Cargando…

Identification of the C-Terminal GH5 Domain from CbCel9B/Man5A as the First Glycoside Hydrolase with Thermal Activation Property from a Multimodular Bifunctional Enzyme

Caldicellulosiruptor bescii encodes at least six unique multimodular glycoside hydrolases crucial for plant cell wall polysaccharides degradation, with each having two catalytic domains separated by two to three carbohydrate binding modules. Among the six enzymes, three have one N- or C-terminal GH5...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Rong, Gong, Li, Xue, Xianli, Qin, Xing, Ma, Rui, Luo, Huiying, Zhang, Yongjie, Yao, Bin, Su, Xiaoyun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4892530/
https://www.ncbi.nlm.nih.gov/pubmed/27258548
http://dx.doi.org/10.1371/journal.pone.0156802
_version_ 1782435405606420480
author Wang, Rong
Gong, Li
Xue, Xianli
Qin, Xing
Ma, Rui
Luo, Huiying
Zhang, Yongjie
Yao, Bin
Su, Xiaoyun
author_facet Wang, Rong
Gong, Li
Xue, Xianli
Qin, Xing
Ma, Rui
Luo, Huiying
Zhang, Yongjie
Yao, Bin
Su, Xiaoyun
author_sort Wang, Rong
collection PubMed
description Caldicellulosiruptor bescii encodes at least six unique multimodular glycoside hydrolases crucial for plant cell wall polysaccharides degradation, with each having two catalytic domains separated by two to three carbohydrate binding modules. Among the six enzymes, three have one N- or C-terminal GH5 domain with identical amino acid sequences. Despite a few reports on some of these multimodular enzymes, little is known about how the conserved GH5 domains behave, which are believed to be important due to the gene duplication. We thus cloned a representative GH5 domain from the C-terminus of a multimodular protein, i.e. the bifunctional cellulase/mannanase CbCel9B/Man5A which has been reported, and expressed it in Escherichia coli. Without any appending CBMs, the recombinant CbMan5A was still able to hydrolyze a variety of mannan substrates with different backbone linkages or side-chain decorations. While CbMan5A displayed the same pH optimum as CbCel9B/Man5A, it had an increased optimal temperature (90°C) and moreover, was activated by heating at 70°C and 80°C, a property not ever reported for the full-length protein. The turnover numbers of CbMan5A on mannan substrates were, however, lower than those of CbCel9B/Man5A. These data suggested that evolution of CbMan5A and the other domains into a single polypeptide is not a simple assembly; rather, the behavior of one module may be affected by the other ones in the full-length enzyme. The differential scanning calorimetry analysis further indicated that heating CbMan5A was not a simple transition state process. To the best knowledge of the authors, CbMan5A is the first glycoside hydrolase with thermal activation property identified from a multimodular bifunctional enzyme.
format Online
Article
Text
id pubmed-4892530
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-48925302016-06-16 Identification of the C-Terminal GH5 Domain from CbCel9B/Man5A as the First Glycoside Hydrolase with Thermal Activation Property from a Multimodular Bifunctional Enzyme Wang, Rong Gong, Li Xue, Xianli Qin, Xing Ma, Rui Luo, Huiying Zhang, Yongjie Yao, Bin Su, Xiaoyun PLoS One Research Article Caldicellulosiruptor bescii encodes at least six unique multimodular glycoside hydrolases crucial for plant cell wall polysaccharides degradation, with each having two catalytic domains separated by two to three carbohydrate binding modules. Among the six enzymes, three have one N- or C-terminal GH5 domain with identical amino acid sequences. Despite a few reports on some of these multimodular enzymes, little is known about how the conserved GH5 domains behave, which are believed to be important due to the gene duplication. We thus cloned a representative GH5 domain from the C-terminus of a multimodular protein, i.e. the bifunctional cellulase/mannanase CbCel9B/Man5A which has been reported, and expressed it in Escherichia coli. Without any appending CBMs, the recombinant CbMan5A was still able to hydrolyze a