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Sequence-dependent folding of DNA three-way junctions

机译:DNA三向接头的序列依赖性折叠

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摘要

Three-way DNA junctions can adopt several different conformers, which differ in the coaxial stacking of the arms. These structural variants are often dominated by one conformer, which is determined by the DNA sequence. In this study we have compared several three-way DNA junctions in order to assess how the arrangement of bases around the branch point affects the conformer distribution. The results show that rearranging the different arms, while retaining their base sequences, can affect the conformer distribution. In some instances this generates a structure that appears to contain parallel coaxially stacked helices rather than the usual anti-parallel arrangement. Although the conformer equilibrium can be affected by the order of purines and pyrimidines around the branch point, this is not sufficient to predict the conformer distribution. We find that the folding of three-way junctions can be separated into two groups of dinucleotide steps. These two groups show distinctive stacking properties in B-DNA, suggesting there is a correlation between B-DNA stacking and coaxial stacking in DNA junctions.
机译:三向DNA连接可以采用几种不同的构象异构体,它们在臂的同轴堆叠方面有所不同。这些结构变异通常由一个构象体决定,该构象体由DNA序列决定。在这项研究中,我们比较了几个三向DNA连接,以评估分支点周围碱基的排列如何影响构象异构体分布。结果表明,重新排列不同的臂,同时保留其基本序列,会影响构象异构体的分布。在某些情况下,这会产生一种结构,该结构似乎包含平行的同轴堆叠螺旋,而不是通常的反平行排列。尽管构象平衡受分支点附近嘌呤和嘧啶的顺序影响,但这不足以预测构象分布。我们发现三向连接的折叠可以分为两组二核苷酸步骤。这两类在B-DNA中显示出独特的堆叠特性,这表明B-DNA堆叠与DNA连接中的同轴堆叠之间存在相关性。

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