Conformational statistics of non-equilibrium polymer loops in Rouse model with active loop extrusion

Motivated by the recent experimental observations of the DNA loop extrusion by protein motors, in this paper, we investigate the statistical properties of the growing polymer loops within the ideal chain model. The loop conformation is characterized statistically by the mean gyration radius and the...

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Veröffentlicht in:The Journal of chemical physics 2021-04, Vol.154 (16), p.164106-164106
Hauptverfasser: Starkov, Dmitry, Parfenyev, Vladimir, Belan, Sergey
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creator Starkov, Dmitry
Parfenyev, Vladimir
Belan, Sergey
description Motivated by the recent experimental observations of the DNA loop extrusion by protein motors, in this paper, we investigate the statistical properties of the growing polymer loops within the ideal chain model. The loop conformation is characterized statistically by the mean gyration radius and the pairwise contact probabilities. It turns out that a single dimensionless parameter, which is given by the ratio of the loop relaxation time over the time elapsed since the start of extrusion, controls the crossover between near-equilibrium and highly non-equilibrium asymptotics in the statistics of the extruded loop, regardless of the specific time dependence of the extrusion velocity. In addition, we show that two-sided and one-sided loop extruding motors produce the loops with almost identical properties. Our predictions are based on two rigorous semi-analytical methods accompanied by asymptotic analysis of slow and fast extrusion limits.
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source AIP Journals Complete; Alma/SFX Local Collection
subjects Asymptotic methods
Asymptotic properties
Crossovers
Equilibrium
Extrusion rate
Molecular conformation
Motors
Physics
Polymers
Relaxation time
Time dependence
title Conformational statistics of non-equilibrium polymer loops in Rouse model with active loop extrusion
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