AbstractIonization-coupled conformational phenomena are ubiquitous in biology. However, quantitative characterization of the underlying thermodynamic cycle comprised of protonation and conformational equilibria has remained an elusive goal. Here we use theory and continuous constant pH molecular dynamics (CpHMD) simulations to provide a thermodynamic description for the coupling of proton titration and conformational exchange between two distinct states of a protein. CpHMD simulations with a hybrid-solvent scheme and the pH-based replica-exchange (REX) protocol are applied to obtain the equilibrium constants and atomic details of the ionization-coupled conformational exchange between open and closed states of an engineered mutant of staphyl...
In constant pH molecular dynamics simulations, the protonation states of titratable sites can respon...
Protein structure and function are highly dependent on the environmental pH. However, the temporal o...
This work emphasises on elaboration of improved theoretical and computational methods for determinat...
AbstractIonization-coupled conformational phenomena are ubiquitous in biology. However, quantitative...
The role of protonated nucleotides in modulating the pH-dependent properties of nucleic acids is one...
AbstractThe current article describes a new two-dimensional λ-dynamics method to include proton taut...
ABSTRACT: The calculation of pKa values for ionizable sites in proteins has been traditionally based...
pH is a ubiquitous regulator of biological activity, including protein‐folding, protein‐protein inte...
Protonation states of titratable amino acids play a key role in many biomolecular processes. Knowled...
pH is a ubiquitous regulator of biological activity, with widespread impact ranging from its role in...
Solvent pH is an important property that defines the protonation state of the amino acids and, there...
An accurate description of the protonation state of amino acids is essential to correctly simulate t...
ABSTRACT: By utilizing Graphics Processing Units, we show that constant pH molecular dynamics simula...
Due to high sensitivity of biomolecular systems to the electrostatic environments, coupled treatment...
Designing drugs for treating diseases is one of the main motivations for understanding how proteins ...
In constant pH molecular dynamics simulations, the protonation states of titratable sites can respon...
Protein structure and function are highly dependent on the environmental pH. However, the temporal o...
This work emphasises on elaboration of improved theoretical and computational methods for determinat...
AbstractIonization-coupled conformational phenomena are ubiquitous in biology. However, quantitative...
The role of protonated nucleotides in modulating the pH-dependent properties of nucleic acids is one...
AbstractThe current article describes a new two-dimensional λ-dynamics method to include proton taut...
ABSTRACT: The calculation of pKa values for ionizable sites in proteins has been traditionally based...
pH is a ubiquitous regulator of biological activity, including protein‐folding, protein‐protein inte...
Protonation states of titratable amino acids play a key role in many biomolecular processes. Knowled...
pH is a ubiquitous regulator of biological activity, with widespread impact ranging from its role in...
Solvent pH is an important property that defines the protonation state of the amino acids and, there...
An accurate description of the protonation state of amino acids is essential to correctly simulate t...
ABSTRACT: By utilizing Graphics Processing Units, we show that constant pH molecular dynamics simula...
Due to high sensitivity of biomolecular systems to the electrostatic environments, coupled treatment...
Designing drugs for treating diseases is one of the main motivations for understanding how proteins ...
In constant pH molecular dynamics simulations, the protonation states of titratable sites can respon...
Protein structure and function are highly dependent on the environmental pH. However, the temporal o...
This work emphasises on elaboration of improved theoretical and computational methods for determinat...