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Recombinant Expression and Characterization of the Cytoplasmic Rice β-Glucosidase Os1BGlu4

The Os1BGlu4 β-glucosidase is the only glycoside hydrolase family 1 member in rice that is predicted to be localized in the cytoplasm. To characterize the biochemical function of rice Os1BGlu4, the Os1bglu4 cDNA was cloned and used to express a thioredoxin fusion protein in Escherichia coli. After r...

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Autores principales: Rouyi, Chen, Baiya, Supaporn, Lee, Sang-Kyu, Mahong, Bancha, Jeon, Jong-Seong, Ketudat-Cairns, James R., Ketudat-Cairns, Mariena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4011751/
https://www.ncbi.nlm.nih.gov/pubmed/24802508
http://dx.doi.org/10.1371/journal.pone.0096712
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author Rouyi, Chen
Baiya, Supaporn
Lee, Sang-Kyu
Mahong, Bancha
Jeon, Jong-Seong
Ketudat-Cairns, James R.
Ketudat-Cairns, Mariena
author_facet Rouyi, Chen
Baiya, Supaporn
Lee, Sang-Kyu
Mahong, Bancha
Jeon, Jong-Seong
Ketudat-Cairns, James R.
Ketudat-Cairns, Mariena
author_sort Rouyi, Chen
collection PubMed
description The Os1BGlu4 β-glucosidase is the only glycoside hydrolase family 1 member in rice that is predicted to be localized in the cytoplasm. To characterize the biochemical function of rice Os1BGlu4, the Os1bglu4 cDNA was cloned and used to express a thioredoxin fusion protein in Escherichia coli. After removal of the tag, the purified recombinant Os1BGlu4 (rOs1BGlu4) exhibited an optimum pH of 6.5, which is consistent with Os1BGlu4's cytoplasmic localization. Fluorescence microscopy of maize protoplasts and tobacco leaf cells expressing green fluorescent protein-tagged Os1BGlu4 confirmed the cytoplasmic localization. Purified rOs1BGlu4 can hydrolyze p-nitrophenyl (pNP)-β-d-glucoside (pNPGlc) efficiently (k (cat)/K (m)  =  17.9 mM(−1)·s(−1)), and hydrolyzes pNP-β-d-fucopyranoside with about 50% the efficiency of the pNPGlc. Among natural substrates tested, rOs1BGlu4 efficiently hydrolyzed β-(1,3)-linked oligosaccharides of degree of polymerization (DP) 2–3, and β-(1,4)-linked oligosaccharide of DP 3–4, and hydrolysis of salicin, esculin and p-coumaryl alcohol was also detected. Analysis of the hydrolysis of pNP-β-cellobioside showed that the initial hydrolysis was between the two glucose molecules, and suggested rOs1BGlu4 transglucosylates this substrate. At 10 mM pNPGlc concentration, rOs1BGlu4 can transfer the glucosyl group of pNPGlc to ethanol and pNPGlc. This transglycosylation activity suggests the potential use of Os1BGlu4 for pNP-oligosaccharide and alkyl glycosides synthesis.
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spelling pubmed-40117512014-05-09 Recombinant Expression and Characterization of the Cytoplasmic Rice β-Glucosidase Os1BGlu4 Rouyi, Chen Baiya, Supaporn Lee, Sang-Kyu Mahong, Bancha Jeon, Jong-Seong Ketudat-Cairns, James R. Ketudat-Cairns, Mariena PLoS One Research Article The Os1BGlu4 β-glucosidase is the only glycoside hydrolase family 1 member in rice that is predicted to be localized in the cytoplasm. To characterize the biochemical function of rice Os1BGlu4, the Os1bglu4 cDNA was cloned and used to express a thioredoxin fusion protein in Escherichia coli. After removal of the tag, the purified recombinant Os1BGlu4 (rOs1BGlu4) exhibited an optimum pH of 6.5, which is consistent with Os1BGlu4's cytoplasmic localization. Fluorescence microscopy of maize protoplasts and tobacco leaf cells expressing green fluorescent protein-tagged Os1BGlu4 confirmed the cytoplasmic localization. Purified rOs1BGlu4 can hydrolyze p-nitrophenyl (pNP)-β-d-glucoside (pNPGlc) efficiently (k (cat)/K (m)  =  17.9 mM(−1)·s(−1)), and hydrolyzes pNP-β-d-fucopyranoside with about 50% the efficiency of the pNPGlc. Among natural substrates tested, rOs1BGlu4 efficiently hydrolyzed β-(1,3)-linked oligosaccharides of degree of polymerization (DP) 2–3, and β-(1,4)-linked oligosaccharide of DP 3–4, and hydrolysis of salicin, esculin and p-coumaryl alcohol was also detected. Analysis of the hydrolysis of pNP-β-cellobioside showed that the initial hydrolysis was between the two glucose molecules, and suggested rOs1BGlu4 transglucosylates this substrate. At 10 mM pNPGlc concentration, rOs1BGlu4 can transfer the glucosyl group of pNPGlc to ethanol and pNPGlc. This transglycosylation activity suggests the potential use of Os1BGlu4 for pNP-oligosaccharide and alkyl glycosides synthesis. Public Library of Science 2014-05-06 /pmc/articles/PMC4011751/ /pubmed/24802508 http://dx.doi.org/10.1371/journal.pone.0096712 Text en © 2014 Rouyi 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
Rouyi, Chen
Baiya, Supaporn
Lee, Sang-Kyu
Mahong, Bancha
Jeon, Jong-Seong
Ketudat-Cairns, James R.
Ketudat-Cairns, Mariena
Recombinant Expression and Characterization of the Cytoplasmic Rice β-Glucosidase Os1BGlu4
title Recombinant Expression and Characterization of the Cytoplasmic Rice β-Glucosidase Os1BGlu4
title_full Recombinant Expression and Characterization of the Cytoplasmic Rice β-Glucosidase Os1BGlu4
title_fullStr Recombinant Expression and Characterization of the Cytoplasmic Rice β-Glucosidase Os1BGlu4
title_full_unstemmed Recombinant Expression and Characterization of the Cytoplasmic Rice β-Glucosidase Os1BGlu4
title_short Recombinant Expression and Characterization of the Cytoplasmic Rice β-Glucosidase Os1BGlu4
title_sort recombinant expression and characterization of the cytoplasmic rice β-glucosidase os1bglu4
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4011751/
https://www.ncbi.nlm.nih.gov/pubmed/24802508
http://dx.doi.org/10.1371/journal.pone.0096712
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