Langevin dynamics simulations are used to characterize the typical mechanisms governing the spontaneous tying, untying and the dynamical evolution of knots in coarse-grained models of DNA chains confined in nanochannels. In particular we focus on how these mechanisms depend on the chain contour length, L-c, at a fixed channel width D = 56 nm corresponding to the onset of the Odijk scaling regime where chain backfoldings and hence knots are disfavoured but not suppressed altogether. We find that the lifetime of knots grows significantly with L-c, while that of unknots varies to a lesser extent. The underlying kinetic mechanisms are clarified by analysing the evolution of the knot position along the chain. At the considered confinement, in fa...
The amount and type of self-entanglement of DNA filaments is significantly affected by spatial confi...
Knots in long DNA molecules are prevalent in biological systems and serve as a model system for inve...
We present Brownian dynamics simulations of initially knotted double-stranded DNA molecules untying ...
Langevin dynamics simulations are used to characterize the typical mechanisms governing the spontane...
Langevin dynamics simulations are used to characterize the typical mechanisms governing the spontane...
Langevin dynamics simulations are used to characterize the typical mechanisms governing the spontane...
The self-knotting dynamics of DNA strands confined in nanochannels is studied with Brownian simulati...
The self-knotting dynamics of DNA strands confined in nanochannels is studied with Brownian simulati...
The self-knotting dynamics of DNA strands confined in nanochannels is studied with Brownian simulati...
We report on a numerical study of the equilibrium metric scaling features and knotting properties of...
We report on a numerical study of the equilibrium metric scaling features and knotting properties of...
We report on a numerical study of the equilibrium metric scaling features and knotting properties of...
We perform single-molecule experiments and simulations to study the swelling of complex knots in lin...
The amount and type of self-entanglement of DNA filaments is significantly affected by spatial confi...
The amount and type of self-entanglement of DNA filaments is significantly affected by spatial confi...
The amount and type of self-entanglement of DNA filaments is significantly affected by spatial confi...
Knots in long DNA molecules are prevalent in biological systems and serve as a model system for inve...
We present Brownian dynamics simulations of initially knotted double-stranded DNA molecules untying ...
Langevin dynamics simulations are used to characterize the typical mechanisms governing the spontane...
Langevin dynamics simulations are used to characterize the typical mechanisms governing the spontane...
Langevin dynamics simulations are used to characterize the typical mechanisms governing the spontane...
The self-knotting dynamics of DNA strands confined in nanochannels is studied with Brownian simulati...
The self-knotting dynamics of DNA strands confined in nanochannels is studied with Brownian simulati...
The self-knotting dynamics of DNA strands confined in nanochannels is studied with Brownian simulati...
We report on a numerical study of the equilibrium metric scaling features and knotting properties of...
We report on a numerical study of the equilibrium metric scaling features and knotting properties of...
We report on a numerical study of the equilibrium metric scaling features and knotting properties of...
We perform single-molecule experiments and simulations to study the swelling of complex knots in lin...
The amount and type of self-entanglement of DNA filaments is significantly affected by spatial confi...
The amount and type of self-entanglement of DNA filaments is significantly affected by spatial confi...
The amount and type of self-entanglement of DNA filaments is significantly affected by spatial confi...
Knots in long DNA molecules are prevalent in biological systems and serve as a model system for inve...
We present Brownian dynamics simulations of initially knotted double-stranded DNA molecules untying ...