Please use this identifier to cite or link to this item: https://ir.swu.ac.th/jspui/handle/123456789/13410
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dc.contributor.authorPhuengmaung P.
dc.contributor.authorFujiwara D.
dc.contributor.authorSukhumsirichart W.
dc.contributor.authorSakamoto T.
dc.date.accessioned2021-04-05T03:23:47Z-
dc.date.available2021-04-05T03:23:47Z-
dc.date.issued2018
dc.identifier.issn1410229
dc.identifier.other2-s2.0-85033579354
dc.identifier.urihttps://ir.swu.ac.th/jspui/handle/123456789/13410-
dc.identifier.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85033579354&doi=10.1016%2fj.enzmictec.2017.11.002&partnerID=40&md5=a00043be6cec5ecd04bad8b108f11ebb
dc.description.abstractIn previous reports, we characterized four endo-xylanases produced by Streptomyces sp. strain SWU10 that degrade xylans to several xylooligosaccharides. To obtain a set of enzymes to achieve complete xylan degradation, a β-D-xylosidase gene was cloned and expressed in Escherichia coli, and the recombinant protein, named rSWU43A, was characterized. SWU43A is composed of 522 amino acids and does not contain a signal peptide, indicating that the enzyme is an intracellular protein. SWU43A was revealed to contain a Glyco_hydro_43 domain and possess the three conserved amino acid residues of the glycoside hydrolase family 43 proteins. The molecular mass of rSWU43A purified by Ni-affinity column chromatography was estimated to be 60 kDa. The optimum reaction conditions of rSWU43A were pH 6.5 and 40 °C. The enzyme was stable up to 40 °C over a wide pH range (3.1–8.9). rSWU43A activity was enhanced by Fe2+ and Mn2+ and inhibited by various metals (Ag+, Cd2+, Co2+, Cu2+, Hg2+, Ni2+, and Zn2+), D-xylose, and L-arabinose. rSWU43A showed activity on p-nitrophenyl-β-D-xylopyranoside and p-nitrophenyl-α-L-arabinofuranoside substrates, with specific activities of 0.09 and 0.06 U/mg, respectively, but not on any xylosidic or arabinosidic polymers. rSWU43A efficiently degraded β-1,3-xylooligosaccharides to produce xylose but showed little activity towards β-1,4-xylobiose, with specific activities of 1.33 and 0.003 U/mg, respectively. These results demonstrate that SWU43A is a β-1,3-D-xylosidase (EC 3.2.1.72), which to date has only been described in the marine bacterium Vibrio sp. Therefore, rSWU43A of Streptomyces sp. is the first β-1,3-xylosidase found in gram-positive bacteria. SWU43A could be useful as a specific tool for the structural elucidation and production of xylose from β-1,3-xylan in seaweed cell walls. © 2017 Elsevier Inc.
dc.subjectAmino acids
dc.subjectCloning
dc.subjectColumn chromatography
dc.subjectEnzyme activity
dc.subjectEscherichia coli
dc.subjectGene encoding
dc.subjectHydrolases
dc.subjectSeaweed
dc.subjectSugars
dc.subjectXylose
dc.subjectAmino acid residues
dc.subjectGlycoside hydrolase family 43
dc.subjectGram-positive bacterium
dc.subjectIntracellular proteins
dc.subjectOptimum reaction conditions
dc.subjectStreptomyces
dc.subjectStructural elucidation
dc.subjectXylooligosaccharides
dc.subjectRecombinant proteins
dc.subject4 nitrophenyl alpha arabinofuranoside
dc.subject4 nitrophenyl beta arabinofuranoside
dc.subjectarabinose
dc.subjectbacterial enzyme
dc.subjectbeta 1,3 dextro xylosidase
dc.subjectcadmium
dc.subjectcobalt
dc.subjectcopper
dc.subjectglycosidase
dc.subjectmercury
dc.subjectsilver
dc.subjectunclassified drug
dc.subjectxylose
dc.subjectzinc
dc.subjectbacterial protein
dc.subjectglucuronic acid
dc.subjectoligosaccharide
dc.subjectrecombinant protein
dc.subjectxylan
dc.subjectxylan endo 1,3 beta xylosidase
dc.subjectxylooligosaccharide
dc.subjectArticle
dc.subjectcolumn chromatography
dc.subjectenzyme activity
dc.subjectenzyme analysis
dc.subjectenzyme stability
dc.subjectmatrix assisted laser desorption ionization time of flight mass spectrometry
dc.subjectmolecular cloning
dc.subjectmolecular weight
dc.subjectnonhuman
dc.subjectnucleotide sequence
dc.subjectpH
dc.subjectStreptomyces
dc.subjecttemperature
dc.subjectVibrio
dc.subjectamino acid sequence
dc.subjectbacterial gene
dc.subjectbiotechnology
dc.subjectchemistry
dc.subjectenzyme specificity
dc.subjectenzymology
dc.subjectgenetics
dc.subjectkinetics
dc.subjectmetabolism
dc.subjectsequence homology
dc.subjectStreptomyces
dc.subjectAmino Acid Sequence
dc.subjectBacterial Proteins
dc.subjectBiotechnology
dc.subjectCloning, Molecular
dc.subjectEnzyme Stability
dc.subjectGenes, Bacterial
dc.subjectGlucuronates
dc.subjectKinetics
dc.subjectMolecular Weight
dc.subjectOligosaccharides
dc.subjectRecombinant Proteins
dc.subjectSequence Homology, Amino Acid
dc.subjectStreptomyces
dc.subjectSubstrate Specificity
dc.subjectXylan Endo-1,3-beta-Xylosidase
dc.subjectXylans
dc.titleIdentification and characterization of the first β-1,3-D-xylosidase from a gram-positive bacterium, Streptomyces sp. SWU10
dc.typeArticle
dc.rights.holderScopus
dc.identifier.bibliograpycitationEnzyme and Microbial Technology. Vol 112, (2018), p.72-78
dc.identifier.doi10.1016/j.enzmictec.2017.11.002
Appears in Collections:Scopus 1983-2021

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