Cargando…

Enhanced Polysaccharide Binding and Activity on Linear β-Glucans through Addition of Carbohydrate-Binding Modules to Either Terminus of a Glucooligosaccharide Oxidase

The gluco-oligosaccharide oxidase from Sarocladium strictum CBS 346.70 (GOOX) is a single domain flavoenzyme that favourably oxidizes gluco- and xylo- oligosaccharides. In the present study, GOOX was shown to also oxidize plant polysaccharides, including cellulose, glucomannan, β-(1→3,1→4)-glucan, a...

Descripción completa

Detalles Bibliográficos
Autores principales: Foumani, Maryam, Vuong, Thu V., MacCormick, Benjamin, Master, Emma R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4416756/
https://www.ncbi.nlm.nih.gov/pubmed/25932926
http://dx.doi.org/10.1371/journal.pone.0125398
_version_ 1782369272610160640
author Foumani, Maryam
Vuong, Thu V.
MacCormick, Benjamin
Master, Emma R.
author_facet Foumani, Maryam
Vuong, Thu V.
MacCormick, Benjamin
Master, Emma R.
author_sort Foumani, Maryam
collection PubMed
description The gluco-oligosaccharide oxidase from Sarocladium strictum CBS 346.70 (GOOX) is a single domain flavoenzyme that favourably oxidizes gluco- and xylo- oligosaccharides. In the present study, GOOX was shown to also oxidize plant polysaccharides, including cellulose, glucomannan, β-(1→3,1→4)-glucan, and xyloglucan, albeit to a lesser extent than oligomeric substrates. To improve GOOX activity on polymeric substrates, three carbohydrate binding modules (CBMs) from Clostridium thermocellum, namely CtCBM3 (type A), CtCBM11 (type B), and CtCBM44 (type B), were separately appended to the amino and carboxy termini of the enzyme, generating six fusion proteins. With the exception of GOOX-CtCBM3 and GOOX-CtCBM44, fusion of the selected CBMs increased the catalytic activity of the enzyme (kcat) on cellotetraose by up to 50%. All CBM fusions selectively enhanced GOOX binding to soluble and insoluble polysaccharides, and the immobilized enzyme on a solid cellulose surface remained stable and active. In addition, the CBM fusions increased the activity of GOOX on soluble glucomannan by up to 30 % and on insoluble crystalline as well as amorphous cellulose by over 50 %.
format Online
Article
Text
id pubmed-4416756
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-44167562015-05-07 Enhanced Polysaccharide Binding and Activity on Linear β-Glucans through Addition of Carbohydrate-Binding Modules to Either Terminus of a Glucooligosaccharide Oxidase Foumani, Maryam Vuong, Thu V. MacCormick, Benjamin Master, Emma R. PLoS One Research Article The gluco-oligosaccharide oxidase from Sarocladium strictum CBS 346.70 (GOOX) is a single domain flavoenzyme that favourably oxidizes gluco- and xylo- oligosaccharides. In the present study, GOOX was shown to also oxidize plant polysaccharides, including cellulose, glucomannan, β-(1→3,1→4)-glucan, and xyloglucan, albeit to a lesser extent than oligomeric substrates. To improve GOOX activity on polymeric substrates, three carbohydrate binding modules (CBMs) from Clostridium thermocellum, namely CtCBM3 (type A), CtCBM11 (type B), and CtCBM44 (type B), were separately appended to the amino and carboxy termini of the enzyme, generating six fusion proteins. With the exception of GOOX-CtCBM3 and GOOX-CtCBM44, fusion of the selected CBMs increased the catalytic activity of the enzyme (kcat) on cellotetraose by up to 50%. All CBM fusions selectively enhanced GOOX binding to soluble and insoluble polysaccharides, and the immobilized enzyme on a solid cellulose surface remained stable and active. In addition, the CBM fusions increased the activity of GOOX on soluble glucomannan by up to 30 % and on insoluble crystalline as well as amorphous cellulose by over 50 %. Public Library of Science 2015-05-01 /pmc/articles/PMC4416756/ /pubmed/25932926 http://dx.doi.org/10.1371/journal.pone.0125398 Text en © 2015 Foumani et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Foumani, Maryam
Vuong, Thu V.
MacCormick, Benjamin
Master, Emma R.
Enhanced Polysaccharide Binding and Activity on Linear β-Glucans through Addition of Carbohydrate-Binding Modules to Either Terminus of a Glucooligosaccharide Oxidase
title Enhanced Polysaccharide Binding and Activity on Linear β-Glucans through Addition of Carbohydrate-Binding Modules to Either Terminus of a Glucooligosaccharide Oxidase
title_full Enhanced Polysaccharide Binding and Activity on Linear β-Glucans through Addition of Carbohydrate-Binding Modules to Either Terminus of a Glucooligosaccharide Oxidase
title_fullStr Enhanced Polysaccharide Binding and Activity on Linear β-Glucans through Addition of Carbohydrate-Binding Modules to Either Terminus of a Glucooligosaccharide Oxidase
title_full_unstemmed Enhanced Polysaccharide Binding and Activity on Linear β-Glucans through Addition of Carbohydrate-Binding Modules to Either Terminus of a Glucooligosaccharide Oxidase
title_short Enhanced Polysaccharide Binding and Activity on Linear β-Glucans through Addition of Carbohydrate-Binding Modules to Either Terminus of a Glucooligosaccharide Oxidase
title_sort enhanced polysaccharide binding and activity on linear β-glucans through addition of carbohydrate-binding modules to either terminus of a glucooligosaccharide oxidase
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4416756/
https://www.ncbi.nlm.nih.gov/pubmed/25932926
http://dx.doi.org/10.1371/journal.pone.0125398
work_keys_str_mv AT foumanimaryam enhancedpolysaccharidebindingandactivityonlinearbglucansthroughadditionofcarbohydratebindingmodulestoeitherterminusofaglucooligosaccharideoxidase
AT vuongthuv enhancedpolysaccharidebindingandactivityonlinearbglucansthroughadditionofcarbohydratebindingmodulestoeitherterminusofaglucooligosaccharideoxidase
AT maccormickbenjamin enhancedpolysaccharidebindingandactivityonlinearbglucansthroughadditionofcarbohydratebindingmodulestoeitherterminusofaglucooligosaccharideoxidase
AT masteremmar enhancedpolysaccharidebindingandactivityonlinearbglucansthroughadditionofcarbohydratebindingmodulestoeitherterminusofaglucooligosaccharideoxidase