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DNA under high tension: Overstretching, undertwisting, and relaxation dynamics

机译:高张力下的DNA:过度伸展,扭转和松弛动力学

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Single-molecule experiments indicate that a double-stranded DNA increases in length if put under tension greater than 10 pN; beyond this point its conformation can no longer be described using an inextensible wormlike-chain model. The simplest extensible wormlike chain with twist rigidity is considered as a model for DNA under tension, and it is found that the fact that DNA is chiral demands that stretching be coupled to twisting at Linear order in elastic theory; stretching a DNA is thus a way to perturb its twist degress of freedom. Nonlinearities are essential to stabilize the experimentally observed "overstretched" state which is roughly 1.6 times the length of the unperturbed double helix, and undertwisted. If DNA linkage is held fixed, the transition to the overstretched state is strongly broadened. The overstretching model is also used to study DNA conformational change driven by the binding of RecA proteins to the double helix, and indicates that RecA cannot be dissociated from DNA by application of tension. Finally, relaxation dynamics of a stretched DNA are discussed. The existence of a dynamical writhe instability for a chain without fixed linkage number is demonstrated; it is also argued that the (undertwisted) interior of an overstretched DNA will supercoil as it relaxes. [References: 55]
机译:单分子实验表明,如果施加大于10 pN的张力,则双链DNA的长度会增加;超过这一点,就无法再使用不可扩展的蠕虫链模型来描述其构象。最简单的具有扭转刚度的可扩展蠕虫状链被认为是受拉DNA的模型,并且发现DNA是手性的事实要求在弹性理论中以线性顺序将拉伸与扭转耦合在一起。因此,拉伸DNA是干扰其扭曲自由度的一种方法。非线性对于稳定实验观察到的“过度拉伸”状态至关重要,该状态大约是未受干扰的双螺旋长度的1.6倍,并且扭转不足。如果DNA连接保持固定,则向过度拉伸状态的过渡会大大加宽。过度拉伸模型还用于研究由RecA蛋白与双螺旋结合驱动的DNA构象变化,并表明Reca不能通过施加张力从DNA上解离。最后,讨论了拉伸的DNA的弛豫动力学。证明了没有固定连接数的链存在动态扭曲不稳定性;也有人认为,过度拉伸的DNA的(扭曲)内部在松弛时会超螺旋。 [参考:55]

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