Cargando…

Functional and Structural Analysis of a β-Glucosidase Involved in β-1,2-Glucan Metabolism in Listeria innocua

Despite the presence of β-1,2-glucan in nature, few β-1,2-glucan degrading enzymes have been reported to date. Recently, the Lin1839 protein from Listeria innocua was identified as a 1,2-β-oligoglucan phosphorylase. Since the adjacent lin1840 gene in the gene cluster encodes a putative glycoside hyd...

Descripción completa

Detalles Bibliográficos
Autores principales: Nakajima, Masahiro, Yoshida, Ryuta, Miyanaga, Akimasa, Abe, Koichi, Takahashi, Yuta, Sugimoto, Naohisa, Toyoizumi, Hiroyuki, Nakai, Hiroyuki, Kitaoka, Motomitsu, Taguchi, Hayao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4757417/
https://www.ncbi.nlm.nih.gov/pubmed/26886583
http://dx.doi.org/10.1371/journal.pone.0148870
_version_ 1782416454376751104
author Nakajima, Masahiro
Yoshida, Ryuta
Miyanaga, Akimasa
Abe, Koichi
Takahashi, Yuta
Sugimoto, Naohisa
Toyoizumi, Hiroyuki
Nakai, Hiroyuki
Kitaoka, Motomitsu
Taguchi, Hayao
author_facet Nakajima, Masahiro
Yoshida, Ryuta
Miyanaga, Akimasa
Abe, Koichi
Takahashi, Yuta
Sugimoto, Naohisa
Toyoizumi, Hiroyuki
Nakai, Hiroyuki
Kitaoka, Motomitsu
Taguchi, Hayao
author_sort Nakajima, Masahiro
collection PubMed
description Despite the presence of β-1,2-glucan in nature, few β-1,2-glucan degrading enzymes have been reported to date. Recently, the Lin1839 protein from Listeria innocua was identified as a 1,2-β-oligoglucan phosphorylase. Since the adjacent lin1840 gene in the gene cluster encodes a putative glycoside hydrolase family 3 β-glucosidase, we hypothesized that Lin1840 is also involved in β-1,2-glucan dissimilation. Here we report the functional and structural analysis of Lin1840. A recombinant Lin1840 protein (Lin1840r) showed the highest hydrolytic activity toward sophorose (Glc-β-1,2-Glc) among β-1,2-glucooligosaccharides, suggesting that Lin1840 is a β-glucosidase involved in sophorose degradation. The enzyme also rapidly hydrolyzed laminaribiose (β-1,3), but not cellobiose (β-1,4) or gentiobiose (β-1,6) among β-linked gluco-disaccharides. We determined the crystal structures of Lin1840r in complexes with sophorose and laminaribiose as productive binding forms. In these structures, Arg572 forms many hydrogen bonds with sophorose and laminaribiose at subsite +1, which seems to be a key factor for substrate selectivity. The opposite side of subsite +1 from Arg572 is connected to a large empty space appearing to be subsite +2 for the binding of sophorotriose (Glc-β-1,2-Glc-β-1,2-Glc) in spite of the higher K(m) value for sophorotriose than that for sophorose. The conformations of sophorose and laminaribiose are almost the same on the Arg572 side but differ on the subsite +2 side that provides no interaction with a substrate. Therefore, Lin1840r is unable to distinguish between sophorose and laminaribiose as substrates. These results provide the first mechanistic insights into β-1,2-glucooligosaccharide recognition by β-glucosidase.
format Online
Article
Text
id pubmed-4757417
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-47574172016-02-26 Functional and Structural Analysis of a β-Glucosidase Involved in β-1,2-Glucan Metabolism in Listeria innocua Nakajima, Masahiro Yoshida, Ryuta Miyanaga, Akimasa Abe, Koichi Takahashi, Yuta Sugimoto, Naohisa Toyoizumi, Hiroyuki Nakai, Hiroyuki Kitaoka, Motomitsu Taguchi, Hayao PLoS One Research Article Despite the presence of β-1,2-glucan in nature, few β-1,2-glucan degrading enzymes have been reported to date. Recently, the Lin1839 protein from Listeria innocua was identified as a 1,2-β-oligoglucan phosphorylase. Since the adjacent lin1840 gene in the gene cluster encodes a putative glycoside hydrolase family 3 β-glucosidase, we hypothesized that Lin1840 is also involved in β-1,2-glucan