ub.xmlui.mirage2.page-structure.muninLogoub.xmlui.mirage2.page-structure.openResearchArchiveLogo
    • EnglishEnglish
    • norsknorsk
  • Velg spraakEnglish 
    • EnglishEnglish
    • norsknorsk
  • Administration/UB
View Item 
  •   Home
  • Fakultet for naturvitenskap og teknologi
  • Institutt for kjemi
  • Artikler, rapporter og annet (kjemi)
  • View Item
  •   Home
  • Fakultet for naturvitenskap og teknologi
  • Institutt for kjemi
  • Artikler, rapporter og annet (kjemi)
  • View Item
JavaScript is disabled for your browser. Some features of this site may not work without it.

Discovery and characterization of a thermostable two-domain GH6 endoglucanase from a compost metagenome

Permanent link
https://hdl.handle.net/10037/14885
DOI
https://doi.org/10.1371/journal.pone.0197862
Thumbnail
View/Open
article.pdf (983.2Kb)
Publisher's version (PDF)
Date
2018-05-24
Type
Journal article
Tidsskriftartikkel
Peer reviewed

Author
Jensen, Marianne Slang; Fredriksen, Lasse; Mackenzie, Alasdair; Pope, Phillip; Leiros, Ingar; Chylenski, Piotr; Williamson, Adele Kim; Christopeit, Tony; Østby, Heidi; Vaaje-Kolstad, Gustav; Eijsink, Vincent
Abstract
Enzymatic depolymerization of recalcitrant polysaccharides plays a key role in accessing the renewable energy stored within lignocellulosic biomass, and natural biodiversities may be explored to discover microbial enzymes that have evolved to conquer this task in various environments. Here, a metagenome from a thermophilic microbial community was mined to yield a novel, thermostable cellulase, named mgCel6A, with activity on an industrial cellulosic substrate (sulfite-pulped Norway spruce) and a glucomannanase side activity. The enzyme consists of a glycoside hydrolase family 6 catalytic domain (GH6) and a family 2 carbohydrate binding module (CBM2) that are connected by a linker rich in prolines and threonines. MgCel6A exhibited maximum activity at 85°C and pH 5.0 on carboxymethyl cellulose (CMC), but in prolonged incubations with the industrial substrate, the highest yields were obtained at 60°C, pH 6.0. Differential scanning calorimetry (DSC) indicated a Tm(app) of 76°C. Both functional data and the crystal structure, solved at 1.88 Å resolution, indicate that mgCel6A is an endoglucanase. Comparative studies with a truncated variant of the enzyme showed that the CBM increases substrate binding, while not affecting thermal stability. Importantly, at higher substrate concentrations the full-length enzyme was outperformed by the catalytic domain alone, underpinning previous suggestions that CBMs may be less useful in high-consistency bioprocessing.
Description
The following article, Jensen, M.S., Fredriksen, L., Mackenzie, A.K., Pope, P., Leiros, I., Chylenski, P., ... Eijsink, V. 2018). Discovery and characterization of a thermostable two-domain GH6 endoglucanase from a compost metagenome. PLoS ONE, 13(5), can be accessed at https://doi.org/10.1371/journal.pone.0197862.
Publisher
Public Library of Science
Citation
Jensen, M.S., Fredriksen, L., Mackenzie, A.K., Pope, P., Leiros, I., Chylenski, P., ... Eijsink, V. 2018). Discovery and characterization of a thermostable two-domain GH6 endoglucanase from a compost metagenome. PLoS ONE, 13(5). https://doi.org/10.1371/journal.pone.0197862
Metadata
Show full item record
Collections
  • Artikler, rapporter og annet (kjemi) [565]

Browse

Browse all of MuninCommunities & CollectionsAuthor listTitlesBy Issue DateBrowse this CollectionAuthor listTitlesBy Issue Date
Login

Statistics

View Usage Statistics
UiT

Munin is powered by DSpace

UiT The Arctic University of Norway
The University Library
uit.no/ub - munin@ub.uit.no

Accessibility statement (Norwegian only)