Magnesium ions have an important role in the structure and folding mechanism of ribonucleic systems. To properly simulate these biophysical processes, the applied molecular models should reproduce, among others, the kinetic properties of the ions in water solution. Here, we have studied the kinetics of the binding of magnesium ions with water molecules and nucleic acids systems using molecular dynamics simulation in detail. We have validated the parameters used in biomolecular force fields, such as AMBER and CHARMM, for Mg2+ ions, and also for the biological relevant ions, Na+, K+ and Ca2+ together with three different water models (TIP3P, SPC/E and TIP5P). The results show that Mg2+ ions have a slower exchange rate than Na+, K+ and Ca2+ in...
AbstractMolecular dynamics simulations have been used to investigate the binding of Mg2+ ions to the...
The structure of ribonucleic acid (RNA) polymers is strongly dependent on the presence of, in partic...
Ions interacting with hydrated RNA play a central role in defining its secondary and tertiary struct...
Magnesium ions have an important role in the structure and folding mechanism of ribonucleic systems....
This cumulative thesis discusses the development of optimized force field parameters for Magnesium a...
Magnesium and calcium play an essential role in the folding and function of nucleic acids. To correc...
RNA is highly sensitive to the ionic environment due to its negative charge, and typically requires ...
Magnesium is essential in many vital processes. To correctly describe Mg2+ in physiological processe...
The goal of this review is to present a unified picture of the relationship between ion binding and ...
Mg2+ ions are essential for RNA biology as they allow RNA filaments to assume their natively folded ...
AbstractThe stability of RNA tertiary structures depends heavily on Mg2+. The Mg2+-RNA interaction f...
Interaction with divalent cations is of paramount importance for RNA structural stability and functi...
Molecular dynamics simulation is a powerful computational tool for studying biomolecular structure ...
Magnesium plays a vital role in a large variety of biological processes. To model such processes by ...
The stability of RNA tertiary structures depends heavily on Mg(2+). The Mg(2+)-RNA interaction free ...
AbstractMolecular dynamics simulations have been used to investigate the binding of Mg2+ ions to the...
The structure of ribonucleic acid (RNA) polymers is strongly dependent on the presence of, in partic...
Ions interacting with hydrated RNA play a central role in defining its secondary and tertiary struct...
Magnesium ions have an important role in the structure and folding mechanism of ribonucleic systems....
This cumulative thesis discusses the development of optimized force field parameters for Magnesium a...
Magnesium and calcium play an essential role in the folding and function of nucleic acids. To correc...
RNA is highly sensitive to the ionic environment due to its negative charge, and typically requires ...
Magnesium is essential in many vital processes. To correctly describe Mg2+ in physiological processe...
The goal of this review is to present a unified picture of the relationship between ion binding and ...
Mg2+ ions are essential for RNA biology as they allow RNA filaments to assume their natively folded ...
AbstractThe stability of RNA tertiary structures depends heavily on Mg2+. The Mg2+-RNA interaction f...
Interaction with divalent cations is of paramount importance for RNA structural stability and functi...
Molecular dynamics simulation is a powerful computational tool for studying biomolecular structure ...
Magnesium plays a vital role in a large variety of biological processes. To model such processes by ...
The stability of RNA tertiary structures depends heavily on Mg(2+). The Mg(2+)-RNA interaction free ...
AbstractMolecular dynamics simulations have been used to investigate the binding of Mg2+ ions to the...
The structure of ribonucleic acid (RNA) polymers is strongly dependent on the presence of, in partic...
Ions interacting with hydrated RNA play a central role in defining its secondary and tertiary struct...