Rusková Renáta, Račko Dušan
Polymer Institute, Slovak Academy of Sciences, Dúbravská Cesta 3, 84541 Bratislava, Slovakia.
Department of Plastics, Rubber and Fibres (IPM FCFT), Faculty of Chemical and Food Technology, Slovak University of Technology, Radlinského 9, 81237 Bratislava, Slovakia.
Polymers (Basel). 2021 Oct 28;13(21):3726. doi: 10.3390/polym13213726.
By means of coarse-grained molecular dynamics simulations, we explore chiral sensitivity of confining spaces modelled as helical channels to chiral superstructures represented by polymer knots. The simulations show that helical channels exhibit stereosensitivity to chiral knots localized on linear chains by effect of external pulling force and also to knots embedded on circular chains. The magnitude of the stereoselective effect is stronger for torus knots, the effect is weaker in the case of twist knots, and amphichiral knots do exhibit no chiral effects. The magnitude of the effect can be tuned by the so-far investigated radius of the helix, the pitch of the helix and the strength of the pulling force. The model is aimed to simulate and address a range of practical situations that may occur in experimental settings such as designing of nanotechnological devices for the detection of topological state of molecules, preparation of new gels with tailor made stereoselective properties, or diffusion of knotted DNA in biological conditions.
通过粗粒度分子动力学模拟,我们探究了模拟为螺旋通道的受限空间对以聚合物纽结表示的手性超结构的手性敏感性。模拟表明,螺旋通道通过外部拉力的作用,对位于线性链上的手性纽结以及嵌入在环形链上的纽结表现出立体敏感性。对于环面纽结,立体选择性效应的幅度更强;在扭曲纽结的情况下,效应较弱,而双向手性纽结则不表现出手性效应。该效应的幅度可以通过迄今为止所研究的螺旋半径、螺距和拉力强度进行调节。该模型旨在模拟和解决实验环境中可能出现的一系列实际情况,例如设计用于检测分子拓扑状态的纳米技术装置、制备具有定制立体选择性特性的新型凝胶,或在生物条件下纽结DNA的扩散。