Dynamics of Active Rouse Chains
arXiv:1608.05914 · doi:10.1039/C6SM02722A
Abstract
We consider how active forces modeled as non-thermal random noise affect the average dynamical properties of a Rouse polymer. As the power spectrum of the noise is not known we keep the analytical treatment as generic as possible and then present results for a few examples of active noise. We discuss the connection between our results and recent experimental studies of dynamics of labeled DNA telomeres in living cells, and propose new chromatin tracking experiments that will allow one to determine the statistical properties of the active forces associated with chromatin remodeling processes.
References in corpus (1)
Cited by in corpus (35)
- Broken detailed balance and non-equilibrium dynamics in living systems
- The physics of active polymers and filaments
- Globule-like conformation and enhanced diffusion of active polymers
- Structure and dynamics of a self-propelled semiflexible filament
- Enhanced diffusion, swelling and slow reconfiguration of a single chain in non-Gaussian active bath
- Active Colloidal Molecules
- Effects of active fluctuations on energetics of a colloidal particle: superdiffusion, dissipation and entropy production
- Entropy production and work fluctuation relations for a single particle in active bath
- Conformation and dynamics of a self-avoiding active flexible polymer
- Active Brownian filaments with hydrodynamic interactions: conformations and dynamics
- Elasticity-based polymer sorting in active fluids: A Brownian dynamics study
- Phase separation and nucleation in mixtures of particles with different temperatures
- Position distribution in a generalised run and tumble process
- Dynamic nuclear structure emerges from chromatin crosslinks and motors
- Non-equilibrium scaling behaviour in driven soft biological assemblies
- Anomalous diffusion for active Brownian particles cross-linked to a networked polymer: Langevin dynamics simulation and theory
- Active dynamics and spatially coherent motion in chromosomes subject to enzymatic force dipoles
- Time-dependent properties of interacting active matter: dynamical behavior of one-dimensional systems of self-propelled particles
- Reconfiguration, swelling and tagged monomer dynamics of a single polymer chain in Gaussian and non-Gaussian active baths
- Statistical properties of a tangentially driven active filament
- Migration of Active Rings in Porous Media
- Active Dynamics of Linear Chains and Rings in Porous Media
- Non-Gaussian anomalous dynamics in systems of interacting run-and-tumble particles
- Kinetic signature of cooperativity in the irreversible collapse of a polymer
- Maximal fluctuations of confined actomyosin gels: dynamics of the cell nucleus
- A Polymer Chain with Dipolar Active Forces in Connection to Spatial Organization of Chromatin
- Three-body problem for Langevin dynamics with different temperatures
- Delayed excitations induce polymer looping and coherent motion
- Scaling behavior of non-equilibrium measures in internally driven elastic assemblies
- The effect of loops on the mean square displacement of Rouse-model chromatin
- Characteristic features of self-avoiding active Brownian polymers under linear shear flow
- Intermittent transport of bacterial chromosomal loci
- Conformational statistics of non-equilibrium polymer loops in Rouse model with active loop extrusion
- Diffusion of an Active Particle Bound to a Generalized Elastic Model: Fractional Langevin Equation
- Entropy production in active Rouse polymers