AbstractA glutamic acid was buried in the hydrophobic core of staphylococcal nuclease by replacement of Val-66. Its pKa was measured with equilibrium thermodynamic methods. It was 4.3 units higher than the pKa of Glu in water. This increase was comparable to the ΔpKa of 4.9 units measured previously for a lysine buried at the same location. According to the Born formalism these ΔpKa are energetically equivalent to the transfer of a charged group from water to a medium of dielectric constant of 12. In contrast, the static dielectric constants of dry protein powders range from 2 to 4. In the crystallographic structure of the V66E mutant, a chain of water molecules was seen that hydrates the buried Glu-66 and links it with bulk solvent. The bu...
This paper investigates the microscopic mechanisms of charge screening in proteins. The screening of...
A simple inhomogeneous model of proteindielectric properties is discussed. A protein in solution is ...
We have used a standard Fröhlich-Kirkwood dipole moment fluctuation model to calculate the static di...
AbstractA glutamic acid was buried in the hydrophobic core of staphylococcal nuclease by replacement...
AbstractThe dielectric properties of proteins are poorly understood and difficult to describe quanti...
Using a new semi-empirical method for calculating molecular polarizabilities and the Clausius−Mossot...
Using a new semi-empirical method for calculating molecular polarizabilities and the Clausius−Mossot...
Using a new semi-empirical method for calculating molecular polarizabilities and the Clausius−Mossot...
Using a new semi-empirical method for calculating molecular polarizabilities and the Clausius−Mossot...
Using a new semi-empirical method for calculating molecular polarizabilities and the Clausius−Mossot...
AbstractThe ionizable amino acid side chains of proteins are usually located at the surface. However...
AbstractLys-66 and Glu-66, buried in the hydrophobic interior of staphylococcal nuclease by mutagene...
Solvation of protein surface charges plays an important role for the protonation states of titratabl...
Implicit methods for modeling protein electrostatics require dielectric properties of the system to ...
AbstractLys-66 and Glu-66, buried in the hydrophobic interior of staphylococcal nuclease by mutagene...
This paper investigates the microscopic mechanisms of charge screening in proteins. The screening of...
A simple inhomogeneous model of proteindielectric properties is discussed. A protein in solution is ...
We have used a standard Fröhlich-Kirkwood dipole moment fluctuation model to calculate the static di...
AbstractA glutamic acid was buried in the hydrophobic core of staphylococcal nuclease by replacement...
AbstractThe dielectric properties of proteins are poorly understood and difficult to describe quanti...
Using a new semi-empirical method for calculating molecular polarizabilities and the Clausius−Mossot...
Using a new semi-empirical method for calculating molecular polarizabilities and the Clausius−Mossot...
Using a new semi-empirical method for calculating molecular polarizabilities and the Clausius−Mossot...
Using a new semi-empirical method for calculating molecular polarizabilities and the Clausius−Mossot...
Using a new semi-empirical method for calculating molecular polarizabilities and the Clausius−Mossot...
AbstractThe ionizable amino acid side chains of proteins are usually located at the surface. However...
AbstractLys-66 and Glu-66, buried in the hydrophobic interior of staphylococcal nuclease by mutagene...
Solvation of protein surface charges plays an important role for the protonation states of titratabl...
Implicit methods for modeling protein electrostatics require dielectric properties of the system to ...
AbstractLys-66 and Glu-66, buried in the hydrophobic interior of staphylococcal nuclease by mutagene...
This paper investigates the microscopic mechanisms of charge screening in proteins. The screening of...
A simple inhomogeneous model of proteindielectric properties is discussed. A protein in solution is ...
We have used a standard Fröhlich-Kirkwood dipole moment fluctuation model to calculate the static di...