• Title/Summary/Keyword: Streptomyces sp. P20

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Production and Purification of Alkaline Protease from Streptomyces sp. (Streptomyces속 균주가 생성하는 Alkaline Protease의 생산 및 정제)

  • Choi, Cheong;Chung, Yung-Gun;Sung, Sam-Kyung;Choi, Kwang-Soo;Lee, Jae-Sung;Cho, Young-Je;Kwon, Oh-Jin
    • Microbiology and Biotechnology Letters
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    • v.20 no.2
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    • pp.169-177
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    • 1992
  • An alkaline protease producing microorganism was isolated from soil and identified as Streptomyces griseus HC-1141. The optimum culture condition of Streptomyces griseus HC- 1141 for the production of alkaline protease was as follows; 0.5% casein, 0.05% ammonium chloride, 0.1% ferrous sulfate. 2.0% lactose, pH 8.0 and 84 hrs. The enzyme was purified about 53 folds by ammonium sulfate treatment, DEAE-cellulose ion exchange chromatography and gel filtratioo on Sephadex G-150. The homogeneity of the purified enzyme was verified by polyacrylamide gel electrophoresis. The molecular weight was estimated to be 31,000 on sodium dodecyl sulfate polyacrylamide gel electrophoresis. This enzyme consists of glycine and glutamic acid as major amino acids. The N-terminal and C-terminal residues of the alkaline protease were leucine and histidine respectively.

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Activity of Anti-Methicillin Resistant Staphylococcus aureus Compound Derived Marine Actinomycetes and Its Synergistic Effect (해양 방선균 유래 항 Methicillin Resistant Staphylococcus aureus 물질의 활성 및 상승 효과)

  • Seong-Yun, Jeong
    • Journal of Marine Bioscience and Biotechnology
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    • v.14 no.2
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    • pp.143-154
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    • 2022
  • We isolated marine actinomycetes, strain D-5 which produces anti-methicillin resistant Staphylococcus aureus (anti-MRSA) compound. Streptomyces sp. D-5 relatively grew well in the 20~25℃, pH 8.0, and NaCl 3.0%. The ethyl acetate extract of D-5 culture was separated by C18 ODS open column and reverse phase HPLC to yield anti-MRSA compound. The molecular weight of this compound was determined to be 898 by a Liquid chromatograph-mass spectrometer (LC-MS). Compared with penicillin G, this compound showed significant anti-MRSA activity. It also exhibited an inhibition zone of 26 mm at a concentration of 64 ㎍/disk and an inhibition zone of 16 mm at a concentration of 16 ㎍/disk against the MRSA KCCM 40511. Furthermore, the co-treatment of HPLC peak 5 compound and vancomycin caused a more rapid decrease in MRSA cells than each compound alone. It showed 86.8% growth inhibition activity within 12 hours at a low concentration of 50 ㎍/mL during co-treatment, and 97.1% growth in-hibition activity within 48 hours against MRSA KCCM 40511. Taken together, our results suggest that Streptomyces sp. D-5 and its anti-MRSA compound could be employed as a potent agent in MRSA infection.

Studies on the Biological Active Substance produced by a Strain of Streptomyces sp. Part I. Isolation and Biological Characterization of the Substance (Streptomyces속 균주가 생성한 물질의 생물활성에 관한 연구 제 I보 생성물질의 분이및 그 생화학적성질)

  • 송방호;서정훈
    • Microbiology and Biotechnology Letters
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    • v.3 no.2
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    • pp.63-68
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    • 1975
  • A biological active substance was isolated from the cultured medium of Streptomyces sp. and its biochemical characteristics were investigated. Isolation process of the substance was as follows; the pH of filterate of the cultured medium was adjusted to 3.0 with N-hydrochloric acid and saturated with sodium chloride, then chloroform was added to this filterate in one fifth portions and stirred vigorously. After extracting the active substance with chloroform in 3 stages, the chloroform layer combined and evaporatea after dehydrating with sodium sulfate. The substance was found to be to be toxic to various fresh water fishes; the lethal dose for an average size Pseudorasbora parva T. et. S. was 50ug per ml. In the acidic condition, the toxicity of the substance remained fora long time, while in the alkaline state, the toxicity was decreased very fast. This substance was found to be stable to organic solvents, but labile to heat treatment. The maximal revival time of Pseudorasbora parva T. et. S. was about 20 minutes in 25 ug/ml of the substance solution.

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Heterologous Expression of Recombinant Transglutaminase in Bacillus subtilis SCK6 with Optimized Signal Peptide and Codon, and Its Impact on Gelatin Properties

  • Wang, Shiting;Yang, Zhigang;Li, Zhenjiang;Tian, Yongqiang
    • Journal of Microbiology and Biotechnology
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    • v.30 no.7
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    • pp.1082-1091
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    • 2020
  • Microbial transglutaminases (MTGs) are widely used in the food industry. In this study, the MTG gene of Streptomyces sp. TYQ1024 was cloned and expressed in a food-grade bacterial strain, Bacillus subtilis SCK6. Extracellular activity of the MTG after codon and signal peptide (SP Ync M) optimization was 20 times that of the pre-optimized enzyme. After purification, the molecular weight of the MTG was 38 kDa and the specific activity was 63.75 U/mg. The optimal temperature and pH for the recombinant MTG activity were 50℃ and 8.0, respectively. MTG activity increased 1.42-fold in the presence of β-ME and 1.6-fold in the presence of DTT. Moreover, 18% sodium chloride still resulted in 83% enzyme activity, which showed good salt tolerance. Cross-linking gelatin with the MTG increased the strength of gelatin 1.67 times and increased the thermal denaturation temperature from 61.8 to 75.8℃. The MTG also significantly increased the strength and thermal stability of gelatin. These characteristics demonstrated the huge commercial potential of MTG, such as for applications in salted protein foods.

