arXiv · 2412.04175
Conformations, Dynamics, and Looping Kinetics of Partially Active Polymers
Abstract
We investigate the conformational and dynamical properties of a partially active Rouse chain, where activity is localized within a specific segment, positioned at various locations along the chain and spanning any given length. Through analytical methods and simulations, we reveal how the location and size of the active segment influence polymer swelling patterns. Likewise, we observe that the mean squared distance between two points along the polymer, as well as the mean squared displacement of a tagged point, are notably affected by the local activity. In addition, the reconfiguration and looping dynamics show anomalous scaling behaviors, particularly in intermediate chain lengths, capturing the interplay between persistence of active motion and polymer relaxation dynamics. Our model, relevant to spatially varying activity observed in active biopolymeric systems, provides a basis for exploring more realistic models of chromatin behavior, especially those incorporating heterogeneous activity.
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Koushik Goswami, Norman Hsia, Cheng-Hung Chang, Hong-Yan Shih. 2024-12-05. Conformations, Dynamics, and Looping Kinetics of Partially Active Polymers. https://arxiv.org/abs/2412.04175
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