4.3 Article Proceedings Paper

How carbonyl reductases control stereoselectivity: Approaching the goal of rational design

Journal

PURE AND APPLIED CHEMISTRY
Volume 82, Issue 1, Pages 117-128

Publisher

WALTER DE GRUYTER GMBH
DOI: 10.1351/PAC-CON-09-01-03

Keywords

carbonyl reductase; enzyme-substrate docking; ketone reduction; site-directed mutagenesis; stereoselectivity

Funding

  1. Chinese Academy of Sciences [KSCX2-YW-G-031]
  2. Tianjin Municipal Science & Technology Commission [09ZCKFSH01000]

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Although Prelog's rule and two hydrophobic binding pockets model have been used to predict and explain the stercoselectivity of enzymatic ketone reduction, the molecular basis of stereorecognition by carbonyl reductases has not been well understood. The stercoselectivity is not only determined by the structures of enzymes and substrates, but also affected by the reaction conditions such as temperature and reaction medium. Structural analysis coupled with site-directed mutagenesis of stereocomplementary carbonyl reductases readily reveals the key elements of controlling stereoselectivity in these enzymes. In our studies, enzyme-substrate docking and molecular modeling have been engaged to understand the enantioselectivity diversity of the carbonyl reductase from Sporobolomyces salmonicolor (SSCR), and to guide site-saturation mutagenesis for altering the enantioselectivity of this enzyme. These studies provide valuable information for our understanding of how the residues involved in substrate binding affect the orientation of bound substrate, and thus Control the reaction stereoselectivity. The in silico docking-guided semi-rational approach should be a useful methodology for discovery of new carbonyl reductases.

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