## Abstract The p__K__~a~‐cooperative aims to provide a forum for experimental and theoretical researchers interested in protein p__K__~a~ values and protein electrostatics in general. The first round of the p__K__~a~‐cooperative, which challenged computational labs to carry out blind predictions a
Application of the Gaussian dielectric boundary in Zap to the prediction of protein pKa values
✍ Scribed by J. Michael Word; Anthony Nicholls
- Publisher
- John Wiley and Sons
- Year
- 2011
- Tongue
- English
- Weight
- 900 KB
- Volume
- 79
- Category
- Article
- ISSN
- 0887-3585
No coin nor oath required. For personal study only.
✦ Synopsis
Abstract
The results of two rounds of blind p__K__~a~ predictions for ionizable residues in staphylococcal nuclease using OpenEye's legacy protein p__K__~a~ prediction program based on the Zap Poisson–Boltzmann solver were submitted to the 2009 prediction challenge organized by the Protein p__K__~a~ Cooperative and first round predictions were discussed at the corresponding June 2009 Telluride conference. To better understand these results, 21 additional sets of predictions were performed with the same program, varying the internal dielectric, reference p__K__~a~, partial charge set, and dielectric boundary. The internal dielectric (ϵ~p~) and dielectric boundary were the two most important factors contributing to the quality of the predictions. Although the lowest overall errors were observed with a molecular dielectric boundary at ϵ~p~ = 8, predictions using a smooth Gaussian dielectric boundary performed almost as well at lower ϵ~p~ values because the Gaussian boundary implicitly accounts for a significant level of solvent penetration. Improved p__K__~a~ predictions with the Gaussian boundary methodology will require better prediction and modeling of structural changes due to changes in ionization state, perhaps without resorting to the more exhaustive sampling of conformational states used by other recent continuum methods. Proteins 2011; © 2011 Wiley‐Liss, Inc.
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## Abstract The p__K__~a~ Cooperative (http://www.pkacoop.org) was organized to advance development of accurate and useful computational methods for structure‐based calculation of p__K__~a~ values and electrostatic energies in proteins. The Cooperative brings together laboratories with expertise an
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