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Extended Topological Persistence and Contact Arrangements in Folded Linear Molecules

机译:折叠线性分子中扩展的拓扑持久性和接触安排

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Structure plays a pivotal role in determining the functional properties of self-interacting linear biomolecular chains, for example proteins and nucleic acids. In this paper, we propose a method for representing each such molecule combinatorially - as a one-dimensional simplicial complex - in a novel way that takes into account intra-chain contacts. The representation allows for efficient quantification of structural similarities and differences between molecules, and for studying molecular topology using extended persistence. This method performs a multi-scale analysis on a filtered simplicial complex as it tracks clusters, holes, and higher dimensional voids in the filtration. From extended persistence we extract information about the arrangement of intra-chain interactions, a topological property which demonstrably affects folding and unfolding dynamics of the linear chains.
机译:结构在确定自我相互作用的线性生物分子链(例如蛋白质和核酸)的功能特性中起着关键作用。在本文中,我们提出了一种以一种新颖的方式(考虑到链内接触)组合表示每个此类分子的方法-作为一维简单复合体。该表示允许对分子之间的结构相似性和差异进行有效的定量,并允许使用扩展的持久性研究分子拓扑。此方法在跟踪过滤中的簇,孔和更高维的空隙时,对已过滤的简单复合体执行多尺度分析。从扩展的持久性中,我们提取出有关链内相互​​作用排列的信息,这种拓扑性质可明显影响线性链的折叠和展开动力学。

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