Utilize este identificador para referenciar este registo: http://hdl.handle.net/10362/178750
Título: Family GH157 enzyme exhibits broad linkage tolerance and a dual endo/exo-β-glucanase activity on β-glucans
Autor: Caseiro, Catarina
McGregor, Nicholas G S
Alves, Victor Diogo
Carvalho, Ana Luísa
Romão, Maria João
Davies, Gideon J
Fontes, Carlos M G A
Bule, Pedro
Palavras-chave: beta-Glucans/metabolism
Substrate Specificity
Hydrolysis
Glycoside Hydrolases/chemistry
Hydrogen-Ion Concentration
Kinetics
Models, Molecular
Catalytic Domain
Temperature
Crystallography, X-Ray
Amino Acid Sequence
Endo-1,3(4)-β-glucanase
β-Glucans
CAZYme
GH157
Glycoside hydrolase
Molecular Biology
Structural Biology
Biochemistry
Data: Dez-2024
Resumo: The structural and chemical diversity of β-glucans is reflected on the variety of essential biological roles tackled by these polysaccharides. This natural heterogeneity requires an elaborate assortment of enzymatic mechanisms to assemble, degrade or modify, as well as to extract their full biotechnological potential. Recent metagenomic efforts have provided an unprecedented growth in potential new biocatalysts, most of which remain unconfirmed or uncharacterized. Here we report the first biochemical and structural characterization of two bacterial β-glucanases from the recently created glycoside hydrolase family 157 (LaGH157 and BcGH157) and investigate their molecular basis for substrate hydrolysis. Structural analysis by X-ray crystallography revealed that GH157 enzymes belong to clan GH-A, possessing a (β/α) 8-barrel fold catalytic domain, two β-sandwich accessory domains and two conserved catalytic glutamates residues, with relative positions compatible with a retaining mechanism of hydrolysis. Specificity screening and enzyme kinetics suggest that the enzymes prefer mixed-linkage glucans over β-1,3-glucans. Activity screening showed that both enzymes exhibit pH optimum at 6.5 and temperature optimum for LaGH157 and BcGH157 at 25 °C and 48 °C, respectively. Product analysis with HPAEC-PAD and LC-MS revealed that both enzymes are endo-1,3(4)-β-glucanases, capable of cleaving β-1,3 and β-1,4-linked glucoses, when preceded by a β-1,3 linkage. Moreover, BcGH157 needs a minimum of 4 subsites occupied for hydrolysis to occur, while LaGH157 only requires 3 subsites. Additionally, LaGH157 possesses exohydrolytic activity on β-1,3 and branching β-1,6 linkages. This unusual bifunctional endo-1,3(4)/exo-1,3-1,6 activity constitutes an expansion on our understanding of β-glucan deconstruction, with the potential to inspire future applications.
Descrição: The authors also acknowledge support from the \u201Cla Caixa\u201D foundation (Junior Leader Fellowship LCF/BQ/PR23/11980039 to PB), the Royal Society (Ken Murray Research Professorship to GJD), the Biotechnology and Biological Sciences Research Council (BBSRC) (grant BB/R001162/1 to GJD) and the European Research Council ERC-2020-SyG-951231 \u201CCarbocentre\u201D to GJD. Funding Information: We acknowledge the European Synchrotron Radiation Facility (ESRF) for access to beamlines ID30A-1 and ID30A-3 through BAG-Portugal (proposal mx2376). Molecular graphics and analyses performed with UCSF ChimeraX, developed by the Resource for Biocomputing, Visualization, and Informatics at the University of California, San Francisco, with support from National Institutes of Health R01-GM129325 and the Office of Cyber Infrastructure and Computational Biology, National Institute of Allergy and Infectious Diseases . We thank Rachael Hallam and Dr. Leonardo Gomez for skilled maintenance and provision of access to HPAEC-PAD instrumentation. We thank Andrew Leech at the Molecular Interactions Lab for SEC-MALLS experiments and report. Publisher Copyright: © 2024 The Authors
Peer review: yes
URI: http://hdl.handle.net/10362/178750
DOI: https://doi.org/10.1016/j.ijbiomac.2024.137402
ISSN: 0141-8130
Aparece nas colecções:Home collection (FCT)

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