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Dynamics in the Folding of Long DNA Chain under Strong Flow

机译:强流下长DNA链折叠的动力学

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This paper presents the study about the dynamics in the folding of long DNA under strong flow. Direct observation of the folding process of the tethered DNA molecule induced by adding a condensing agent is demonstrated using a microfluidic device, and this theoretical interpretation of the process is provided. From the direct observation, it is found that the folding dynamics typically exhibits characteristic three stages: (i) initial rapid compaction, (ii) slowing-down, (iii) sudden speed-up. Such a notable feature pin-points a nonequilibrium flow effect and can be interpreted by a simple theory, which takes account of the nonuniformity of the tethered chain stretched by flow.
机译:本文提出了在强流动下长DNA折叠动力学的研究。使用微流体装置证明了直接观察通过添加缩合剂诱导的束缚DNA分子的折叠过程,并提供了该过程的理论解释。从直接观察中发现,折叠动力学通常表现出特征性的三个阶段:(i)初始快速压实,(ii)减速,(iii)突然加速。这种显着特征指出了非平衡流动效应,并且可以通过简单的理论来解释,该理论考虑了因流动而拉伸的系链的不均匀性。

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