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Role of Bending Energy and Knot Chirality in Knot Distribution and Their Effective Interaction along Stretched Semiflexible Polymers

机译:弯曲能和结手征性在拉伸半柔性聚合物中的分布及其有效相互作用中的作用

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摘要

Knots appear frequently in semiflexible (bio)polymers, including double-stranded DNA, and their presence can affect the polymer’s physical and functional properties. In particular, it is possible and indeed often the case that multiple knots appear on a single chain, with effects which have only come under scrutiny in the last few years. In this manuscript, we study the interaction of two knots on a stretched semiflexible polymer, expanding some recent results on the topic. Specifically, we consider an idealization of a typical optical tweezers experiment and show how the bending rigidity of the chain—And consequently its persistence length—Influences the distribution of the entanglements; possibly more importantly, we observe and report how the relative chirality of the otherwise identical knots substantially modifies their interaction. We analyze the free energy of the chain and extract the effective interactions between embedded knots, rationalizing some of their pertinent features by means of simple effective models. We believe the salient aspect of the knot–knot interactions emerging from our study will be present in a large number of semiflexible polymers under tension, with important consequences for the characterization and manipulation of these systems—Be they artificial or biologica in origin—And for their technological application.
机译:半挠性(生物)聚合物(包括双链DNA)中经常出现结,并且它们的存在会影响聚合物的物理和功能特性。特别是,在单个链上可能会出现多个结,而且实际上常常是这样的情况,其效果仅在最近几年才受到审查。在此手稿中,我们研究了拉伸半柔性聚合物上两个结的相互作用,从而扩展了有关该主题的一些最新成果。具体而言,我们考虑了典型光镊实验的理想化,并显示了链的弯曲刚度(以及其持久长度)如何影响缠结的分布;可能更重要的是,我们观察并报告了其他相同结的相对手性如何实质上改变了它们的相互作用。我们分析了链的自由能并提取了嵌入结之间的有效相互作用,并通过简单有效的模型合理化了它们的某些相关特征。我们认为,我们的研究中出现的打结-打结相互作用的显着方面将存在于大量处于张力下的半柔性聚合物中,这对这些系统的特性和操作(无论是起源于人工还是生物学的)都将产生重要影响,并且对于他们的技术应用。

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