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Free energy calculations on the stability of the 14-3-3ζ protein.

Biochim Biophys Acta.. 2017-12; 
Jandova Z, Trosanova Z, Weissova V, Oostenbrink C, Hritz J.
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PCR Cloning and Subcloning … 2. Methods. 2.1. Experimental. 2.1.1. Cloning, expression, and purification of 14-3-3ζ variants. A codon-optimized gene for 14-3-3ζ (GenScript, Piscataway Township, NJ) was inserted into pET15b and two mutations C25A and C189A were inserted … Get A Quote

Abstract

Mutations of cysteine are often introduced to e.g. avoid formation of non-physiological inter-molecular disulfide bridges in in-vitro experiments, or to maintain specificity in labeling experiments. Alanine or serine is typically preferred, which usually do not alter the overall protein stability, when the original cysteine was surface exposed. However, selecting the optimal mutation for cysteines in the hydrophobic core of the protein is more challenging. In this work, the stability of selected Cys mutants of 14-3-3 ζ was predicted by free-energy calculations and the obtained data were compared with experimentally determined stabilities. Both the computational predictions as well as the experimental validatio... More

Keywords

14-3-3 protein; Differential scanning calorimetry; Free energy calculation; Molecular dynamics simulation; Protein stability; Thermodynamic integration