Literature DB >> 22868752

Structure of the catalytic core module of the Chaetomium thermophilum family GH6 cellobiohydrolase Cel6A.

Andrew J Thompson1, Tia Heu, Tarana Shaghasi, Romil Benyamino, Aubrey Jones, Esben P Friis, Keith S Wilson, Gideon J Davies.   

Abstract

Cellulases, including cellobiohydrolases and endoglucanases, are important enzymes involved in the breakdown of the polysaccharide cellulose. These catalysts have found widescale industrial applications, particularly in the paper and textile industries, and are now finding use in `second-generation' conversion of biomass to biofuels. Despite this considerable biotechnological application, and undoubted future potential, uncertainty remains as to the exact reaction mechanism of the inverting cellulases found in the GH6 family of carbohydrate-active enzymes. In order to gain additional understanding as to how these societally beneficial biocatalysts function, the crystal structure of a GH6 cellobiohydrolase from Chaetomium thermophilum, CtCel6A, has been solved. This structure reveals a distorted α/β-barrel fold comprising a buried tunnel-like active site quite typical of Cel6A enzymes. Analysis of an enzyme-product complex (cellobiose in the -3 and -2 subsites and cellotetraose in subsites +1 to +4) supports the hypothesis that this group of enzymes act via an atypical single-displacement mechanism. Of particular note in this analysis is an active-centre metal ion, Li(+), the position of which matches the position of the positively charged anomeric carbon of the oxocarbenium-ion-like transition state.

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Year:  2012        PMID: 22868752     DOI: 10.1107/S0907444912016496

Source DB:  PubMed          Journal:  Acta Crystallogr D Biol Crystallogr        ISSN: 0907-4449


  5 in total

1.  Advantages of a distant cellulase catalytic base.

Authors:  Tucker Burgin; Jerry Ståhlberg; Heather B Mayes
Journal:  J Biol Chem       Date:  2018-01-10       Impact factor: 5.157

2.  Three-dimensional structure of a variant `Termamyl-like' Geobacillus stearothermophilus α-amylase at 1.9 Å resolution.

Authors:  Wendy A Offen; Anders Viksoe-Nielsen; Torben V Borchert; Keith S Wilson; Gideon J Davies
Journal:  Acta Crystallogr F Struct Biol Commun       Date:  2015-01-01       Impact factor: 1.056

3.  Enhancement of catalytic activity and alkaline stability of cellobiohydrolase by structure-based protein engineering.

Authors:  Kanoknart Prabmark; Katewadee Boonyapakron; Benjarat Bunterngsook; Nattapol Arunrattanamook; Tanaporn Uengwetwanit; Penchit Chitnumsub; Verawat Champreda
Journal:  3 Biotech       Date:  2022-09-09       Impact factor: 2.893

4.  Product inhibition of cellulases studied with 14C-labeled cellulose substrates.

Authors:  Hele Teugjas; Priit Väljamäe
Journal:  Biotechnol Biofuels       Date:  2013-07-24       Impact factor: 6.040

Review 5.  Structural and mechanistic fundamentals for designing of cellulases.

Authors:  Sandro R Marana
Journal:  Comput Struct Biotechnol J       Date:  2012-10-16       Impact factor: 7.271

  5 in total

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