• Title/Summary/Keyword: xylB

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Purification and Characterization of $\beta$-Xylosidase B of Bacillus stearothemophilus No.236 Produced by Recombinant Escherichia coli. (재조합 균주 Escherichia coli가 생산하는 Bacillus stearothermophilus No.236 $\beta$-Xylosidase B의 정제 및 특성)

  • 장욱진;조쌍구;최용진
    • Microbiology and Biotechnology Letters
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    • v.26 no.4
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    • pp.297-302
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    • 1998
  • $\beta$-Xylosidase B was produced by Escherichia coli HB101/pKMG12 carrying the xylB gene of Bacillus stearothermophilus No.236 on its recombinant plasmid. The $\beta$-xylosidase B produced was purified by ammonium sulfate fractionation, DEAE-Sepharose CL-6B, Sephacryl S-200 and Superdex 200 HR gel filtration. The purified enzyme showed the highest activity at pH 6.5 and 5$0^{\circ}C$. But, the enzyme was observed to be very sensitive to the pH and temperature of the reaction mixture. The enzyme was activated about 35% of its original activity in the presence of 1 mM of $Mn^{2+}$ but it was completely inhibited by $Ag^{+}$, $Cu^{2+}$and $Hg^{2+}$ions. In contrast with the $\beta$-xylosidase A, the B enzyme was found to have $\alpha$-arabinofuranosidase activity though the activity was fairly low compared with the $\alpha$-arabinofuranosidase produced from the arfI gene of the same Bacillus stearothermophilus. Therefore, $\beta$-xylosidase B is considered to be more suitable than $\beta$-xylosidase A at least for the biodegradation of arabinoxylan. The $K_{m}$ and V$_{max}$ values of the $\beta$-xylosidase B for o-nitrophenyl-$\alpha$-D-xylopyranoside were 6.43 mM and 1.45 $\mu$mole/min, respectively. Molecular mass of the enzyme was determind to be about 54 kDa by SDS-PAGE and 160 kDa by Superdex 200HR gel filtration, indicating that the functional $\beta$-xylosidase B was composed of three identical subunits.s.

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Viability and Luciferase Activity of Freeze-Dried Recombinant Biosensor Cells for Detecting Aromatic Hydrocarbons

  • Kim, Mi-Na;Park, Hoo-Hwi;Lim, Woon-Ki;Shin, Hae-Ja
    • Biomedical Science Letters
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    • v.9 no.4
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    • pp.195-201
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    • 2003
  • Aromatic hydrocarbons are of major concern among genotoxic chemicals due to their toxicity and persistence. Some microorganisms can utilize aromatic hydrocarbons as carbon and energy sources by inducing expression of catabolic operon(s). The XylR regulatory protein activates transcription of the catabolic enzymes to degrade BTEX (benzene, toluene, ethylbenzene, and xylene) from its cognate promoters, Pu and Ps upon exposure of the cells to the aromatic hydrocarbons. The activity of XylR on the promoters was previously monitored using luciferase luc reporter system. The xylR, its promoter Pr and the promoter Po for the phenolic compound catabolic operon were introduced upstream of firefly luciferase luc in the pGL3b vector to generate about 7.1 kb of pXRBTEX. Here E. coli harboring the plasmid was freeze-dried under various conditions to fin,d optimal conditions for storage and transport. The cell viability and luciferase activity were maintained better, when the cells were freeze-dried at -7$0^{\circ}C$ in the addition of the 10% skim milk or 12% sucrose. However, coaddition of protectants such as 10% skim milk plus 10% glucose or 12% sucrose plus 10% glucose, resulted in much better viability and bioluminescence activity compared with the effect of single addition of each protectant. In addition, it was shown that the freeze-dried cells maintained almost intact bioluminescent activities and cell viability for at least 1 week after freeze-drying. This work demonstrated that the properly freeze-dried recombinant bacterial cells could be utilized as a whole-cell biosensor for simple and rapid monitoring of BTEX in the environment.

