的结构。相比之下,我们显示包含A(4)T(4)和T(4)A(4)的类似序列的已公开NMR结构对于这两个序列都显着地弯曲到了小凹槽中,尽管弯曲不明显。 T(4)A(4)包含序列。通过对由重复道单体组成的超螺旋的分析,可以确定通过帧平均获得的弯曲幅度。

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