dissimilation. Here we report the functional and structural analysis of Lin1840. A recombinant Lin1840 protein (Lin1840r) showed the highest hydrolytic activity toward sophorose (Glc-β-1,2-Glc) among β-1,2-glucooligosaccharides, suggesting that Lin1840 is a β-glucosidase involved in sophorose degradation. The enzyme also rapidly hydrolyzed laminaribiose (β-1,3), but not cellobiose (β-1,4) or gentiobiose (β-1,6) among β-linked gluco-disaccharides. We determined the crystal structures of Lin1840r in complexes with sophorose and laminaribiose as productive binding forms. In these structures, Arg572 forms many hydrogen bonds with sophorose and laminaribiose at subsite +1, which seems to be a key factor for substrate selectivity. The opposite side of subsite +1 from Arg572 is connected to a large empty space appearing to be subsite +2 for the binding of sophorotriose (Glc-β-1,2-Glc-β-1,2-Glc) in spite of the higher K(m) value for sophorotriose than that for sophorose. The conformations of sophorose and laminaribiose are almost the same on the Arg572 side but differ on the subsite +2 side that provides no interaction with a substrate. Therefore, Lin1840r is unable to distinguish between sophorose and laminaribiose as substrates. These results provide the first mechanistic insights into β-1,2-glucooligosaccharide recognition by β-glucosidase. Public Library of Science 2016-02-17 /pmc/articles/PMC4757417/ /pubmed/26886583 http://dx.doi.org/10.1371/journal.pone.0148870 Text en © 2016 Nakajima 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
Nakajima, Masahiro
Yoshida, Ryuta
Miyanaga, Akimasa
Abe, Koichi
Takahashi, Yuta
Sugimoto, Naohisa
Toyoizumi, Hiroyuki
Nakai, Hiroyuki
Kitaoka, Motomitsu
Taguchi, Hayao
Functional and Structural Analysis of a β-Glucosidase Involved in β-1,2-Glucan Metabolism in Listeria innocua
title Functional and Structural Analysis of a β-Glucosidase Involved in β-1,2-Glucan Metabolism in Listeria innocua
title_full Functional and Structural Analysis of a β-Glucosidase Involved in β-1,2-Glucan Metabolism in Listeria innocua
title_fullStr Functional and Structural Analysis of a β-Glucosidase Involved in β-1,2-Glucan Metabolism in Listeria innocua
title_full_unstemmed Functional and Structural Analysis of a β-Glucosidase Involved in β-1,2-Glucan Metabolism in Listeria innocua
title_short Functional and Structural Analysis of a β-Glucosidase Involved in β-1,2-Glucan Metabolism in Listeria innocua
title_sort functional and structural analysis of a β-glucosidase involved in β-1,2-glucan metabolism in listeria innocua
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4757417/
https://www.ncbi.nlm.nih.gov/pubmed/26886583
http://dx.doi.org/10.1371/journal.pone.0148870
work_keys_str_mv AT nakajimamasahiro functionalandstructuralanalysisofabglucosidaseinvolvedinb12glucanmetabolisminlisteriainnocua
AT yoshidaryuta functionalandstructuralanalysisofabglucosidaseinvolvedinb12glucanmetabolisminlisteriainnocua
AT miyanagaakimasa functionalandstructuralanalysisofabglucosidaseinvolvedinb12glucanmetabolisminlisteriainnocua
AT abekoichi functionalandstructuralanalysisofabglucosidaseinvolvedinb12glucanmetabolisminlisteriainnocua
AT takahashiyuta functionalandstructuralanalysisofabglucosidaseinvolvedinb12glucanmetabolisminlisteriainnocua
AT sugimotonaohisa functionalandstructuralanalysisofabglucosidaseinvolvedinb12glucanmetabolisminlisteriainnocua
AT toyoizumihiroyuki functionalandstructuralanalysisofabglucosidaseinvolvedinb12glucanmetabolisminlisteriainnocua
AT nakaihiroyuki functionalandstructuralanalysisofabglucosidaseinvolvedinb12glucanmetabolisminlisteriainnocua
AT kitaokamotomitsu functionalandstructuralanalysisofabglucosidaseinvolvedinb12glucanmetabolisminlisteriainnocua
AT taguchihayao functionalandstructuralanalysisofabglucosidaseinvolvedinb12glucanmetabolisminlisteriainnocua