Related Experiment Video
Updated: Jun 22, 2026

A New Screening Method for the Directed Evolution of Thermostable Bacteriolytic Enzymes
Published on: November 7, 2012
Creating lactose phosphorylase enzymes by directed evolution of cellobiose phosphorylase
Manu R M De Groeve1, Miet De Baere, Lieve Hoflack
1Department of Biochemical and Microbial Technology, Ghent University, Ghent, Belgium. manu.degroeve@ugent.be
Abstract:
Disaccharide phosphorylases are interesting enzymes for the production of sugar phosphates from cheap starting materials and for the synthesis of novel glycosides. Cellobiose phosphorylase (CP) from Cellulomonas uda was subjected to directed evolution in order to create enzyme variants with significantly increased lactose phosphorylase (LP) activity, useful for the production of alpha-D-galactose 1-phosphate. In a first round, random mutagenesis was performed on part of the CP gene and the resultant library was selected on minimal lactose medium. One clone containing six amino acid mutations was found with increased LP activity compared with the wild-type CP enzyme. The negative and neutral mutations were eliminated by site-directed mutagenesis and the resultant enzyme variant containing two amino acid substitutions (T508A/N667T) showed more LP activity than the parent mutant. Saturation mutagenesis of the beneficial sites and screening for improved mutants allowed us to identify the T508I/N667A mutant which has 7.5 times higher specific activity on lactose than the wild-type. The kinetic parameters of the mutants were determined and showed that the increased LP activity was caused by a higher k(cat) value. This is the first report of an engineered CP with modified substrate specificity.
Related Concept Videos
Bioreactor Controls-III
Evolution of New Traits in Microbes
Inducible Operons: lac Operon
Production of Pharmaceuticals
Production of Organic Acids

