Many excellent methods exist that incorporate cryo-electron microscopy (cryoEM) data to constrain computational protein structure prediction and refinement. Previously, it was shown that iteration of two such orthogonal sampling and scoring methods – Rosetta and molecular dynamics (MD) simulations – facilitated exploration of conformational space in principle. Here, we go beyond a proof-of-concept study and address significant remaining limitations of the iterative MD–Rosetta protein structure refinement protocol. Specifically, all parts of the iterative refinement protocol are now guided by medium-resolution cryoEM density maps, and previous knowledge about the native structure of the protein is no longer necessary. Models are identified s...
The use of classical molecular dynamics simulations, performed in explicit water, for the refinement...
The use of classical molecular dynamics simulations, performed in explicit water, for the refinement...
The use of classical molecular dynamics simulations, performed in explicit water, for the refinement...
Many excellent methods exist that incorporate cryo-electron microscopy (cryoEM) data to constrain co...
Rosetta is one of the prime tools for high resolution protein structure refinement. While its scorin...
Rosetta is one of the prime tools for high resolution protein structure refinement. While its scorin...
Rosetta is one of the prime tools for high resolution protein structure refinement. While its scorin...
ABSTRACT: Rosetta is one of the prime tools for high resolution protein structure refinement. While ...
ABSTRACT: Rosetta is one of the prime tools for high resolution protein structure refinement. While ...
Knowing atomistic details of proteins is essential not only for the understanding of protein functio...
Knowing atomistic details of proteins is essential not only for the understanding of protein functio...
ABSTRACT Achieving atomic level accuracy in de novo structure prediction presents a formidable chall...
For many macromolecular assemblies, both a cryoEM map and atomic structures of its component protein...
The use of classical molecular dynamics simulations, performed in explicit water, for the refinement...
The use of classical molecular dynamics simulations, performed in explicit water, for the refinement...
The use of classical molecular dynamics simulations, performed in explicit water, for the refinement...
The use of classical molecular dynamics simulations, performed in explicit water, for the refinement...
The use of classical molecular dynamics simulations, performed in explicit water, for the refinement...
Many excellent methods exist that incorporate cryo-electron microscopy (cryoEM) data to constrain co...
Rosetta is one of the prime tools for high resolution protein structure refinement. While its scorin...
Rosetta is one of the prime tools for high resolution protein structure refinement. While its scorin...
Rosetta is one of the prime tools for high resolution protein structure refinement. While its scorin...
ABSTRACT: Rosetta is one of the prime tools for high resolution protein structure refinement. While ...
ABSTRACT: Rosetta is one of the prime tools for high resolution protein structure refinement. While ...
Knowing atomistic details of proteins is essential not only for the understanding of protein functio...
Knowing atomistic details of proteins is essential not only for the understanding of protein functio...
ABSTRACT Achieving atomic level accuracy in de novo structure prediction presents a formidable chall...
For many macromolecular assemblies, both a cryoEM map and atomic structures of its component protein...
The use of classical molecular dynamics simulations, performed in explicit water, for the refinement...
The use of classical molecular dynamics simulations, performed in explicit water, for the refinement...
The use of classical molecular dynamics simulations, performed in explicit water, for the refinement...
The use of classical molecular dynamics simulations, performed in explicit water, for the refinement...
The use of classical molecular dynamics simulations, performed in explicit water, for the refinement...