• Title/Summary/Keyword: Bacillus bacteriocin

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Bacteriocin with a Broad Antimicrobial Spectirum, Produced by Bacillus sp. Isolated from Kimchi

  • Mah, Jae-Hyung;Kim, Kwang-Soo;Park, Jong-Hyun;Byun, Myung-Woo;Kim, Young-Bae;Hwang, Han-Joon
    • Journal of Microbiology and Biotechnology
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    • v.11 no.4
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    • pp.577-584
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    • 2001
  • An antimicrobially active bacterium which was identified as Bacillus brevis, was isolated from kimchi. The antimicrobial activity was found against various Gram-positive and Gram-negative bacteria including some pathogens food-spoilage microorganisms, and some yeast strains. The antimicrobial activity was especially strong against Bacillus anthracis and Shigella dysenteriae. The strong activity was observed during an early stationary phase in the culture when incubated at $37^{\circ}C$ with initial medium pH of 6.8. The antimicrobial activity was found to be stable at $90^{\circ}C$ for 30 min and in the pH range of 3-11, and it was insensitive to organic solvents including acetone, acetonitrile, ethanol, and methanol. Analysis of the bacterocin on tricine-sodium dodecyl sulfate-polyacrylamide gel suggested a molecular mass of approximately 4.5-6.0 kDa. The antimicrobial substance was characterized as a bacteriocin, because of its proteinaceous nature and low molecular weight. The bacteriocin could potentially be used as a food preservative, because of its thermostable property and broad antimicrobial spectrum.

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Properties of Bac W42, a Bacteriocin Produced by Bacillus subtilis W42 Isolated from Cheonggukjang

  • Kindoli, Salum;Lee, Hwang A;Kim, Jeong Hwan
    • Journal of Microbiology and Biotechnology
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    • v.22 no.8
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    • pp.1092-1100
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    • 2012
  • Ten Bacillus strains with antimicrobial activities were isolated from Cheonggukjang produced at different parts in Korea. They all inhibited Listeria monocytogenes ATCC 19111 and nine inhibited Bacillus cereus ATCC 14579. Four isolates (W42, H27, SKE 12, and K21) showing strong inhibiting activities were identified as B. subtilis. B. subtilis W42 was the most inhibiting strain. The antimicrobial activity of culture supernatant from B. subtilis W42 was destroyed completely by proteinase K treatment, indicating that a bacteriocin was the responsible agent. The bacteriocin, Bac W42, was most stable at pH 7 and stable between pH 3-6 and 8-9. Bac W42 was stable up to $80^{\circ}C$. BHI (brain heart infusion) and TSB (tryptic soy broth) were the best media for the activity (320 AU/ml) followed by LB (160 AU/ml). Bac W42 was partially purified by column chromatographies. The specific activity was increased from 1,151.2 AU/ml to 9,043.5 AU/ml and the final yield was 26.3%. Bac W42 was 5.4 kDa in size as determined by SDS-PAGE. Bac W42 showed bactericidal activity against L. monocytogenes ATCC 19111.

Bacteriocin Production by Streptococcus sp. J-C1 Isolated from Kimchi (김치에서 분리한 Streptococcus sp. J-C1의 bacteriocin 생산)

  • Jo, Young-Bae;Cho, Young-Im;Baik, Hyung-Suk;Jun, Hong-Ki
    • Journal of Life Science
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    • v.6 no.4
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    • pp.270-277
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    • 1996
  • Streptococcus sp J-C1 producing bacteriocin was isolated from Kimchi. The optimum conditions for bacteriocin production by Streptococcus sp. J-C1 were evaluated. For the maximum yield of bacteriocin production by Streptococcus sp. J-C1, the cell should be harvested at the late stationary phase and the temperature, pH and NaCl concentration should be 25$\circ$C, pH 8 and without the addition of NaCl, respectively. Sucrose should be used as a carbon source and organic nitrogen such as peptone should be used as a nitorgen source for the best yield. The production of bacteriocin is related to the cell growth of Streptococcus sp. J-C1. The bacteriocin from Streptococcus sp. J-C1 was active for gram positive microorganisms such as Lactobacillus sp., Leuconoctoc sp., Lactococcus sp., Streptococcus mutans, Staphylococcus aureus amd Bacillus subtilis and also active for gram negetive bacteria such as Acetobacter aceti. Antibacterial activity of the bacteriocin was completely disappeared by protease treatment.

