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SCREW MOTION OF DNA DUPLEX DURING TRANSLOCATION THROUGH PORE. I. INTRODUCTION OF THE COARSE-GRAINED MODEL

机译:通过孔进行DNA双链转运过程中的螺旋运动。一,粗粒度模型简介

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Based upon the structural properties of DNA duplexes and their counterion-water surrounding in solution, we have introduced here a screw model which may describe translocation of DNA duplexes through artificial nanopores of the proper diameter (where the DNA counterion-hydration shell can be intact) in a qualitatively correct way. This model represents DNA as a kind of "screw," whereas the counterion-hydration shell is a kind of "nut." Mathematical conditions for stable dynamics of the DNA screw model are investigated in detail. When an electrical potential is applied across an artificial membrane with a nanopore, the "screw" and "nut" begin to move with respect to each other, so that their mutual rotation is coupled with their mutual translation. As a result, there are peaks of electrical current connected with the mutual translocation of DNA and its counterion-hydration shell, if DNA is possessed of some non-regular base-pair sequence. The calculated peaks of current strongly resemble those observed in the pertinent experiments. An analogous model could in principle be applied to DNA translocation in natural DNA-protein complexes of biological interest, where the role of "nut" would be played by protein-tailored "channels." In such cases, the DNA screw model is capable of qualitatively explaining chemical-to-mechanical energy conversion in DNA-protein molecular machines via symmetry breaking in DNA-protein friction.
机译:根据DNA双链体的结构特性及其溶液中的抗衡离子水,我们在这里介绍了一个螺旋模型,该模型可以描述DNA双链体通过适当直径的人造纳米孔的移位(其中DNA抗衡离子水合壳可以完好无损)以定性正确的方式。该模型将DNA表示为一种“螺钉”,而抗衡离子水合壳则为一种“坚果”。详细研究了DNA螺旋模型稳定动力学的数学条件。当在具有纳米孔的人造膜上施加电势时,“螺丝”和“螺母”开始相对彼此移动,因此它们的相互旋转与相互的平移耦合在一起。结果,如果DNA具有某些非规则碱基对序列,则存在与DNA及其抗衡离子水化壳的相互易位有关的电流峰值。计算出的电流峰值非常类似于在相关实验中观察到的峰值。原则上,类似的模型可以应用于具有生物学意义的天然DNA-蛋白质复合物中的DNA转运,其中“坚果”的作用将由蛋白质定制的“通道”发挥。在这种情况下,DNA螺旋模型能够通过DNA-蛋白质摩擦力的对称破坏定性地解释DNA-蛋白质分子机器中化学到机械能的转换。

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