X-ray crystallography is the main source of atomistic information on the structure of proteins. Normal crystal structures are obtained as a compromise between the X-ray scattering data and a set of empirical restraints that ensure chemically reasonable bond lengths and angles. However, such restraints are not always available or accurate for nonstandard parts of the structure, for example substrates, inhibitors and metal sites. The method of quantum refinement, in which these empirical restraints are replaced by quantum-mechanical (QM) calculations, has previously been suggested for small but interesting parts of the protein. Here, this approach is extended to allow for multiple conformations in the QM region by performing separate QM calcu...
The protonation status of key residues and bound ligands are often important for the function of a p...
The active site of the [FeFe] hydrogenases contains two Fe ions bound to one Cys ligand, three CO mo...
We have calculated redox potentials of the two metal clusters in Mo-nitrogenase with quantum mechani...
We have studied the geometry and electronic structure of the P-cluster in nitrogenase in four oxidat...
We have studied the geometry and electronic structure of the P-cluster in nitrogenase in four oxidat...
We have re-refined the X-ray structure of the heme site in cytochrome c553, supplementing the crysta...
The combination of quantum mechanics and molecular mechanics (QM/MM) is one of the most promising ap...
In standard crystallographic refinement of biomacromolecules, the crystallographic raw data are supp...
A method is developed for the combination of quantum chemical geometry optimizations and crystallogr...
In standard crystallographic refinement of biomacromolecules, the crystallographic raw data are supp...
We have examined the effect of geometry optimisation on energies calculated with the quantum-mechani...
The use of molecular mechanics calculations to supplement experimental data in standard X-ray crysta...
Nitrogenase is the only enzyme that can cleave the triple bond in N2, making nitrogen available to p...
The structure of the nitrogenase MoFe-protein from Azotobacter vinelandii has been refined to 2.0 Å ...
We here suggest and test a new method to obtain stable energies in proteins for charge-neutral react...
The protonation status of key residues and bound ligands are often important for the function of a p...
The active site of the [FeFe] hydrogenases contains two Fe ions bound to one Cys ligand, three CO mo...
We have calculated redox potentials of the two metal clusters in Mo-nitrogenase with quantum mechani...
We have studied the geometry and electronic structure of the P-cluster in nitrogenase in four oxidat...
We have studied the geometry and electronic structure of the P-cluster in nitrogenase in four oxidat...
We have re-refined the X-ray structure of the heme site in cytochrome c553, supplementing the crysta...
The combination of quantum mechanics and molecular mechanics (QM/MM) is one of the most promising ap...
In standard crystallographic refinement of biomacromolecules, the crystallographic raw data are supp...
A method is developed for the combination of quantum chemical geometry optimizations and crystallogr...
In standard crystallographic refinement of biomacromolecules, the crystallographic raw data are supp...
We have examined the effect of geometry optimisation on energies calculated with the quantum-mechani...
The use of molecular mechanics calculations to supplement experimental data in standard X-ray crysta...
Nitrogenase is the only enzyme that can cleave the triple bond in N2, making nitrogen available to p...
The structure of the nitrogenase MoFe-protein from Azotobacter vinelandii has been refined to 2.0 Å ...
We here suggest and test a new method to obtain stable energies in proteins for charge-neutral react...
The protonation status of key residues and bound ligands are often important for the function of a p...
The active site of the [FeFe] hydrogenases contains two Fe ions bound to one Cys ligand, three CO mo...
We have calculated redox potentials of the two metal clusters in Mo-nitrogenase with quantum mechani...