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Exploration of GH94 Sequence Space for Enzyme Discovery Reveals a Novel Glucosylgalactose Phosphorylase Specificity
Authors:Marc De Doncker  Chloé De Graeve  Dr Jorick Franceus  Dr Koen Beerens  Prof Vladimír K?en  Dr Helena Pelantová  Dr Ronny Vercauteren  Prof?Dr Tom Desmet
Affiliation:1. Centre for Synthetic Biology (CSB), Department of Biotechnology, Ghent University, Coupure Links Ghent, 653, 9000 Gent, Belgium;2. Institute of Microbiology of the Czech Academy of Sciences, Vídeňská 1083, 14220 Prague 4, Czech Republic;3. Cargill R&D Centre Europe BVBA, Havenstraat 84, 1800 Vilvoorde, Belgium
Abstract:The substantial increase in DNA sequencing efforts has led to a rapid expansion of available sequences in glycoside hydrolase families. The ever-increasing sequence space presents considerable opportunities for the search for enzymes with novel functionalities. In this work, the sequence-function space of glycoside hydrolase family 94 (GH94) was explored in detail, using a combined approach of phylogenetic analysis and sequence similarity networks. The identification and experimental screening of unknown clusters led to the discovery of an enzyme from the soil bacterium Paenibacillus polymyxa that acts as a 4-O-β-d -glucosyl-d -galactose phosphorylase (GGalP), a specificity that has not been reported to date. Detailed characterization of GGalP revealed that its kinetic parameters were consistent with those of other known phosphorylases. Furthermore, the enzyme could be used for production of the rare disaccharides 4-O-β-d -glucosyl-d -galactose and 4-O-β-d -glucosyl-l -arabinose. Our current work highlights the power of rational sequence space exploration in the search for novel enzyme specificities, as well as the potential of phosphorylases for rare disaccharide synthesis.
Keywords:enzyme discovery  glucosylgalactose phosphorylase  glycoside phosphorylase  glycoside hydrolase family GH94  sequence similarity networks
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