Dissecting the paradoxical effects of hydrogen bond mutations in the ketosteroid isomerase oxyanion hole
- 11 January 2010
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 107 (5) , 1960-1965
- https://doi.org/10.1073/pnas.0911168107
Abstract
The catalytic importance of enzyme active-site interactions is frequently assessed by mutating specific residues and measuring the resulting rate reductions. This approach has been used in bacterial ketosteroid isomerase to probe the energetic importance of active-site hydrogen bonds donated to the dienolate reaction intermediate. The conservative Tyr16Phe mutation impairs catalysis by 10(5)-fold, far larger than the effects of hydrogen bond mutations in other enzymes. However, the less-conservative Tyr16Ser mutation, which also perturbs the Tyr16 hydrogen bond, results in a less-severe 10(2)-fold rate reduction. To understand the paradoxical effects of these mutations and clarify the energetic importance of the Tyr16 hydrogen bond, we have determined the 1.6-angstrom resolution x-ray structure of the intermediate analogue, equilenin, bound to the Tyr16Ser mutant and measured the rate effects of mutating Tyr16 to Ser, Thr, Ala, and Gly. The nearly identical 200-fold rate reductions of these mutations, together with the 6.4-angstrom distance observed between the Ser16 hydroxyl and equilenin oxygens in the x-ray structure, strongly suggest that the more moderate rate effect of this mutant is not due to maintenance of a hydrogen bond from Ser at position 16. These results, additional spectroscopic observations, and prior structural studies suggest that the Tyr16Phe mutation results in unfavorable interactions with the dienolate intermediate beyond loss of a hydrogen bond, thereby exaggerating the apparent energetic benefit of the Tyr16 hydrogen bond relative to the solution reaction. These results underscore the complex energetics of hydrogen bonding interactions and sitedirected mutagenesis experiments.Keywords
This publication has 39 references indexed in Scilit:
- Determining the catalytic role of remote substrate binding interactions in ketosteroid isomeraseProceedings of the National Academy of Sciences, 2009
- Observation of water dangling OH bonds around dissolved nonpolar groupsProceedings of the National Academy of Sciences, 2009
- Evaluating the Potential for Halogen Bonding in the Oxyanion Hole of Ketosteroid Isomerase Using Unnatural Amino Acid MutagenesisACS Chemical Biology, 2009
- Enzyme (re)design: lessons from natural evolution and computationCurrent Opinion in Chemical Biology, 2009
- Use of experimental crystallographic phases to examine the hydration of polar and nonpolar cavities in T4 lysozymeProceedings of the National Academy of Sciences, 2008
- Testing Geometrical Discrimination within an Enzyme Active Site: Constrained Hydrogen Bonding in the Ketosteroid Isomerase Oxyanion HoleJournal of the American Chemical Society, 2008
- De Novo Computational Design of Retro-Aldol EnzymesScience, 2008
- Testing Electrostatic Complementarity in Enzyme Catalysis: Hydrogen Bonding in the Ketosteroid Isomerase Oxyanion HolePLoS Biology, 2006
- The packing density in proteins: standard radii and volumes 1 1Edited by J. M. ThorntonJournal of Molecular Biology, 1999
- pH dependence of the kinetic parameters for 3-oxo-.DELTA.5-steroid isomerase. Substrate catalysis and inhibition by (3S)-spiro[5.alpha.-androstane-3,2'-oxiran]-17-oneBiochemistry, 1986