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Purification and Characterization of a Bacteriocin, BacBS2, Produced by Bacillus velezensis BS2 Isolated from Meongge Jeotgal

  • Perumal, Venkatesh;Yao, Zhuang;Kim, Jeong A;Kim, Hyun-Jin;Kim, Jeong Hwan
    • Journal of Microbiology and Biotechnology
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    • v.29 no.7
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    • pp.1033-1042
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    • 2019
  • Bacillus velezensis BS2 was isolated from meongge (common sea squirt) jeotgal, a Korean fermented seafood, and produces a bacteriocin, BacBS2, which strongly inhibits Listeria monocytogenes and Bacillus cereus. BacBS2 was partially purified by Q-Sepharose column chromatography after ammonium sulfate precipitation of the culture supernatant, then further purified by Sephadex G-50 column chromatography. Partially purified BacBS2 was estimated to be 6.5 kDa in size by Tricine-SDS PAGE and activity detection by gel-overlay. Enzyme treatment and FT-IR spectrum of partially purified BacBS2 confirmed its proteinaceous nature. BacBS2 was fully stable at pH 4-9, and half of activity was retained at pH 1-3. Full activity was retained after exposure to $80^{\circ}C$ for 15 min, but half of the activity was retained upon exposure to $90^{\circ}C$ for 15 min or $100^{\circ}C$for 10 min. BacBS2 inhibited L. monocytogenes by bactericidal mode of action. B. velezensis BS2 and its BacBS2 seem useful as biopreservatives for fermented foods such as jeotgal.

Degradation capability of macromolecular organic matters and antimicrobial activities of Bacillus species isolated from surf clam (Tresus keenae) (왕우럭(Tresus keenae)에서 분리된 Bacillus species의 고분자 유기물질 분해능력과 항균활성)

  • Yi, Seung-Won;Moon, Sung-Hyun;Cho, Ho-Seong;Kim, Chul-Won
    • Korean Journal of Veterinary Service
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    • v.40 no.4
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    • pp.265-275
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    • 2017
  • The production of enzymes that help digestion, assimilation of essential nutrients, and prevent pathogenic bacteria are important for probiotics used in aquaculture. The objective of this study was to investigate enzyme activities for macromolecular organic matters and antimicrobial properties of the selected potential probiotics isolated from gut of surf clam (Tresus keenae) against well-known shellfish-pathogenic bacteria. Among 65 isolates from guts of 60 surf clams, seven Bacillus strains with outstanding degradation capability of macromolecule organic matter were selected as potential probiotics as follows: TKI01 (B. vietnamensis), TKI02, TKI26 (B. thuringiensis), TKI14, TKI32, TKI42 (B. amyloliquefaciens), and TKI18 (B. stratosphericus). After in vitro antimicrobial activity test was performed against five shellfish-pathogenic bacteria including Listonella anguillarum, Vibrio parahaemolyticus, V. splendidus, V. harveyi, V. tubiashii, PCR assay was performed to detect bacteriocin-producing strain. PCR results revealed that the five Bacillus strains possessed diverse bacteriocin genes including ericinA, coagulin, surfactin, iturin, bacyllomicin, fengycin, bacylisin, subtilin, and lantibiotics. In the present study, the selected seven Bacillus strains showed different enzyme activities according to types of macromolecule organic matters. And their antimicrobial activities varied based on the species of pathogenic bacteria. In addition, at least five Bacillus strains had genetic potential to produce several natural lipopeptide antibiotics that may help biological control of surf clam aquaculture. Therefore, mixed use of probiotics might show co-operative effect and increase the efficiency of probiotics rather than separate use. To the best of our knowledge, it is the first report on antimicrobial properties of Bacillus species isolated from surf clam.

Inhibitory Activity of Bacillus licheniformis AJ on the Growth of Diarrheal Pathogens (Bacillus licheniformis AJ 균주제제의 설사원인 미생물의 성장 억제효과)

  • 김지영;배은아;한명주;김동현
    • Biomolecules & Therapeutics
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    • v.7 no.4
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    • pp.385-389
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    • 1999
  • The injibitory effect of Bacillus licheniformis AJ isolated from genitourinary normal flora as a new probiotics on the growth of diarrheal pathogens was studied. This B. licheniformis AJ inhibited the growth of E.coli O-157. Salmonella typhi and Shigella sonnei as well as the infectivity of rotavirus. However, it did not inhibit the growth of Helicobacter pyloriand human intestinal bacteria although it inhibited the harmful enzyme activity of human intestinal bacteria. B. licheniformis AJ seems to excret heat-lable growth-inhibitory protein, bacteriocin, into the media. These results suggest that B. lichenoformis AJ could be used as a new type of probiotics.

