In the last decade, methods to study single DNA molecules under tensile load have been developed. These experiments measure the force required to stretch and melt the double helix and provide insights into the structural stability of DNA. However, it is not easy to directly relate the shape of the force curve to the structural changes that occur in the double helix under tensile load. Here, state-of-the-art computer simulations of short DNA sequences are preformed to provide an atomistic description of the stretching of the DNA double helix. These calculations show that for extensions larger that 25 % the DNA under-goes a structural transformation and a few base pairs are lost from both the terminal and central part of the helix. This local...
ABSTRACT Metropolis Monte Carlo simulation was used to study the elasticity of torsionally stressed ...
Active biological processes like transcription, replication, recombination, DNA repair, and DNA pack...
The mechanical characteristics of the long-chain double-stranded DNA (dsDNA) molecule under the axia...
In the last decade, methods to study single DNA molecules under tensile load have been developed. Th...
AbstractUsing a modified atomic force microscope (AFM), individual double-stranded (ds) DNA molecule...
The mechanics of DNA structural fluctuations at room temperature is generally modelled with a simple...
In cells, DNA is constantly twisted, bent and stretched by numerous proteins mediating genome transa...
ABSTRACT Using a modified atomic force microscope (AFM), individual double-stranded (ds) DNA molecul...
Structural deformation of DNA has a central role in many biological processes. It occurs, for exampl...
Biological processes manipulating DNA test its physical properties. Atomistic molecular dynamics sim...
AbstractWe combined atomistic molecular-dynamics simulations with quantum-mechanical calculations to...
[[abstract]]A novel finite element model with equivalent meso-mechanics theory is proposed herein to...
International audienceActive biological processes like transcription, replication, recombination, DN...
The twisting deformation of mechanically stretched DNA molecules is studied by a coarse grained Hami...
Abstract: We have used internal coordinate molecular mechanics calculations to study how the DNA dou...
ABSTRACT Metropolis Monte Carlo simulation was used to study the elasticity of torsionally stressed ...
Active biological processes like transcription, replication, recombination, DNA repair, and DNA pack...
The mechanical characteristics of the long-chain double-stranded DNA (dsDNA) molecule under the axia...
In the last decade, methods to study single DNA molecules under tensile load have been developed. Th...
AbstractUsing a modified atomic force microscope (AFM), individual double-stranded (ds) DNA molecule...
The mechanics of DNA structural fluctuations at room temperature is generally modelled with a simple...
In cells, DNA is constantly twisted, bent and stretched by numerous proteins mediating genome transa...
ABSTRACT Using a modified atomic force microscope (AFM), individual double-stranded (ds) DNA molecul...
Structural deformation of DNA has a central role in many biological processes. It occurs, for exampl...
Biological processes manipulating DNA test its physical properties. Atomistic molecular dynamics sim...
AbstractWe combined atomistic molecular-dynamics simulations with quantum-mechanical calculations to...
[[abstract]]A novel finite element model with equivalent meso-mechanics theory is proposed herein to...
International audienceActive biological processes like transcription, replication, recombination, DN...
The twisting deformation of mechanically stretched DNA molecules is studied by a coarse grained Hami...
Abstract: We have used internal coordinate molecular mechanics calculations to study how the DNA dou...
ABSTRACT Metropolis Monte Carlo simulation was used to study the elasticity of torsionally stressed ...
Active biological processes like transcription, replication, recombination, DNA repair, and DNA pack...
The mechanical characteristics of the long-chain double-stranded DNA (dsDNA) molecule under the axia...