Quantum refinement has repeatedly been shown to be a powerful approach to interpret and improve macromolecular crystal structures, allowing for the discrimination between different interpretations of the structure, regarding the protonation states or the nature of bound ligands, for example. In this method, the empirical restraints, used to supplement the crystallographic raw data in standard crystallographic refinement, are replaced by more accurate quantum mechanical (QM) calculations for a small, but interesting, part of the structure. Previous studies have shown that the results of quantum refinement can be improved if the charge of the QM system is reduced by adding neutralizing groups. However, this significantly increases the computa...
Mathematical and Physical Sciences: 3rd Place (The Ohio State University Denman Undergraduate Resear...
The present review is centered on methodological issues on continuum solvation models, with a persp...
The protonation status of key residues and bound ligands are often important for the function of a p...
The following article has been accepted by The Journal of Chemical Physics. After it is published, i...
The following article has been accepted by The Journal of Chemical Physics. After it is published, i...
In standard crystallographic refinement of biomacromolecules, the crystallographic raw data are supp...
Continuum models to handle solvent and electrolyte effects in an effective way have a long tradition...
Quantum chemical calculations on quantum computers have been focused mostly on simulating molecules ...
In standard crystallographic refinement of biomacromolecules, the crystallographic raw data are supp...
We examine the state of the art of the solvation procedure called the polarizable continuum model (P...
We present an implicit solvation approach where the interface between the quantum-mechanical solute ...
Accurately refining biomacromolecules using a quantum-chemical method is challenging because the cos...
We present a new continuum solvation model based on the quantum mechanical charge density of a solut...
Continuum models to handle solvent and electrolyte effects in an effective way have a long tradition...
We present a new continuum solvation model based on the quantum mechanical charge density of a solut...
Mathematical and Physical Sciences: 3rd Place (The Ohio State University Denman Undergraduate Resear...
The present review is centered on methodological issues on continuum solvation models, with a persp...
The protonation status of key residues and bound ligands are often important for the function of a p...
The following article has been accepted by The Journal of Chemical Physics. After it is published, i...
The following article has been accepted by The Journal of Chemical Physics. After it is published, i...
In standard crystallographic refinement of biomacromolecules, the crystallographic raw data are supp...
Continuum models to handle solvent and electrolyte effects in an effective way have a long tradition...
Quantum chemical calculations on quantum computers have been focused mostly on simulating molecules ...
In standard crystallographic refinement of biomacromolecules, the crystallographic raw data are supp...
We examine the state of the art of the solvation procedure called the polarizable continuum model (P...
We present an implicit solvation approach where the interface between the quantum-mechanical solute ...
Accurately refining biomacromolecules using a quantum-chemical method is challenging because the cos...
We present a new continuum solvation model based on the quantum mechanical charge density of a solut...
Continuum models to handle solvent and electrolyte effects in an effective way have a long tradition...
We present a new continuum solvation model based on the quantum mechanical charge density of a solut...
Mathematical and Physical Sciences: 3rd Place (The Ohio State University Denman Undergraduate Resear...
The present review is centered on methodological issues on continuum solvation models, with a persp...
The protonation status of key residues and bound ligands are often important for the function of a p...