| Literature DB >> 23580647 |
Ryan P McAndrew1, Joshua I Park, Richard A Heins, Wolfgang Reindl, Gregory D Friedland, Patrik D'haeseleer, Trent Northen, Kenneth L Sale, Blake A Simmons, Paul D Adams.
Abstract
A recent metagenomic analysis sequenced a switchgrass-adapted compost community to identify enzymes from microorganisms that were specifically adapted to switchgrass under thermophilic conditions. These enzymes are being examined as part of the pretreatment process for the production of "second-generation" biofuels. Among the enzymes discovered was JMB19063, a novel three-domain β-glucosidase that belongs to the GH3 (glycoside hydrolase 3) family. Here, we report the structure of JMB19063 in complex with glucose and the catalytic variant D261N crystallized in the presence of cellopentaose. JMB19063 is first structure of a dimeric member of the GH3 family, and we demonstrate that dimerization is required for catalytic activity. Arg-587 and Phe-598 from the C-terminal domain of the opposing monomer are shown to interact with bound ligands in the D261N structure. Enzyme assays confirmed that these residues are absolutely essential for full catalytic activity.Entities:
Keywords: Bacterial Metabolism; Biofuel; Cellulase; Enzyme Kinetics; Structural Biology; β-Glucosidase
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Year: 2013 PMID: 23580647 PMCID: PMC3663519 DOI: 10.1074/jbc.M113.458356
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157