Recent single-molecule experiments indicate that a double-stranded DNA increases in length if put under tension greater than 10 piconewtons: beyond this point its conformation can no longer be described using an inextensible wormlike-chain model. The simplest extensible wormlike chain with twist rigidity is considered as a model for DNA under tension, and it is found that the fact that DNA is chiral demands that stretching be coupled to twisting at linear order in elastic theory; stretching a DNA is thus a way to perturb its twist degrees of freedom. Nonlinearities can stabilize an "overstretched” DNA state in the model, allowing quantitative contact with experiment. Finally, it is argued that if its twist is initially highly perturbed, th...
The bending stiffness of double-stranded DNA (dsDNA) at high curvatures is fundamental to its bio-lo...
We study the elastic behaviour of a supercoiled DNA molecule. The simplest model is that of a rod-li...
To understand DNA elasticity at high forces (F>30 pN), its helical nature must be taken into account...
In cells, DNA is constantly twisted, bent and stretched by numerous proteins mediating genome transa...
AbstractThe symmetries of the DNA double helix require a new term in its linear response to stress: ...
Single-molecule experiments on single- and double-stranded DNA have sparked a renewed interest in th...
DNA stretching experiments are usually interpreted using the wormlike chain model; the parameter A a...
The symmetries of the DNA double helix require a new term in its linear response to stress: the coup...
The symmetries of the DNA double helix require a new term in its linear response to stress: the coup...
ABSTRACT: Many proteins interact with and deform double-stranded DNA in cells. Single-molecule exper...
The twisting deformation of mechanically stretched DNA molecules is studied by a coarse grained Hami...
Helical molecules change their twist number under the effect of a mechanical load. We study the twis...
We investigate a chain consisting of two coupled worm-like chains withconstant distance between the ...
DNA is a double stranded helical molecule with an intrinsic right handed twist. Its structure can be...
We present an elastic model of B-form DNA as a stack of thin, rigid plates or base pairs that are no...
The bending stiffness of double-stranded DNA (dsDNA) at high curvatures is fundamental to its bio-lo...
We study the elastic behaviour of a supercoiled DNA molecule. The simplest model is that of a rod-li...
To understand DNA elasticity at high forces (F>30 pN), its helical nature must be taken into account...
In cells, DNA is constantly twisted, bent and stretched by numerous proteins mediating genome transa...
AbstractThe symmetries of the DNA double helix require a new term in its linear response to stress: ...
Single-molecule experiments on single- and double-stranded DNA have sparked a renewed interest in th...
DNA stretching experiments are usually interpreted using the wormlike chain model; the parameter A a...
The symmetries of the DNA double helix require a new term in its linear response to stress: the coup...
The symmetries of the DNA double helix require a new term in its linear response to stress: the coup...
ABSTRACT: Many proteins interact with and deform double-stranded DNA in cells. Single-molecule exper...
The twisting deformation of mechanically stretched DNA molecules is studied by a coarse grained Hami...
Helical molecules change their twist number under the effect of a mechanical load. We study the twis...
We investigate a chain consisting of two coupled worm-like chains withconstant distance between the ...
DNA is a double stranded helical molecule with an intrinsic right handed twist. Its structure can be...
We present an elastic model of B-form DNA as a stack of thin, rigid plates or base pairs that are no...
The bending stiffness of double-stranded DNA (dsDNA) at high curvatures is fundamental to its bio-lo...
We study the elastic behaviour of a supercoiled DNA molecule. The simplest model is that of a rod-li...
To understand DNA elasticity at high forces (F>30 pN), its helical nature must be taken into account...