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Structure and Function of the phnF Gene of Pseudomonas sp. Strain DJ77 (Pseudomonas sp. Strain DJ77에서 phnF 유전자의 구조)

  • 이성훈;김성재;신명수;김치경;임재윤;이기성;민경희;김영창
    • Korean Journal of Microbiology
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    • v.33 no.2
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    • pp.92-96
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    • 1997
  • The 6.8 kb Xhol fragment of chromosomal ONA of Pseudomonas sp. 0177 contains the phnDEFG genes involved in the degradation of polyaromatic hydrocarbons and chlorinated aromatics. Here, we report the nucleotide sequence of the ORF encoding a polypeptide consisted of 143 amino acids with a Mr of 13,859. The nucleotide sequence of the ORF is 99% and 68.6% identical to the downstream region of catE of Sphingomonas sp. strain HV3 and the ORF between xylE and xylG of Sphingomonas yanoikuyae Bl, respectively. The deduced amino acid sequence of the PhnF has 62.3% identity with the amino acid encoded hy orfY region of Citrobacter freundii DSM30040. We now confirm that the ORF is located between the catechol 2,3-dioxygenase (C230), phnE, and 2-hydroxymuconic semialdehyde dehydrogenase (2HMSO), phnG.

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Molecular Cloning and the Nucleotide Sequence of a Bacillus sp. KK-l $\beta$-Xylosidase Gene

  • Chun, Yong-Chin;Jung, Kyung-Hwa;Lee, Jae-Chan;Park, Seung-Hwan;Chung, Ho-Kwon;Yoon, Ki-Hong
    • Journal of Microbiology and Biotechnology
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    • v.8 no.1
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    • pp.28-33
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    • 1998
  • A gene coding for ${\beta}$-xylosidase from thermophilic xylanolytic Bacillus sp. KK-1 was cloned into Escherichia coli using plasmid pBR322. Recombinant plasmid DNAs were isloated from E. coli clones which were capable of hydrolyzing 4-methylumbelliferyl-${\beta}$-D xylopyranoside. Restriction analysis showed the DNAs to share a common insert DNA. Xylo-oligosaccharides, including xylotriose, xylotetraose, xylopentaose, and xylobiose were hydrolyzed to form xylose as an end product by cell-free extracts of the E. coli clones, confirming that the cloned gene from strain KK-1 is ${\beta}$-xylosidase gene. The ${\beta}$-xylosidase gene of strain KK-1 designated as xylB was completely sequenced. The xylB gene consisted of an open reading frame of 1,602 nucleotides encoding a polypeptide of 533 amino acid residues, and a TGA stop codon. The 3' flanking region contained one stem-loop structure which may be involved in transcriptional termination. The deduced amino acid sequence of the KK-1 ${\beta}$-xylosidase was highly homologous to the ${\beta}$-xylosidases of Bacillus subtilis and Bacillus pumilus, but it showed no similarity to a thermostable ${\beta}$-xylosidase from Bacillus stearothermophilus.

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Enhancement of Immunostimulation by Fractionation of Active Polysaccharide from Fermented Ginseng with Phellinus linteus Mycelium in Solid Culture (면역활성 증진을 위한 수삼의 상황버섯 균사체 고체배양으로 조제된 수삼발효물로부터 활성 다당류 분획)

  • Kim, Hoon;Yoon, Hyun-Seok;Jeong, Jae-Hyun;Jeong, Heon-Sang;Hwang, Jong-Hyun;Yu, Kwang-Won
    • Korean Journal of Food Science and Technology
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    • v.42 no.2
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    • pp.223-232
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    • 2010
  • Crude polysaccharide (WG-PL-CP) was fractionated from fermented ginseng with Phellinus linteus in solid culture to enhance the immunostimulation of ginseng. WG-PL-CP produce three active polysaccharide-rich fractions (WG-PL-CP-II, III, and IV) on DEAE-Sepharose CL-6B ($Cl^-$ form). WG-PL-CP-III displayed higher mitogenic activity (1.98-fold of the saline control at $100\;{\mu}g/mL$) than did WG-CP-III or PL-CP-III (1.60- or 1.65-fold, respectively), and potent intestinal immune system modulating activity through Peyer's patch was obtained by WG-PL-CP-IV only (1.56-fold). Meanwhile, WG-PL-CP-II and III significantly enhanced macrophage stimulating activity (2.01- and 1.94-fold) compared to WG-CP-II and III (1.73- and 1.66-fold) or PL-CP-II and III (1.79- and 1.72-fold). In addition, WG-PL-CP-III and IV mainly contained neutral sugar (73.5 and 67.3%) and uronic acid (23.2 and 24.6%). Component sugar analysis also showed that WG-PL-CP-III consisted mainly of uronic acid as well as the neutral sugars Glc, Ara, Gal, Rha and Xyl (molar ratio of 0.81:1.00:0.49:0.42:0.28:0.20), whereas WG-PL-CP-IV was mainly comprised of uronic acid, Ara, Rha, Gal, Xyl and Glc (1.00:0.75:0.69:0.63:0.42:0.34). Therefore, it is assumed that these active polysaccharides play an important role in enhancing the immunostimulation of fermented ginseng with P. linteus in solid culture.

