Sequence-dependent DNA conformation and flexibility play a fundamental role in the specificity of DNA-protein interactions. Here we quantify the DNA crookedness: a sequence-dependent deformation of DNA that consists of periodic bends of the base pair centers chain. Using extensive 100 μs-long, all-atom molecular dynamics simulations, we found that DNA crookedness and its associated flexibility are bijective, which unveils a one-to-one relation between DNA structure and dynamics. This allowed us to build a predictive model to compute the stretch moduli of different DNA sequences from solely their structure. Sequences with very little crookedness show extremely high stretching stiffness and have been previously shown to form unstable nucleos...
<div><p>Large-scale DNA deformation is ubiquitous in transcriptional regulation in prokaryotes and e...
Large-scale DNA deformation is ubiquitous in transcriptional regulation in prokaryotes and eukaryote...
We report a study of DNA deformations using a coarse-grained mechanical model and quantitatively int...
Data presented in the annual conference DPG conference 2019 (https://regensburg19.dpg-tagungen.de/)....
DNA dynamics can only be understood by taking into account its complex mechanical behavior at differ...
Sequence features have long been known to influence the local mechanical properties and shapes of DN...
Although mechanical properties of DNA are well characterized at the kilobase-pair range, a number of...
In cells, DNA is constantly twisted, bent and stretched by numerous proteins mediating genome transa...
Biological processes manipulating DNA test its physical properties. Atomistic molecular dynamics sim...
The organization of DNA is essential to genetic protection and access and is highly dependent on fac...
Recent single-molecule measurements have revealed the DNA allostery in protein/DNA binding. MD simul...
The double-helical structure of DNA results from canonical base pairing and stacking interactions. H...
As the chief informational molecule of life, DNA is subject to extensive physical manipulations. The...
AbstractWe combined atomistic molecular-dynamics simulations with quantum-mechanical calculations to...
We report a study of DNA deformations using a coarse-grained mechanical model and quantitatively int...
<div><p>Large-scale DNA deformation is ubiquitous in transcriptional regulation in prokaryotes and e...
Large-scale DNA deformation is ubiquitous in transcriptional regulation in prokaryotes and eukaryote...
We report a study of DNA deformations using a coarse-grained mechanical model and quantitatively int...
Data presented in the annual conference DPG conference 2019 (https://regensburg19.dpg-tagungen.de/)....
DNA dynamics can only be understood by taking into account its complex mechanical behavior at differ...
Sequence features have long been known to influence the local mechanical properties and shapes of DN...
Although mechanical properties of DNA are well characterized at the kilobase-pair range, a number of...
In cells, DNA is constantly twisted, bent and stretched by numerous proteins mediating genome transa...
Biological processes manipulating DNA test its physical properties. Atomistic molecular dynamics sim...
The organization of DNA is essential to genetic protection and access and is highly dependent on fac...
Recent single-molecule measurements have revealed the DNA allostery in protein/DNA binding. MD simul...
The double-helical structure of DNA results from canonical base pairing and stacking interactions. H...
As the chief informational molecule of life, DNA is subject to extensive physical manipulations. The...
AbstractWe combined atomistic molecular-dynamics simulations with quantum-mechanical calculations to...
We report a study of DNA deformations using a coarse-grained mechanical model and quantitatively int...
<div><p>Large-scale DNA deformation is ubiquitous in transcriptional regulation in prokaryotes and e...
Large-scale DNA deformation is ubiquitous in transcriptional regulation in prokaryotes and eukaryote...
We report a study of DNA deformations using a coarse-grained mechanical model and quantitatively int...