AbstractDNA unzipping, the separation of its double helix into single strands, is crucial in modulating a host of genetic processes. Although the large-scale separation of double-stranded DNA has been studied with a variety of theoretical and experimental techniques, the minute details of the very first steps of unzipping are still unclear. Here, we use atomistic molecular-dynamics simulations, coarse-grained simulations, and a statistical-mechanical model to study the initiation of DNA unzipping by an external force. Calculation of the potential of mean force profiles for the initial separation of the first few terminal basepairs in a DNA oligomer revealed that forces ranging between 130 and 230 pN are needed to disrupt the first basepair,...
AbstractStrand separation of double-stranded DNA is a crucial step for essential cellular processes ...
AbstractUnder constant applied force, the separation of double-stranded DNA into two single strands ...
We study the unzipping of double stranded DNA by applying a pulling force at a fraction s (0≤s≤1) fr...
DNA unzipping, the separation of its double helix into single strands, is crucial in modulating a ho...
AbstractDNA unzipping, the separation of its double helix into single strands, is crucial in modulat...
We theoretically analyze the force signal expected during unzipping through a single double-stranded...
The unzipping transition under the influence of external force of a dsDNA molecule has been studied ...
When pulled along the axis, double-strand DNA undergoes a large conformational change and elongates ...
We unzip DNA molecules using optical tweezers and determine the sizes of the cooperatively unzipping...
A simple model of DNA based on two interacting polymers has been used to study the unzipping of a do...
We present a semimicroscopic model of dsDNA by incorporating the directional nature of hydrogen bond...
We present a dynamical model of DNA mechanical unzipping under the action of a force. The model incl...
AbstractDNA is partly denatured in vitro by applying a force that mechanically separates the two str...
ABSTRACT Under constant applied force, the separation of double-stranded DNA into two single strands...
Based on the result of an unzipping phase transition by a force in a model of DNA, we hypothesize th...
AbstractStrand separation of double-stranded DNA is a crucial step for essential cellular processes ...
AbstractUnder constant applied force, the separation of double-stranded DNA into two single strands ...
We study the unzipping of double stranded DNA by applying a pulling force at a fraction s (0≤s≤1) fr...
DNA unzipping, the separation of its double helix into single strands, is crucial in modulating a ho...
AbstractDNA unzipping, the separation of its double helix into single strands, is crucial in modulat...
We theoretically analyze the force signal expected during unzipping through a single double-stranded...
The unzipping transition under the influence of external force of a dsDNA molecule has been studied ...
When pulled along the axis, double-strand DNA undergoes a large conformational change and elongates ...
We unzip DNA molecules using optical tweezers and determine the sizes of the cooperatively unzipping...
A simple model of DNA based on two interacting polymers has been used to study the unzipping of a do...
We present a semimicroscopic model of dsDNA by incorporating the directional nature of hydrogen bond...
We present a dynamical model of DNA mechanical unzipping under the action of a force. The model incl...
AbstractDNA is partly denatured in vitro by applying a force that mechanically separates the two str...
ABSTRACT Under constant applied force, the separation of double-stranded DNA into two single strands...
Based on the result of an unzipping phase transition by a force in a model of DNA, we hypothesize th...
AbstractStrand separation of double-stranded DNA is a crucial step for essential cellular processes ...
AbstractUnder constant applied force, the separation of double-stranded DNA into two single strands ...
We study the unzipping of double stranded DNA by applying a pulling force at a fraction s (0≤s≤1) fr...