• Title/Summary/Keyword: thermophilic enzyme

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Aerobic Liquid Fermentation of Residual Food Waste by Thermophilic Bacteria (고온세균을 이용한 남은 음식물의 호기적 액상발효)

  • Ryu, Seung-Yong;Park, Myoung-Ju;Kim, So-Young;Lee, Ki-Young
    • Journal of the Korea Organic Resources Recycling Association
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    • v.10 no.3
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    • pp.126-131
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    • 2002
  • For the probiotic feed production from residual food waste, aerobic liquid fermentation was conducted by thermophilic bacteria. 11 Strains of bacteria were isolated from several soil sources and residual food waste. Screening was carried by shaking incubator for the separation of thermophilic strain at $55^{\circ}C$. The isolated strains were tested for enzyme activities such as ${\alpha}$-amylase and protease. 6 Bacterial strains were chosen and were adapted by repeated fermentation processes in food waste substrate. The viable cell count of them at final fermentation stages were shown as $3-7{\times}10^9/ml$ in 2L-jar fermenter. Among them B3, B6 showed higher enzyme activity. By the mixed fermentation of B3, B6 and Bacillus stearothermophilus, the highest viable cell count reached to $1.4{\times}10^{10}/ml$ in 8 hours.

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Purification and Characterization of Thermostable Agarase from Bacillus sp. BI-3, a Thermophilic Bacterium Isolated from Hot Spring

  • Li, Jiang;Sha, Yujie;Seswita-Zilda, Dewi;Hu, Qiushi;He, Peiqing
    • Journal of Microbiology and Biotechnology
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    • v.24 no.1
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    • pp.19-25
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    • 2014
  • An extracellular agarase was purified from Bacillus sp. BI-3, a thermophilic agar-degrading bacterium isolated from a hot spring in Indonesia. The purified agarase revealed a single band on sodium dodecyl sulfate-polyacrylamide gel electrophoresis, with an apparent molecular mass of 58 kDa. The optimum pH and temperature of the agarase were 6.4 and $70^{\circ}C$, respectively. The activity of the agarase was stable at high temperatures, and more than 50% activity was retained at $80^{\circ}C$ for 15 min. Furthermore, the enzyme was stable in the pH range of 5.8-8.0, and more than 60% of the residual activity was retained. Significant activation of the agarase was observed in the presence of $K^+$, $Na^+$, $Ca^{2+}$, $Mg^{2+}$, and $Sr^{2+}$; on the other hand, $Ba^{2+}$, $Zn^{2+}$, $Cu^{2+}$, $Mn^{2+}$, $Co^{2+}$, $Fe^{2+}$, and EDTA inhibited or inactivated the enzyme activity. The components of the hydrolytic product analyzed by thin-layer chromatography showed that the agarase mainly produced neoagarobiose. This study is the first to present evidence of agarolytic activity in aerobic thermophilic bacteria.

Regulation of $\beta$-Galactosidase Biosynthesis in Alkalophilic, Thermophilic Bacillus sp. TA-11 (호알칼리성, 고온성 Bacillus sp. TA-11의 $\beta$-galactosidase의 생합성 조절)

  • Lee, Jong-Su;Lee, Hyang-Sook
    • The Journal of Natural Sciences
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    • v.5 no.2
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    • pp.13-17
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    • 1992
  • Regulation of $\beta$-galactosidase biosynthesis was studied with alkalophilic, thermophilic Bacillus sp. TA-11. Biosynthesis of the enzyme was effectively induced by lactose and some low level by isoprophyl-$\beta$-D-thiogalactopyranoside(IPTG). When 30mM glucose was added at the different intervals to the culture that had been in contact with lactose, the different levels of the enzyme synthesis were observed. So, this suggests that glucose interfered with the entry of the lactose into the cells.The glucose inhibitory effect was not relieved by adding cAMP to the culture.

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Production of $\beta$-Galactosidase from Alkalophilic, Thermophilic Baillus sp. TA-11 (호알칼리성, 고온성 Bacillus sp. TA-11에 의한 $\beta$-Galactosidase의 생산)

  • 최영준;이종수
    • KSBB Journal
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    • v.9 no.4
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    • pp.400-405
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    • 1994
  • The conditions for ${\beta}$-galactosidase production from alkalophilic, thermophilic Bacillus sp. TA-11 were investigated. The maximal enzyme production was obtained when the strain was cultured at $50^{\circ}C$ for 5 days with fed-batch culture in the optimal medium containing 1.5% lactose, 0.6% yeast extract 0.15% $K_2HP0_4$and initial pH 9.5, and then final enzyme activity under the above conditions was 5200 unit/ml of cell free extract.

