We performed molecular dynamics simulations of DNA polymer chains confined in helical nano-channels under compression in order to explore the potential of knot-factories with helical geometry to produce knots with a preferred handedness. In our simulations, we explore mutual effect of the confinement strength and compressive forces in a range covering weak, intermediate and strong confinement together with weak and strong compressive forces. The results find that while the common metrics of polymer chain in cylindrical and helical channels are very similar, the DNA in helical channels exhibits greatly different topology in terms of chain knottedness, writhe and handedness of knots. The results show that knots with a preferred chirality in t...
The self-knotting dynamics of DNA strands confined in nanochannels is studied with Brownian simulati...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2015.Cata...
The amount and type of self-entanglement of DNA filaments is significantly affected by spatial confi...
By means of coarse-grained molecular dynamics simulations, we explore chiral sensitivity of confinin...
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...
Advanced Monte Carlo simulations are used to study the effect of nanoslit confinement on metric and ...
Advanced Monte Carlo simulations are used to study the effect of nanoslit confinement on metric and ...
The packing of DNA inside bacteriophages arguably yields the simplest example of genome organisation...
The packing of DNA inside bacteriophages arguably yields the simplest example of genome organisation...
The packing of DNA inside bacteriophages arguably yields the simplest example of genome organizat...
AbstractThe packing of DNA inside bacteriophages arguably yields the simplest example of genome orga...
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...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2015.Cata...
The amount and type of self-entanglement of DNA filaments is significantly affected by spatial confi...
By means of coarse-grained molecular dynamics simulations, we explore chiral sensitivity of confinin...
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...
Advanced Monte Carlo simulations are used to study the effect of nanoslit confinement on metric and ...
Advanced Monte Carlo simulations are used to study the effect of nanoslit confinement on metric and ...
The packing of DNA inside bacteriophages arguably yields the simplest example of genome organisation...
The packing of DNA inside bacteriophages arguably yields the simplest example of genome organisation...
The packing of DNA inside bacteriophages arguably yields the simplest example of genome organizat...
AbstractThe packing of DNA inside bacteriophages arguably yields the simplest example of genome orga...
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...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2015.Cata...
The amount and type of self-entanglement of DNA filaments is significantly affected by spatial confi...