Molecular dynamics (MD) simulations are a powerful approach to studying the structure and dynamics of proteins related to health and disease. Advances in the MD field allow modeling proteins with high accuracy. However, modeling metal ions and their interactions with proteins is still challenging. NPL4 is a zinc-binding protein and works as a cofactor for p97 to regulate protein homeostasis. NPL4 is of biomedical importance and has been proposed as the target of disulfiram, a drug recently repurposed for cancer treatment. Experimental studies proposed that the disulfiram metabolites, bis-(diethyldithiocarbamate)‑copper and cupric ions, induce NPL4 misfolding and aggregation. However, the molecular details of their interactions with NPL4 and...
Divalent metal cations are essential for many biological processes; however, accurately modeling div...
Two models, a purely nonbonded model and a cationic dummy atom approach, were examined for the model...
We have developed new force field and parameters for copper(I) and mercury(II) to be used in molecul...
To be able to perform Molecular Dynamics (MD) simulations of proteins, a model is needed to describe...
Here we report molecular dynamics (MD) and free energy perturbation (FEP) simulations applied to hyd...
Computational approaches for understanding and aiding in molecular biology has increased in signific...
International audienceIn zinc proteins, the Zn2+ cation frequently binds with a tetrahedral coordina...
<p>About one-third of the existing proteins require metal ions as cofactors for their catalytic acti...
ABSTRACT: As the second most abundant cation in the human body, zinc is vital for the structures and...
The binding of zinc (Zn) ions to proteins is important for many cellular events. The theoretical and...
[[abstract]]Nearly half of all proteins contain metal ions, which perform a wide variety of specific...
The HIV-1 nucleocapsid 7 (NCp7) plays crucial roles in multiple stages of HIV-1 life cycle, and its ...
Available estimates indicate that 30–40 % of all proteins need at least one metal ion to perform the...
International audienceWe have developed new force field and parameters for copper(I) and mercury(II)...
Molecular dynamics (MD) simulation is a fundamental approach to allow researchers to study the molec...
Divalent metal cations are essential for many biological processes; however, accurately modeling div...
Two models, a purely nonbonded model and a cationic dummy atom approach, were examined for the model...
We have developed new force field and parameters for copper(I) and mercury(II) to be used in molecul...
To be able to perform Molecular Dynamics (MD) simulations of proteins, a model is needed to describe...
Here we report molecular dynamics (MD) and free energy perturbation (FEP) simulations applied to hyd...
Computational approaches for understanding and aiding in molecular biology has increased in signific...
International audienceIn zinc proteins, the Zn2+ cation frequently binds with a tetrahedral coordina...
<p>About one-third of the existing proteins require metal ions as cofactors for their catalytic acti...
ABSTRACT: As the second most abundant cation in the human body, zinc is vital for the structures and...
The binding of zinc (Zn) ions to proteins is important for many cellular events. The theoretical and...
[[abstract]]Nearly half of all proteins contain metal ions, which perform a wide variety of specific...
The HIV-1 nucleocapsid 7 (NCp7) plays crucial roles in multiple stages of HIV-1 life cycle, and its ...
Available estimates indicate that 30–40 % of all proteins need at least one metal ion to perform the...
International audienceWe have developed new force field and parameters for copper(I) and mercury(II)...
Molecular dynamics (MD) simulation is a fundamental approach to allow researchers to study the molec...
Divalent metal cations are essential for many biological processes; however, accurately modeling div...
Two models, a purely nonbonded model and a cationic dummy atom approach, were examined for the model...
We have developed new force field and parameters for copper(I) and mercury(II) to be used in molecul...