Combination of CTec2 and GH5 or GH26 Endo-Mannanases for Effective Lignocellulosic Biomass Degradation

Among endo-mannanases, glycoside hydrolase (GH) family 26 enzymes have been shown to be more catalytically active than GH5 enzymes on mannans. However, only GH5 endo-mannanases have been used for the formulation of enzyme cocktails. In this study, <i>Bacillus</i> sp.-derived GH5 and GH26...

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Main Authors: Samkelo Malgas, Brett I. Pletschke
Format: Article
Language:English
Published: MDPI AG 2020-10-01
Series:Catalysts
Subjects:
Online Access:https://www.mdpi.com/2073-4344/10/10/1193
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spelling doaj-479dd62581e641379d42ed964aab781a2020-11-25T02:25:26ZengMDPI AGCatalysts2073-43442020-10-01101193119310.3390/catal10101193Combination of CTec2 and GH5 or GH26 Endo-Mannanases for Effective Lignocellulosic Biomass DegradationSamkelo Malgas0Brett I. Pletschke1Enzyme Science Programme (ESP), Department of Biochemistry and Microbiology, Rhodes University, Grahamstown 6140, Eastern Cape, South AfricaEnzyme Science Programme (ESP), Department of Biochemistry and Microbiology, Rhodes University, Grahamstown 6140, Eastern Cape, South AfricaAmong endo-mannanases, glycoside hydrolase (GH) family 26 enzymes have been shown to be more catalytically active than GH5 enzymes on mannans. However, only GH5 endo-mannanases have been used for the formulation of enzyme cocktails. In this study, <i>Bacillus</i> sp.-derived GH5 and GH26 endo-mannanases were comparatively analysed biochemically for their synergistic action with a commercial cellulase blend, CTec2, during pre-treated lignocellulose degradation. Substrate specificity and thermo-stability studies on mannan substrates showed that GH26 endo-mannanase was more catalytically active and stable than GH5. GH26 also exhibited higher binding affinity for mannan than GH5, while GH5 showed more affinity for lignocellulosic substrates than GH26. Applying the endo-mannanases in combination with CTec2 for lignocellulose degradation led to synergism with a 1.3-fold increase in reducing sugar release compared to when CTec2 was used alone. This study showed that using the activity of endo-mannanases displayed with model substrates is a poor predictor of their activity and synergism on complex lignocelluloses.https://www.mdpi.com/2073-4344/10/10/1193CTec2endo-mannanaselignocellulosemannansynergism
collection DOAJ
language English
format Article
sources DOAJ
author Samkelo Malgas
Brett I. Pletschke
spellingShingle Samkelo Malgas
Brett I. Pletschke
Combination of CTec2 and GH5 or GH26 Endo-Mannanases for Effective Lignocellulosic Biomass Degradation
Catalysts
CTec2
endo-mannanase
lignocellulose
mannan
synergism
author_facet Samkelo Malgas
Brett I. Pletschke
author_sort Samkelo Malgas
title Combination of CTec2 and GH5 or GH26 Endo-Mannanases for Effective Lignocellulosic Biomass Degradation
title_short Combination of CTec2 and GH5 or GH26 Endo-Mannanases for Effective Lignocellulosic Biomass Degradation
title_full Combination of CTec2 and GH5 or GH26 Endo-Mannanases for Effective Lignocellulosic Biomass Degradation
title_fullStr Combination of CTec2 and GH5 or GH26 Endo-Mannanases for Effective Lignocellulosic Biomass Degradation
title_full_unstemmed Combination of CTec2 and GH5 or GH26 Endo-Mannanases for Effective Lignocellulosic Biomass Degradation
title_sort combination of ctec2 and gh5 or gh26 endo-mannanases for effective lignocellulosic biomass degradation
publisher MDPI AG
series Catalysts
issn 2073-4344
publishDate 2020-10-01
description Among endo-mannanases, glycoside hydrolase (GH) family 26 enzymes have been shown to be more catalytically active than GH5 enzymes on mannans. However, only GH5 endo-mannanases have been used for the formulation of enzyme cocktails. In this study, <i>Bacillus</i> sp.-derived GH5 and GH26 endo-mannanases were comparatively analysed biochemically for their synergistic action with a commercial cellulase blend, CTec2, during pre-treated lignocellulose degradation. Substrate specificity and thermo-stability studies on mannan substrates showed that GH26 endo-mannanase was more catalytically active and stable than GH5. GH26 also exhibited higher binding affinity for mannan than GH5, while GH5 showed more affinity for lignocellulosic substrates than GH26. Applying the endo-mannanases in combination with CTec2 for lignocellulose degradation led to synergism with a 1.3-fold increase in reducing sugar release compared to when CTec2 was used alone. This study showed that using the activity of endo-mannanases displayed with model substrates is a poor predictor of their activity and synergism on complex lignocelluloses.
topic CTec2
endo-mannanase
lignocellulose
mannan
synergism
url https://www.mdpi.com/2073-4344/10/10/1193
work_keys_str_mv AT samkelomalgas combinationofctec2andgh5orgh26endomannanasesforeffectivelignocellulosicbiomassdegradation
AT brettipletschke combinationofctec2andgh5orgh26endomannanasesforeffectivelignocellulosicbiomassdegradation
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