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Characterization of Thermostable Tyrosine Phenol-Lyase from an Obligatory Symbiotic Thermophile, Symbiobacterium sp. SC-1

  • Lee, Seung-Goo;Hong, Seung-Pyo;Kwak, Mi-Sun;Esaki, Nobuyoshi;Sung, Moon-Hee
    • BMB Reports
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    • v.32 no.5
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    • pp.480-485
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    • 1999
  • Tyrosine phenol-lyase of thermophilic Symbiobacterium sp. SC-1, which is obligately and symbiotically dependent on thermophilic Bacillus sp. SK-1, was purified and characterized. The enzyme is composed of four identical subunits and contains approximately 1 mol of pyridoxal 5'-phosphate (PLP) per mol subunit as a cofactor. The enzyme showed absorption maxima at 330 and 420 nm, and lost this absorption profile by treatment with phenylhydrazine. The apparent dissociation constsnt, $K'_D$, for PLP was determined with the apoenzyme to be about $1.2\;{\mu}M$. The isoelectric point was 4.9. The optimal temperature and pH for the $\alpha,\beta$-elimination of L-tyrosine were found to be $80^{\circ}C$ and pH 8.0, respectively. The substrate specificity of the enzyme was very broad: L-amino acids including L-tyrosine, 3,4-dihydroxyphenyl-L-alanine (L-DOPA), L-cysteine, L-serine, S-methyl-L-cysteine, $\beta$-chloro-L-alanine, and S-(o-nitrophenyl)-L-cysteine all served as substrates. D-Tyrosine and D-serine were also decomposed into pyruvic acid and ammonia at rates of 7% and 31% relative to their corresponding L-enantiomers, respectively. D-Alanine, which was inert as a substrate in a, $\beta$-elimination, was the only D-amino acid racemized by the enzyme. The $K_m$ values for L-tyrosine, L-DOPA, S-(o-nitrophenyl)-L-cysteine, $\beta$-chloro-L-alanine, and S-methyl-L-cysteine were 0.19, 9.9, 0.36, 12, and 5.5 mM, respectively.

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Purification and Properties of Endo-$\beta$-1, 4-glucanase from Thermophilic Clostridium thermocellum (고온성 Clostridium thermocellum이 생산하는 Endo-$\beta$-1, 4-glucanase의 정제 및 성질)

  • 김욱한;하지홍;정기택;이용현
    • Korean Journal of Microbiology
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    • v.25 no.2
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    • pp.157-164
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    • 1987
  • A new endo-$\beta$-1, 4-glucanase was purified from the culture filtrate of thermophilic anaerobic Clostridium thermocellum. The purification procedure included two steps of ion exchange chromatography with DEAD-Sephadex A-50 and gel filtration chromatography with Sephadex G-75. Even though the 56 fold increase in CMCase specific activity was obtained, the actually recovered enzyme activity was relatively lower level of 0.7%. Judging from the two bands in SDS-polyacrylamide gel electrophoresis, the endo-$\beta$-1, 4-glucanase consists of two subunits whose M.W. are 38,000 and 58,000, respectively. The optimum pH and temperature were determined to be 5.0 and $65^{\circ}C$, respectively. The enzyme was stable up to $70^{\circ}C$, but inactivated at $80^{\circ}C$. The kinetic parameters of the separated fraction were also determined. The purified enzyme did not show any significant hydrolytic activity against the highly ordered crystalline cellulose as well as filter paper.

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Characterization of a Recombinant Thermostable Xylanase from Hot Spring Thermophilic Geobacillus sp. TC-W7

  • Liu, Bin;Zhang, Ningning;Zhao, Chao;Lin, Baixue;Xie, Lianhui;Huang, Yifan
    • Journal of Microbiology and Biotechnology
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    • v.22 no.10
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    • pp.1388-1394
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    • 2012
  • A xylanase-producing thermophilic strain, Geobacillus sp. TC-W7, was isolated from a hot spring in Yongtai (Fuzhou, China). Subsequently, the xylanase gene that encoded 407 amino acids was cloned and expressed. The recombinant xylanase was purified by GST affinity chromatography and exhibited maximum activity at $75^{\circ}C$ and a pH of 8.2. The enzyme was active up to $95^{\circ}C$ and showed activity over a wide pH range of 5.2 to 10.2. Additionally, the recombinant xylanase showed high thermostability and pH stability. More than 85% of the enzyme's activity was retained after incubation at $70^{\circ}C$ for 90 min at a pH of 8.2. The activity of the recombinant xylanase was enhanced by treatment with 10 mM enzyme inhibitors (DDT, Tween-20, 2-Me, or TritonX-100) and was inhibited by EDTA or PMSF. Its functionality was stable in the presence of $Li^+$, $Na^+$, and $K^+$, but inhibited by $Hg^{2+}$, $Ni^{2+}$, $Co^{2+}$, $Cu^{2+}$, $Zn^{2+}$, $Pb^{2+}$, $Fe^{3+}$, and $Al^{3+}$. The functionality of the crude xylanase had similar properties to the recombinant xylanase except for when it was treated with $Al^{2+}$ or $Fe^{2+}$. The enzyme might be a promising candidate for various industrial applications such as the biofuel, food, and paper and pulp industries.

