A platform for chemical modification of mandelate racemase: Characterization of the C92S/C264S and 3-thialysine 166 variants

1Citations
Citations of this article
7Readers
Mendeley users who have this article in their library.
Get full text

Abstract

Mandelate racemase (MR) serves as a paradigm for our understanding of enzyme-catalyzed deprotonation of a carbon acid substrate. To facilitate structure-function studies on MR using non-natural amino acid substitutions, we engineered the Cys92Ser/Cys264Ser variant (dmMR) as a platform for introducing Cys residues at specific locations for subsequent covalent modification. While the highly reactive thiol of Cys furnishes a site for chemical modification, site-specificity requires that other Cys residues be non-reactive or replaced by a non-reactive amino acid, especially if chemical modification is conducted under denaturing conditions. The catalytic efficiency of dmMR is reduced only ∼2-fold relative to wild-type MR, making dmMR a viable platform for the site-specific introduction of Cys. As an example, the inactive Lys166Cys variant of dmMR was treated with ethylenimine under denaturing conditions to replace the Brønsted acid-base catalyst Lys 166 with the non-natural amino acid 3-thialysine. Comparison of the pH-activity profiles of dmMR and the active 3-thialysine variant revealed a reduction in the pK a for the side chain amino group of ∼0.4 units for the latter variant. Unlike wild-type MR for which diffusion is partially rate-limiting, dmMR and the 3-thialysine variant showed no dependence on the solvent viscosity suggesting that the chemical step is fully rate-limiting.

Cite

CITATION STYLE

APA

Nagar, M., Kumar, H., & Bearne, S. L. (2018). A platform for chemical modification of mandelate racemase: Characterization of the C92S/C264S and 3-thialysine 166 variants. Protein Engineering, Design and Selection, 31(4), 135–145. https://doi.org/10.1093/protein/gzy011

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free