variety of mannan substrates with different backbone linkages or side-chain decorations. While CbMan5A displayed the same pH optimum as CbCel9B/Man5A, it had an increased optimal temperature (90°C) and moreover, was activated by heating at 70°C and 80°C, a property not ever reported for the full-length protein. The turnover numbers of CbMan5A on mannan substrates were, however, lower than those of CbCel9B/Man5A. These data suggested that evolution of CbMan5A and the other domains into a single polypeptide is not a simple assembly; rather, the behavior of one module may be affected by the other ones in the full-length enzyme. The differential scanning calorimetry analysis further indicated that heating CbMan5A was not a simple transition state process. To the best knowledge of the authors, CbMan5A is the first glycoside hydrolase with thermal activation property identified from a multimodular bifunctional enzyme. Public Library of Science 2016-06-03 /pmc/articles/PMC4892530/ /pubmed/27258548 http://dx.doi.org/10.1371/journal.pone.0156802 Text en © 2016 Wang 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Wang, Rong
Gong, Li
Xue, Xianli
Qin, Xing
Ma, Rui
Luo, Huiying
Zhang, Yongjie
Yao, Bin
Su, Xiaoyun
Identification of the C-Terminal GH5 Domain from CbCel9B/Man5A as the First Glycoside Hydrolase with Thermal Activation Property from a Multimodular Bifunctional Enzyme
title Identification of the C-Terminal GH5 Domain from CbCel9B/Man5A as the First Glycoside Hydrolase with Thermal Activation Property from a Multimodular Bifunctional Enzyme
title_full Identification of the C-Terminal GH5 Domain from CbCel9B/Man5A as the First Glycoside Hydrolase with Thermal Activation Property from a Multimodular Bifunctional Enzyme
title_fullStr Identification of the C-Terminal GH5 Domain from CbCel9B/Man5A as the First Glycoside Hydrolase with Thermal Activation Property from a Multimodular Bifunctional Enzyme
title_full_unstemmed Identification of the C-Terminal GH5 Domain from CbCel9B/Man5A as the First Glycoside Hydrolase with Thermal Activation Property from a Multimodular Bifunctional Enzyme
title_short Identification of the C-Terminal GH5 Domain from CbCel9B/Man5A as the First Glycoside Hydrolase with Thermal Activation Property from a Multimodular Bifunctional Enzyme
title_sort identification of the c-terminal gh5 domain from cbcel9b/man5a as the first glycoside hydrolase with thermal activation property from a multimodular bifunctional enzyme
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4892530/
https://www.ncbi.nlm.nih.gov/pubmed/27258548
http://dx.doi.org/10.1371/journal.pone.0156802
work_keys_str_mv AT wangrong identificationofthecterminalgh5domainfromcbcel9bman5aasthefirstglycosidehydrolasewiththermalactivationpropertyfromamultimodularbifunctionalenzyme
AT gongli identificationofthecterminalgh5domainfromcbcel9bman5aasthefirstglycosidehydrolasewiththermalactivationpropertyfromamultimodularbifunctionalenzyme
AT xuexianli identificationofthecterminalgh5domainfromcbcel9bman5aasthefirstglycosidehydrolasewiththermalactivationpropertyfromamultimodularbifunctionalenzyme
AT qinxing identificationofthecterminalgh5domainfromcbcel9bman5aasthefirstglycosidehydrolasewiththermalactivationpropertyfromamultimodularbifunctionalenzyme
AT marui identificationofthecterminalgh5domainfromcbcel9bman5aasthefirstglycosidehydrolasewiththermalactivationpropertyfromamultimodularbifunctionalenzyme
AT luohuiying identificationofthecterminalgh5domainfromcbcel9bman5aasthefirstglycosidehydrolasewiththermalactivationpropertyfromamultimodularbifunctionalenzyme
AT zhangyongjie identificationofthecterminalgh5domainfromcbcel9bman5aasthefirstglycosidehydrolasewiththermalactivationpropertyfromamultimodularbifunctionalenzyme
AT yaobin identificationofthecterminalgh5domainfromcbcel9bman5aasthefirstglycosidehydrolasewiththermalactivationpropertyfromamultimodularbifunctionalenzyme
AT suxiaoyun identificationofthecterminalgh5domainfromcbcel9bman5aasthefirstglycosidehydrolasewiththermalactivationpropertyfromamultimodularbifunctionalenzyme