Overexpression, Purification, and Biochemical Characterization of the Thermostable NAD-dependent Alcohol Dehydrogenase from Bacillus stearothermophilus

  • Shim, Eun-Jung;Jeon, Sang-Hoon;Kong, Kwang-Hoon
    • Journal of Microbiology and Biotechnology
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    • v.13 no.5
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    • pp.738-744
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    • 2003
  • The gene ADH encoding NAD-dependent alcohol dehydrogenase from Bacillus stearothennophilus was cloned and overexpressed as a GST fusion protein at a high level in Escherichia coli. The expressed fusion protein was purified simply by glutathione affinity chromatography. GST fusion protein was then cleaved by thrombin, while soluble enzyme was further purified by glutathione affinity chromatography. The recombinant enzyme had the same elctrophoretic mobility as the native enzyme from Bacillus stearothennophilus. The recombinant enzyme catalyzed the oxidation of a number of alcohols and exhibited high activities towards secondary alcohols. The $K_m\;and\;V_{max}$ values of the recombinant enzyme for ethanol were 5.11 mM and 61.35 U/mg, respectively. Pyridine and imidazole notably inhibited the enzymatic activity. The activity of the recombinant enzyme optimally proceeded at pH 9.0 and $70^{\circ}C$. The midpoint of the temperature-stability curve for the recombinant enzyme was approximately $68^{\circ}C$, and the enzyme was not completely inactivated even at $85^{\circ}C$. The recombinant enzyme showed a high resistance towards denaturing agents (0.05% SDS, 0.1 M urea). Therefore, due to its stability and relatively broad substrate specificity, the recombinant enzyme could be utilized in bio-industrial processes and biosensors.

Stiudies on Enzyme of the Thermophilic Mold -(Part 4) Xylanase and Laminaranase from Thermophilic Mold- (고온성 사상균의 효소에 관한 연구 -(제4보) 고온성 사상균의 Xylanase 와 Laminaranase-)

  • Chung, Song-Hyo;Lee, Ke-Ho
    • Applied Biological Chemistry
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    • v.15 no.3
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    • pp.207-211
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    • 1972
  • In order to investigate the action of thermophilic fungi on the xylan and its related substances, xylanase and laminaranase were examined using Myriococcum albomyces. In the extract from bran culture of Myriococcum albomyces, xylanase and laminaranase activity were recognized. 1) The optimum pH for xylanase and laminaranase activity were found to be pH 5.0 and pH 6.0. 2) The optimum temperature for xylanase and laminaranase activity were found to be $55^{\cicr}C$. 3) Thermal stability of xylanase for 55 minutes at $65^{\cicr}C$ and laminaranase for 60 minutes at $65^{\cicr}C$ did not influence their stability.

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Purification and Characterization of a Thermostable Alkaline Phosphatase Produced by Thermus caldophilus GK24

  • Kim, You-Jin;Park, Tae-Shin;Kim, Hyun-Kyu;Kwon, Suk-Tae
    • BMB Reports
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    • v.30 no.4
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    • pp.262-268
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    • 1997
  • The thermophilic and thermostable alkaline phosphatase was purified to near homogeneity from the osmotic lysis of Thermus caldophilus GK24, The purified enzyme had an apparent molecular mass of 108, 000 Da and consisted of two subunits of 54,000 Da. lsoelectric-focusing analysis of the purified enzyme showed a pi of 7.3. The enzyme contained two Cys residues, and its amino acids composition was quite different from that of Thermus aquaticus YT-1 alkaline phosphatase and Escherichia coli alkaline phosphatase, The optimum pH and temperature of the enzyme were 11.0-11.5 and $80^{\circ}C$ respectively. The enzyme was stable in the pH range of 9.0-12.0 at $25^{\circ}C$ for 36 h. and the half-life at $80^{\circ}C$ (pH 11.0) was 6 h. The enzyme was activated by $MgCl_2$ and inhibited by EDTA. With ${\rho}-nitrophenyl\;phosphate\;({\rho}NPP)$ as the substrate, the enzyme had a Michaelis constant $(K_m) $of $3.6{\times}10^{-5}M$, The enzyme preferentially hydrolyzed the phosphomonoester bond of AMP in ribonucleotides and glycerophosphate.

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