The mechanics of DNA super-coiling is a subject of crucial importance to uncover the mechanism and kinetics of several enzymes. It is therefore being investigated using several biochemical and biophysical methods including single molecule experimental techniques. An interesting problem within this realm is that of torsional buckling and plectoneme formation in DNA as it is simultaneously put under tensile and torsional stress. Analytical solutions to this problem are difficult to find since it involves non-linear kinematics and thermal fluctuations. In this paper we use ideas from the Kirchhoff theory of filaments to find semi-analytical solutions for the average shape of the fluctuating DNA under the assumption that there is no self-contac...
AbstractWe present a self-contained theory for the mechanical response of DNA in single molecule exp...
We use the wormlike chain model to study supercoiling of DNA under tension and torque. The model rep...
We use the wormlike chain model to study supercoiling of DNA under tension and torque. The model rep...
The mechanics of DNA supercoiling is a subject of crucial importance to uncover the mechanism and ki...
The mechanics of DNA supercoiling is a subject of crucial importance to uncover the mechanism and ki...
Abstract The mechanics of DNA at length scales of few hundred nanometers is described by a fluctuati...
aitself in a helical way and forms plectonemes, as sketched in Fig. 1. An important feature of the e...
We study the elastic behaviour of a supercoiled DNA molecule. The simplest model is that of a rod-li...
AbstractTwisting a DNA molecule held under constant tension is accompanied by a transition from a li...
We use basic statistical mechanics and computer simulations with coarse-grained models to investigat...
AbstractWe present a self-contained theory for the mechanical response of DNA in single molecule exp...
DNA is a double stranded helical molecule with an intrinsic right handed twist. Its structure can be...
DNA is a double stranded helical molecule with an intrinsic right handed twist. Its structure can be...
DNA is a double stranded helical molecule with an intrinsic right handed twist. Its structure can be...
Abstract. The theory of the mechanical response of single DNA molecules un-der stretching and twisti...
AbstractWe present a self-contained theory for the mechanical response of DNA in single molecule exp...
We use the wormlike chain model to study supercoiling of DNA under tension and torque. The model rep...
We use the wormlike chain model to study supercoiling of DNA under tension and torque. The model rep...
The mechanics of DNA supercoiling is a subject of crucial importance to uncover the mechanism and ki...
The mechanics of DNA supercoiling is a subject of crucial importance to uncover the mechanism and ki...
Abstract The mechanics of DNA at length scales of few hundred nanometers is described by a fluctuati...
aitself in a helical way and forms plectonemes, as sketched in Fig. 1. An important feature of the e...
We study the elastic behaviour of a supercoiled DNA molecule. The simplest model is that of a rod-li...
AbstractTwisting a DNA molecule held under constant tension is accompanied by a transition from a li...
We use basic statistical mechanics and computer simulations with coarse-grained models to investigat...
AbstractWe present a self-contained theory for the mechanical response of DNA in single molecule exp...
DNA is a double stranded helical molecule with an intrinsic right handed twist. Its structure can be...
DNA is a double stranded helical molecule with an intrinsic right handed twist. Its structure can be...
DNA is a double stranded helical molecule with an intrinsic right handed twist. Its structure can be...
Abstract. The theory of the mechanical response of single DNA molecules un-der stretching and twisti...
AbstractWe present a self-contained theory for the mechanical response of DNA in single molecule exp...
We use the wormlike chain model to study supercoiling of DNA under tension and torque. The model rep...
We use the wormlike chain model to study supercoiling of DNA under tension and torque. The model rep...