Pseudomonas sp. strain DJ77 균주에서 extradiol dioxygenase 를 암호화하고 있는 phnE 유전자의 염기배열

  • 김영창;신명수;윤길상;박영순;김욱현
    • Korean Journal of Microbiology
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    • v.30 no.1
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    • pp.8-14
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    • 1992
  • Nucleotide Sequence of phnE Gene Encoding Extradiol Dioxygenase fromPseudomonas sp. Strain DJ77Kim, Young-Chang'.", Myeong-Su Shin1, Kil-Sang Younl, Young-Soon Park1, andUg-Hyeon Kim'.' (Department of Microbiology, C'hungbuk National University.Cheongju 360-763, KOREA. and 'Research Center for Molecular Microbiology,Seoul National University)nal University)

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Purification and Characterization of the Bacillus sp. KK-l $\beta$-Xylosidase from a Recombinant Escherichia coli

  • Jung, Kyung-Hwa;Chun, Yong-Chin;Lee, Jae-Chan;Park, Seung-Hwan;Yoon, Ki-Hong
    • Journal of Microbiology and Biotechnology
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    • v.8 no.3
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    • pp.258-263
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    • 1998
  • ${\beta}$-Xylosidase was purified from the recombinant Escherichia coli carrying the Bacillus sp. KK-1 ${\beta}$-xylosidase gene (xylB). The molecular mass of the purified enzyme was estimated to be 62 kDa by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. However, the apparent molecular mass of the ${\beta}$-xylosidase was 140 kDa, indicating that the native ${\beta}$-xylosidase has an oligomeric structure composed of two identical subunits. The isoelectric point was determined to be pH 5.5. The enzyme was highly active on p-nitrophenyl-$\beta$-D-xylopyranoside but it barely hydrolyzed xylan substrates, and did not exhibit activity towards carboxymethylcellulose and p-nitrophenyl-${\beta}$-D- glucopyranoside. The enzyme had a pH optimum for its activity at pH 6.5 and a temperature optimum at $40^{\circ}C$. The enzyme activity was completely inhibited by the presence of $Hg^{++}$, and also markedly inhibited by D-xylose and D-glucose.

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Purification and Characterization of Exo-xylanase from Escherichia coli Cells Harboring the Recombinant Plasmid pMGl (재조합 균주 Escherichia coli가 생산하는 Bacillus stearothermophilus Exo-xylanase의 정제 및 특성)

  • 문애란;최용진
    • Microbiology and Biotechnology Letters
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    • v.20 no.5
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    • pp.574-582
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    • 1992
  • Exo-xylanase encoded by the xylA gene of Bacillus stearothermoPhillus was produced from Escherichia coli ]M109 carrying a recombinant plasmid pMGL Synthesis of the enzyme was observed to be cell-associated, and about 94% of the enzyme synthesized was located in the cytoplasmic region. The maximum production was attained when the E. coli strain was grown at $37^{\circ}C$ for 8 hours on the medium containing 0.5% fructose, 1.0% tryptone, 1.0% sodium chloride, and 0.5% yeast extract. The exo-xylanase was purified to homogeneity using a combination of salting out with ammonium sulfate, DEAE-Sepharose CL-6B ion exchange chromatography, Sephadex G-IOO gel filtration, and Sephadex G-150 gel filtration. The' purified enzyme was most active at pH 6.0 and $45^{\circ}C$. $Ca^{2+}$ and $Co^{2+}$ activated the exo-xylanase activity by about 20% while $Ag^{2+}$, $Fe^{2+}$, $Mg^{2+}$ and $Zn^{2+}$ inhibited the enzyme activity by up to 60%. The $K_m$, value on p-nitrophenyl-$\beta$-D-xylanopyranoside was 2.75 mM. The enzyme had a pI value of 4.7. The estimated molecular weight of the native protein was 200,000 daL SDS-polyacrylamide gel electrophoresis analysis suggested that the native enzyme was a trimer composed of three identical 66,000 da!. polypeptides. The purified enzyme efficiently converted all the xylo-oligosaccharides tested to xylose. It was also confirmed that the enzyme split xylans in an exo-manner even though the degree of hydrolysis was fairly low. The xylanolytic enzyme was, therefore, classified to be one of the few bacterial exo-xylanases lacking transferase activity.

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