Prodution and Properties of the Insoluble Penicillinase from Streptomyces (방선균이 분비하는 불용성 Penicillinase)

  • 이동희;서정훈
    • Microbiology and Biotechnology Letters
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    • v.7 no.3
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    • pp.135-140
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    • 1979
  • A Streptomyces sp. strain AS-727 which was capable of producing penicillinase, was isolated from soil. The enzyme production was affected by the carbon and nitrogen sources added. Among them so far tested, glucose (or maltose) and sodium nitrate increased the enzyme production. And the amount of enzyme prodced reached maximum in 4 days cultivation. The optimla pH and temperature of the penicillinase was between pH 6.0 to 8.0 and 4$0^{\circ}C$ respectively. The stabel pH range of the enzyme was stable at 4$0^{\circ}C$, but it lost about 30% and 40% of the the activity respectively when it was treated at 6$0^{\circ}C$ and 8$0^{\circ}C$ for 60 minutes. The activity of the enzyme was inhibited by Z $n^{++}$, but A $g^{+}$, $Co^{++}$, $_Mn^{++}$, $Ca^{++}$, P $b^{++}$ did not affected enzyme activity. Peculiarly, the enzyme protein precipitated by freezing or addition of ammonium sulfate, urea, sodium chloride and some organic solvents as etanol, methanol, acetone was not dissolved in deionized water or any buffer solution.n.n.ion.n.n.

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Isolation of Inhibitor against Mouse Carcinoma Cells from Streptomyces sp. (복수세포의 Succinate Dehydrogenase 조해물질의 검색)

  • 송방호
    • Microbiology and Biotechnology Letters
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    • v.7 no.2
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    • pp.97-102
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    • 1979
  • An actinomycete, AS-568, which produced an inhibitory substance against succinate dehydrogenase of Ehrlich ascites carcinoma and Sarcoma-180 cells of mouse, was isolated. The inhibitory activity was determined by SDI (Succinate Dehydrogenase Inhibition) method. The active substance was specific against carcinoma cells compared to normal cells in mouse; liver, kidney and brain. The inhibitory ratio was about 50% after one hr treatment at 37$^{\circ}C$ in vitro. Maximal productivity of active substance was recognized by 5 days culture in glucose-asparagine. The active component in cultural liquid was stable in neutral pH range and heat treatment reasonably, add it was recovered from precipitate by ammonium sulfate or non-dialyrable fraction in cellophane membrane as showing the behavior of high molecular substance.

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Selection of Antagonistic Microorganisms against Plant Pathogens from Eco-friendly Formulations (친환경 제제로부터 식물병원균에 대한 길항 미생물의 선발)

  • Gang, Guen-Hye;Cha, Jae-Yul;Heo, Bit-Na;Yi, Og-Sun;Lee, Yong-Bok;Kwak, Youn-Sig
    • Korean Journal of Environmental Agriculture
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    • v.31 no.1
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    • pp.68-74
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    • 2012
  • BACKGROUND: Some microorganisms extant in nature have ability to suppress various plant pathogens, and also can promote plant growth. Thus microorganisms are such great source of antimicrobial agents to develop antagonistic microorganism production and eco-friendly crop management. We isolated the microorganisms in various eco-friendly formulations. The suppressive abilities against plant pathogens have been characterized in vitro level. METHODS AND RESULTS: The indigenous microorganisms have been isolated from Cooked rice, Black sugar, Rice Bran, and Red clay using dilution plating method. Population of bacteria and fungi were above 107 in the all formulations. We isolated and pure cultured the microorganisms based on morphological characteristics. Three major plant pathogens (Fusarium oxysporum, Rhizoctonia solani, Phytophthora capsici) have been used to select antagonistic microorganisms. Total 20 bacteria and 9 fungi showed the pathogen growth suppression ability in vitro condition. The selected microorganisms were identified by ITS sequence similarity. CONCLUSION: All tested eco-friendly formulations contained high-density of the microorganisms. Among the isolated microorganisms, Bacillus spp. and Streptomyces spp. showed the most effective antifungal activity against the plant pathogens such as F. oxysporum, R. solani, and P. capsici. Among the selected fungi Trichoderma sp. demonstrated antifungal activity. Our results suggest that the currently adapted eco-friendly formulations might useful for sustain agricultural system.

Octimization of Score Production via Sonication of Antifungal Polyene-producing Actinomycetes (초음파 파쇄에 의한 항진균 폴리엔 생성 방선균의 포자형성 최적화)

  • Kim, Byung-Kyun;Han, Kyu-Beom;Kim, Eung-Soo
    • KSBB Journal
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    • v.22 no.4
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    • pp.218-221
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    • 2007
  • The polyene antifungal antibiotics, mostly produced by Gram-positive soil actinomycetes, are a family of type I polyketide macrolide ring compounds with 20$\sim$40 carbon backbone contain 3$\sim$8 conjugated double bonds. Using polyene-specific genomic screening strategy, we previously isolated three novel polyene-producing actinomycetes strains from soil, implying the potential application of these strains' spores as microbial pesticides. Here, we report that the sonication is a very efficient method for actinomycetes spore generation with a sonicator power-dependent manner. In addition, these sonication-driven actinomycetes spores retained significant portion of their cell viabilities as well as antifungal activities after freeze-drying procedure, implying the potential application of these strains' spores as microbial pesticides.