Protein solubility modeling

A thermodynamic framework (UNIQUAC model with temperature dependent parameters) is applied to model the salt-induced protein crystallization equilibrium, i.e., protein solubility. The framework introduces a term for the solubility product describing protein transfer between the liquid and solid phas...

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Veröffentlicht in:Biotechnology and bioengineering 1999-07, Vol.64 (2), p.144-150
Hauptverfasser: Agena, S.M, Pusey, M.L, Bogle, I.D.L
Format: Artikel
Sprache:eng
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Zusammenfassung:A thermodynamic framework (UNIQUAC model with temperature dependent parameters) is applied to model the salt-induced protein crystallization equilibrium, i.e., protein solubility. The framework introduces a term for the solubility product describing protein transfer between the liquid and solid phase and a term for the solution behavior describing deviation from ideal solution. Protein solubility is modeled as a function of salt concentration and temperature for a four-component system consisting of a protein, pseudo solvent (water and buffer), cation, and anion (salt). Two different systems, lysozyme with sodium chloride and concanavalin A with ammonium sulfate, are investigated. Comparison of the modeled and experimental protein solubility data results in an average root mean square deviation of 5.8%, demonstrating that the model closely follows the experimental behavior. Model calculations and model parameters are reviewed to examine the model and protein crystallization process.
ISSN:0006-3592
1097-0290
DOI:10.1002/(SICI)1097-0290(19990720)64:2<144::AID-BIT3>3.0.CO;2-P