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Purification and Characterization of the Bacteriocin Thuricin Bn1 Produced by Bacillus thuringiensis subsp. kurstaki Bn1 Isolated from a Hazelnut Pest

  • Ugras, Serpil;Sezen, Kazim;Kati, Hatice;Demirbag, Zihni
    • Journal of Microbiology and Biotechnology
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    • v.23 no.2
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    • pp.167-176
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    • 2013
  • A novel bioactive molecule produced by Bacillus thuringiensis subsp. kurstaki Bn1 (Bt-Bn1), isolated from a common pest of hazelnut, Balaninus nucum L. (Coleoptera: Curculionidae), was determined, purified, and characterized in this study. The Bt-Bn1 strain was investigated for antibacterial activity with an agar spot assay and well diffusion assay against B. cereus, B. weinhenstephenensis, L. monocytogenes, P. savastanoi, P. syringae, P. lemoignei, and many other B. thuringiensis strains. The production of bioactive molecule was determined at the early logarithmic phase in the growth cycle of strain Bt-Bn1 and its production continued until the beginning of the stationary phase. The mode of action of this molecule displayed bacteriocidal or bacteriolytic effect depending on the concentration. The bioactive molecule was purified 78-fold from the bacteria supernatant with ammonium sulfate precipitation, dialysis, ultrafiltration, gel filtration chromatography, and HPLC, respectively. The molecular mass of this molecule was estimated via SDS-PAGE and confirmed by the ESI-TOFMS as 3,139 Da. The bioactive molecule was also determined to be a heat-stable, pH-stable (range 6-8), and proteinase K sensitive antibacterial peptide, similar to bacteriocins. Based on all characteristics determined in this study, the purified bacteriocin was named as thuricin Bn1 because of the similarities to the previously identified thuricin-like bacteriocin produced by the various B. thuringiensis strains. Plasmid elution studies showed that gene responsible for the production of thuricin Bn1 is located on the chromosome of Bt-Bn1. Therefore, it is a novel bacteriocin and the first recorded one produced by an insect originated bacterium. It has potential usage for the control of many different pathogenic and spoilage bacteria in the food industry, agriculture, and various other areas.

Characteristics of Bacteriocin Produced by Lactococcus lactis ET45 Isolated from Kimchi (김치에서 분리한 Lactococcus lactis ET45가 생산하는 박테리오신의 특성)

  • Jeong, Seong-Yeop;Park, Chan-Sun;Choi, Nack-Shick;Yang, Hee-Jong;Kim, Cha-Young;Yoon, Byoung-Dae;Kang, Dae-Ook;Ryu, Yeon-Woo;Kim, Min-Soo
    • Korean Journal of Microbiology
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    • v.47 no.1
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    • pp.74-80
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    • 2011
  • Bacteriocin-producing lactic acid bacterium having antagonistic activity against Bacillus cereus, was isolated from Kimchi. The selected strain was identified as Lactococcus lactis by the Bergey's manual and 16S rDNA analysis, and named as L. lactis ET45. The bacteriocin was stable in the pH range 3.0-11.0. The bacteriocin was active over a wide temperature range from $40^{\circ}C$ to $121^{\circ}C$. Optimal culture condition for producing bacteriocin was obtained by growing the cells on MRS medium at pH 7.5 and $30^{\circ}C$ for 18 h. Antibacterial activity of the bacteriocin was completely disappeared by proteinase K, and this means that bacteriocin is a proteinous substance. The molecular weight of bacteriocin was estimated to be about 4.5 kDa by tricine sodium dodecyl sulfate polyacryamide gel electrophoresis (TSDS-PAGE).

Establishment of a Leucocin A Producing Sccharomyces cerevisiae Cell (박테리오신 leucocin A를 생산하는 Saccharomyces serevisiae 세포의 제작)

  • 이상현
    • Journal of Life Science
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    • v.13 no.5
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    • pp.712-717
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    • 2003
  • In order to establish yeast cells that produce leucocin A, a bacteriocin, the 117 bp leucocin A gene with start and stop codons was synthesized and cloned in pAUR123, a yeast vector. Transformed yeast cells showed antibacterial activity against Bacillus subtilis. The leucocin A gene was confirmed by means of PCR methods with plasmid prepared from transformed yeast cells as template and two leucocin A-specific primers. In this results, yeast cells that produce mass amounts of bacteriocin to use as food preservative or antibiotics were established.

Antagonistic Activity of Polyfermenticin SCD Against Helicobacter pylori KCTC 2948

  • Kim, Seong-Mi;Lee, Kwang-Ho;Lee, Na-Kyoung;Kim, Cheon-Jei;Kim, Chang-Han;Paik, Hyun-Dong
    • Journal of Microbiology and Biotechnology
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    • v.14 no.1
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    • pp.148-152
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    • 2004
  • Bacillus polyfermenticus SCD and polyfermenticin SCD, named tentatively as the bacteriocin produced by B. polyfermenticus SCD, showed antimicrobial activity against Helicobacter pylori KCTC 2948 growth. When crude polyfermenticin SCD was added to the growing H. pylori cells, viable cell numbers were reduced, indicating antimicrobial action. The antimicrobial effect was increased remarkably at higher concentrations of polyfermenticin SCD and longer exposure. Morphological changes were observed in the bacteriocin-treated cells; in the exponential phase, they appeared as shrunken rods, while in the stationary phase, they showed coccoid forms.