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Two distinct overstretched DNA states.

机译:两种不同的过度拉伸DNA状态。

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The DNA double helix undergoes an 'overstretching' transition in a narrow force range near 65 pN. Despite numerous studies the basic question of whether the strands are separated or not remains controversial. Here we show that overstretching in fact involves two distinct types of double-helix reorganization: slow hysteretic 'unpeeling' of one strand off the other; and a fast, non-hysteretic transition to an elongated double-stranded form. We demonstrate that the relative fraction of these two overstretched forms is sensitive to factors that affect DNA base pair stability, including DNA sequence, salt concentration and temperature. The balance between the two forms shifts near physiological solution conditions. This result, in addition to establishing the existence of an overstretched double-stranded state, also shows that double helix physical properties are tuned so that either unpeeling or overextension can be selected via small changes in molecule environment.
机译:DNA双螺旋在接近65 pN的狭窄力范围内经历了“过度拉伸”转变。尽管进行了大量研究,但是关于股线是否分开的基本问题仍然存在争议。在这里,我们表明,过度拉伸实际上涉及两种不同类型的双螺旋重组:一股链的缓慢滞后“脱皮”。快速,无迟滞地过渡到细长的双链形式。我们证明这两种过度伸展形式的相对分数对影响DNA碱基对稳定性的因素敏感,包括DNA序列,盐浓度和温度。两种形式之间的平衡在生理溶液条件附近转移。该结果除了确定存在过度拉伸的双链状态外,还表明调节了双螺旋的物理性质,从而可以通过分子环境的微小变化选择脱皮或过度延伸。

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