Metal ions are both ubiquitous to and crucial in biology. In classical simulations, they are typically described as simple van der Waals spheres, making it difficult to provide reliable force field descriptions for them. An alternative is given by nonbonded dummy models, in which the central metal atom is surrounded by dummy particles that each carry a partial charge. While such dummy models already exist for other metal ions, none is available yet for Cu2+ because of the challenge to reproduce the Jahn-Teller distortion. This challenge is addressed in the current study, where, for the first time, a dummy model including a Jahn-Teller effect is developed for Cu2+. We successfully validate its usefulness by studying metal binding in two biol...
Aggregation of the amyloid-beta (Aβ) peptide into insoluble plaques is a major factor in Alzheimer's...
Cu and Zn have been shown to accumulate in the brains of Alzheimer's disease patients. We have previ...
AbstractAccording to experimental data, binding of the Cu2+ ions destabilizes the native state of β2...
Metal ions are both ubiquitous to and crucial in biology. In classical simulations, they are typical...
Metal ions are both ubiquitous to and crucial in biology. In classical simulations, they are typical...
ABSTRACT: Metal ions are both ubiquitous to and crucial in biology. In classical simulations, they a...
Metal ions are both ubiquitous to and crucial in biology. In classical simulations, they are typical...
We report accelerated molecular dynamics simulations of α-Synuclein and its complex with two Cu(II) ...
Ligand field molecular mechanics simulation has been used to model the interactions of copper(II) a...
The cationic dummy atom approach provides a powerful nonbonded description for a range of alkaline-e...
To be able to perform Molecular Dynamics (MD) simulations of proteins, a model is needed to describe...
The cationic dummy atom approach provides a powerful nonbonded description for a range of alkaline-e...
Considerable effort is being directed at unraveling the molecular mechanisms of Alzheimer's disease ...
Metal ions and intrinsically disordered peptides amyloid-β40 and amyloid-β42 are at the center of Al...
Modeling metalloproteins often requires classical molecular dynamics (MD) simulations in order to ca...
Aggregation of the amyloid-beta (Aβ) peptide into insoluble plaques is a major factor in Alzheimer's...
Cu and Zn have been shown to accumulate in the brains of Alzheimer's disease patients. We have previ...
AbstractAccording to experimental data, binding of the Cu2+ ions destabilizes the native state of β2...
Metal ions are both ubiquitous to and crucial in biology. In classical simulations, they are typical...
Metal ions are both ubiquitous to and crucial in biology. In classical simulations, they are typical...
ABSTRACT: Metal ions are both ubiquitous to and crucial in biology. In classical simulations, they a...
Metal ions are both ubiquitous to and crucial in biology. In classical simulations, they are typical...
We report accelerated molecular dynamics simulations of α-Synuclein and its complex with two Cu(II) ...
Ligand field molecular mechanics simulation has been used to model the interactions of copper(II) a...
The cationic dummy atom approach provides a powerful nonbonded description for a range of alkaline-e...
To be able to perform Molecular Dynamics (MD) simulations of proteins, a model is needed to describe...
The cationic dummy atom approach provides a powerful nonbonded description for a range of alkaline-e...
Considerable effort is being directed at unraveling the molecular mechanisms of Alzheimer's disease ...
Metal ions and intrinsically disordered peptides amyloid-β40 and amyloid-β42 are at the center of Al...
Modeling metalloproteins often requires classical molecular dynamics (MD) simulations in order to ca...
Aggregation of the amyloid-beta (Aβ) peptide into insoluble plaques is a major factor in Alzheimer's...
Cu and Zn have been shown to accumulate in the brains of Alzheimer's disease patients. We have previ...
AbstractAccording to experimental data, binding of the Cu2+ ions destabilizes the native state of β2...