The self-knotting dynamics of DNA strands confined in nanochannels is studied with Brownian simulations. The model DNA chains are several microns long and placed inside channels that are 50-300 nm wide. This width range covers the transition between different metric scaling regimes and the concomitant drop of DNA knotting probability for channel widths below ∼75 nm. We find that knots typically originate from deep looping and backfoldings of the chain ends. Upon lowering the channel width, backfoldings become shallower and rarer and the lifetime of knots decreases while that of unknots increases. This lifetimes interplay causes the dramatic reduction of knots incidence for increasing confinement. The results can aid the design of nanochanne...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2015.Cata...
Knots in long DNA molecules are prevalent in biological systems and serve as a model system for inve...
Advanced Monte Carlo simulations are used to study the effect of nanoslit confinement on metric and ...
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...
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...
Langevin dynamics simulations are used to characterize the typical mechanisms governing the spontane...
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...
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...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2015.Cata...
Knots in long DNA molecules are prevalent in biological systems and serve as a model system for inve...
Advanced Monte Carlo simulations are used to study the effect of nanoslit confinement on metric and ...
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...
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...
Langevin dynamics simulations are used to characterize the typical mechanisms governing the spontane...
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...
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...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2015.Cata...
Knots in long DNA molecules are prevalent in biological systems and serve as a model system for inve...
Advanced Monte Carlo simulations are used to study the effect of nanoslit confinement on metric and ...