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Brownian dynamics studies on DNA gel electrophoresis. II. 'Defect' dynamics in the elongation-contraction motion

机译:DNA凝胶电泳的布朗动力学研究。二。伸缩运动中的“缺陷”动力学

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By means of the Brownian dynamics (BD) method of simulations we have developed, we study the dynamics of individual DNA molecules which are undergoing constant field gel electrophoresis (CFGE), focusing on the relevance of the "defect" concept due to de Gennes in CFGE. The corresponding objects, which we call slack beads (s-beads), are explicitly introduced in our BD model. In equilibrium under a vanishing field, the distance between s-beads and their hopping range is found to be randomly distributed following a Poisson distribution. In strong fields, where a chain undergoes elongation-contraction motion, s-beads are observed to be alternately annihilated in elongation and created in the contraction of the chain. On the other hand, the distribution of hopping ranges of s-beads does not differ much from that in equilibrium. The results indicate that in the elongation-contraction motion of the chain, a large number of random movements of s-beads are involved. We have also confirmed that these features of s-beads agree qualitatively with those of s-monomers in the extended bond fluctuation model (EBFM) which we recently proposed. This agreement strongly supports the stochastic semilocal movement of s-monomers which we a priori introduced into the EBFM.(C) 2002 American Institute of Physics. [References: 22]
机译:通过我们开发的布朗动力学(BD)方法,我们研究了正在进行恒定场凝胶电泳(CFGE)的单个DNA分子的动力学,重点研究了由于De Gennes引起的“缺陷”概念的相关性。 CFGE。 BD模型中明确引入了相应的对象(我们称为松弛珠子(s-beads))。在消失场的平衡下,发现s磁珠之间的距离及其跳跃范围遵循泊松分布随机分布。在强力场中,链条经历伸长-收缩运动,观察到S-beads在伸长时交替消失,并在链条的收缩过程中产生。另一方面,s磁珠的跳跃范围的分布与平衡时的分布相差不大。结果表明,在链的伸长-收缩运动中,涉及大量的s-beads随机运动。我们还证实,在我们最近提出的扩展键涨落模型(EBFM)中,s磁珠的这些特征与s单体的特征在质量上是一致的。该协议强烈支持我们先验引入EBFM的s-单体的随机半局部运动。(C)2002美国物理研究所。 [参考:22]

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