A detailed protocol of molecular dynamics simulations of supercoiled DNA molecules that can be in addition knotted or catenated is described. We also describe how to model ongoing action of DNA gyrase that introduces negative supercoing into DNA molecules. The protocols provide detailed instructions about model parameters, equations of used potentials, simulation, and visualization. Implementation of the model into a frequently used molecular dynamics simulation environment, ESPResSo, is shown step by step
We treat supercoiled DNA within a wormlike model with excluded volume. A modified Monte Carlo approa...
We compute changes in the writhe of a polygonal space curve when one of the vertices is displaced. T...
Computational simulation techniques, targeted molecular dynamics (TMD) and the quantized elastic def...
DNA supercoiling is a widespread phenomenon in biology. Here we introduce a coarse-grained DNA model...
While DNA supercoiling is ubiquitous in vivo, the structure of supercoiled DNA is more challenging t...
AbstractIn this study, we report what we believe to be the first multiscale simulation of the dynami...
DNA supercoiling plays a role in genetic control by imposing torsional stress. This can induce writh...
SIGLEAvailable from British Library Document Supply Centre- DSC:D183001 / BLDSC - British Library Do...
Bacterial genomes are partitioned into kilobases long domains that are topologically independent fro...
International audienceBacterial genomes are partitioned into kilobases long domains that are topolog...
DNA supercoils are generated in genome regulation processes such as transcription and replication an...
We used Monte Carlo simulations to investigate the conformational and thermodynamic properties of DN...
DNA supercoils are generated in genome regulation processes such as transcription and replication an...
We compute changes in the writhe of a polygonal space curve when one of the vertices is displaced. T...
Biological processes manipulating DNA test its physical properties. Atomistic molecular dynamics sim...
We treat supercoiled DNA within a wormlike model with excluded volume. A modified Monte Carlo approa...
We compute changes in the writhe of a polygonal space curve when one of the vertices is displaced. T...
Computational simulation techniques, targeted molecular dynamics (TMD) and the quantized elastic def...
DNA supercoiling is a widespread phenomenon in biology. Here we introduce a coarse-grained DNA model...
While DNA supercoiling is ubiquitous in vivo, the structure of supercoiled DNA is more challenging t...
AbstractIn this study, we report what we believe to be the first multiscale simulation of the dynami...
DNA supercoiling plays a role in genetic control by imposing torsional stress. This can induce writh...
SIGLEAvailable from British Library Document Supply Centre- DSC:D183001 / BLDSC - British Library Do...
Bacterial genomes are partitioned into kilobases long domains that are topologically independent fro...
International audienceBacterial genomes are partitioned into kilobases long domains that are topolog...
DNA supercoils are generated in genome regulation processes such as transcription and replication an...
We used Monte Carlo simulations to investigate the conformational and thermodynamic properties of DN...
DNA supercoils are generated in genome regulation processes such as transcription and replication an...
We compute changes in the writhe of a polygonal space curve when one of the vertices is displaced. T...
Biological processes manipulating DNA test its physical properties. Atomistic molecular dynamics sim...
We treat supercoiled DNA within a wormlike model with excluded volume. A modified Monte Carlo approa...
We compute changes in the writhe of a polygonal space curve when one of the vertices is displaced. T...
Computational simulation techniques, targeted molecular dynamics (TMD) and the quantized elastic def...