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Simulation of electrophoretic stretching of DNA in a microcontraction using an obstacle array for conformational preconditioning

机译:使用障碍物阵列进行构象预处理的微收缩中DNA的电泳拉伸模拟

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摘要

Recently our group has reported experiments using an obstacle array to precondition the conformations of DNA molecules to facilitate their stretch in a microcontraction. Based upon previous successes simulating electrophoretic stretching in microcontractions without obstacles, we use our simulation model to study the deformation of DNA chains in a microcontraction preceded by an array of cylindrical obstacles. We compare our data to the experimental results and find good qualitative, and even quantitative, agreement concerning the behavior of the chains in the array; however, the simulations overpredict the mean stretch of the chains as they leave the contraction. We examine the amount of stretch gained between leaving the array and reaching the end of the contraction and speculate that the differences seen are caused by nonlinear electrokinetic effects that become important in the contraction due to a combination of field gradients and high field strengths.
机译:最近,我们的小组报告了使用障碍物阵列对DNA分子的构象进行预处理的实验,以促进其在微收缩中的拉伸。基于先前在无障碍的微收缩中模拟电泳拉伸的成功经验,我们使用我们的模拟模型研究了在先于一系列圆柱状障碍物的微收缩中DNA链的变形。我们将我们的数据与实验结果进行比较,发现关于阵列中链的行为的良好的定性,甚至定量的一致性。但是,模拟过分预测了链条离开收缩时的平均伸展度。我们检查了离开阵列和到达收缩末端之间获得的拉伸量,并推测所看到的差异是由非线性电动效应引起的,由于场梯度和高场强的结合,非线性电动效应在收缩中变得很重要。

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