In constant pH molecular dynamics simulations, the protonation states of titratable sites can respond to changes of the pH and of their electrostatic environment. Consequently, the number of protons bound to the biomolecule, and therefore the overall charge of the system, fluctuates during the simulation. To avoid artifacts associated with a non-neutral simulation system, we introduce an approach to maintain neutrality of the simulation box in constant pH molecular dynamics simulations, while maintaining an accurate description of all protonation fluctuations. Specifically, we introduce a proton buffer that, like a buffer in experiment, can exchange protons with the biomolecule enabling its charge to fluctuate. To keep the total charge of t...
ABSTRACT In this work, we explore the question of whether pK a calculations based on a microscopic d...
pH dependence abounds in biochemical systems; however, many simulation methods used to investigate t...
In this work, we deliver a proof of concept for a fast method that introduces pH effects into classi...
In constant pH molecular dynamics simulations, the protonation states of titratable sites can respon...
A central problem in computational biophysics is the treatment of titratable residues in molecular d...
ABSTRACT: By utilizing Graphics Processing Units, we show that constant pH molecular dynamics simula...
pH is an important parameter in condensed-phase systems, because it determines the protonation state...
Ionisation equilibria in proteins are influenced by conformational flexibility, which can in princip...
The role of protonated nucleotides in modulating the pH-dependent properties of nucleic acids is one...
Various approaches have been proposed to include the effect of pH in molecular dynamics (MD) simulat...
ABSTRACT In this work, we explore the ques-tion of whether pKa calculations based on a micro-scopic ...
An accurate description of the protonation state of amino acids is essential to correctly simulate t...
AbstractRecent development of titratable coions has paved the way for realizing all-atom molecular d...
Protonation states of titratable amino acids play a key role in many biomolecular processes. Knowled...
ABSTRACT In this work, we explore the ques-tion of whether pKa calculations based on a micro-scopic ...
ABSTRACT In this work, we explore the question of whether pK a calculations based on a microscopic d...
pH dependence abounds in biochemical systems; however, many simulation methods used to investigate t...
In this work, we deliver a proof of concept for a fast method that introduces pH effects into classi...
In constant pH molecular dynamics simulations, the protonation states of titratable sites can respon...
A central problem in computational biophysics is the treatment of titratable residues in molecular d...
ABSTRACT: By utilizing Graphics Processing Units, we show that constant pH molecular dynamics simula...
pH is an important parameter in condensed-phase systems, because it determines the protonation state...
Ionisation equilibria in proteins are influenced by conformational flexibility, which can in princip...
The role of protonated nucleotides in modulating the pH-dependent properties of nucleic acids is one...
Various approaches have been proposed to include the effect of pH in molecular dynamics (MD) simulat...
ABSTRACT In this work, we explore the ques-tion of whether pKa calculations based on a micro-scopic ...
An accurate description of the protonation state of amino acids is essential to correctly simulate t...
AbstractRecent development of titratable coions has paved the way for realizing all-atom molecular d...
Protonation states of titratable amino acids play a key role in many biomolecular processes. Knowled...
ABSTRACT In this work, we explore the ques-tion of whether pKa calculations based on a micro-scopic ...
ABSTRACT In this work, we explore the question of whether pK a calculations based on a microscopic d...
pH dependence abounds in biochemical systems; however, many simulation methods used to investigate t...
In this work, we deliver a proof of concept for a fast method that introduces pH effects into classi...