Modeling of denatured state for calculation of the electrostatic contribution to protein stability
- 1 July 2002
- journal article
- Published by Wiley in Protein Science
- Vol. 11 (7) , 1681-1686
- https://doi.org/10.1110/ps.4690102
Abstract
Existing models of the denatured state of proteins consider only one possible spatial distribution of protein charges and therefore are applicable to a limited number of cases. In this article, a more general framework for the modeling of the denatured state is proposed. It is based on the assumption that the titratable groups of an unfolded protein can adopt a quasi-random distribution restricted by the protein sequence. The model was applied for the calculations of electrostatic interactions in two proteins, barnase and N-terminal domain of the ribosomal protein L9. The calculated free energy of denaturation, DeltaG(pH), reproduces the experimental data better than the commonly used null approximation (NA). It was shown that the seemingly good agreement with experimental data obtained by NA originates from the compensatory effect between the pairwise electrostatic interactions and the desolvation energy of the individual sites. It was also found that the ionization properties of denatured proteins are influenced by the protein sequence.Keywords
This publication has 24 references indexed in Scilit:
- Model for calculation of electrostatic interactions in unfolded proteinsPhysical Review E, 2001
- Continuum electrostatic analysis of irregular ionization and proton allocation in proteinsProteins-Structure Function and Bioinformatics, 2001
- Realistic modeling of the denatured states of proteins allows accurate calculations of the ph dependence of protein stabilityJournal of Molecular Biology, 1999
- pKa Values and the pH Dependent Stability of the N-Terminal Domain of L9 as Probes of Electrostatic Interactions in the Denatured State. Differentiation between Local and Nonlocal InteractionsBiochemistry, 1999
- Prediction of Ph-dependent Properties of ProteinsJournal of Molecular Biology, 1994
- Multiple-site titration curves of proteins: an analysis of exact and approximate methods for their calculationThe Journal of Physical Chemistry, 1991
- Dipoles localized at helix termini of proteins stabilize charges.Proceedings of the National Academy of Sciences, 1991
- Monte Carlo Methods in Statistical PhysicsPublished by Springer Nature ,1979
- The protein data bank: A computer-based archival file for macromolecular structuresJournal of Molecular Biology, 1977
- Theory of Solutions of Molecules Containing Widely Separated Charges with Special Application to ZwitterionsThe Journal of Chemical Physics, 1934