• Title/Summary/Keyword: protease production

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Medium Optimization for the Protease Production by Bacillus licheniformis Isolated from Cheongkookjang (청국장에서 분리된 Bacillus licheniformis의 Protease 생산을 위한 배지 최적화)

  • Yoon, Ki-Hong;Shin, Hye-Young
    • Microbiology and Biotechnology Letters
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    • v.38 no.4
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    • pp.385-390
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    • 2010
  • Bacillus licheniformis fermenting soybean product with highest score in consumer acceptance had been isolated from homemade Cheongkookjang. In order to develop the medium composition, effects of ingredients including nitrogen sources, carbon sources, metal ions and phosphate were examined for protease production of the isolate. Potato starch increased the protease productivity, while glucose repressed it. Yeast extract was the most effective nitrogen source for enzyme production. The calcium was found to increase protease activity slightly while cell growth and enzyme production was completely inhibited by divalent ions such as $Zn^{2+}$, $Cu^{2+}$ and $Co^{2+}$. The maximum protease productivity was reached approximately 800 unit/mL in the optimized medium consisting of potato starch (1.5%), yeast extract (1.5%), $CaCl_2$(0.7%), $K_2HPO_4$(0.03%) and $KH_2PO_4$(0.03%). The protease activity of culture filtrate was gradually decreased after incubation for 28 h.

The Optimal Culture Condition for the Collagenolytic Protease Production from Vibrio vulnificus CYK279H (Vibrio vulnificus CYK 279H에서 Collagenolytic Protease 생산을 위한 최적배양조건)

  • 강성일;김영문;장영부;임동중;공재열
    • KSBB Journal
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    • v.19 no.4
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    • pp.295-300
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    • 2004
  • A marine bacterium for producing an collagenolytic protease was isolated from the southern sea of Korea and identified as Vibrio vulnificus and named as Vibrio vulnificus CYK279H. This strain producing an collagenolytic protease was showed high activity toward collagen and gelatin as substrate. The optimum initial pH, NaCl, and temperature for cell growth and protease production was 7.5, 2.0% and 25$^{\circ}C$, respectively. Optimization for collagenolytic protease production was composed of 0.3% D-galactose, 0.6% yeast extract, 4.0% gelatin, 0.2% (NH$_4$)$_2$SO$_4$, and 0.2 mM ferric citrate in artificial sea water. The maximum protease production was required gelatin and yeast extract. The collagenolytic protease production by Vibrio vulnificus CYK279H reached a maximum of 73 unit/l after the cultivation for 18 h under the optimized medium.

Cultural Conditions for Pretense Production by a feather-Degrading Bacterium, Bacillus megaterium F7-1 (우모분해세균 Bacillus megaterium F7-1에 의한 단백질 분해효소 생산에 영향을 미치는 배양조건)

  • Son Hong-Joo
    • Microbiology and Biotechnology Letters
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    • v.33 no.4
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    • pp.315-318
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    • 2005
  • The effects of inorganic salts and feather concentrations on pretense production by Bacillus megaterium F7-1 were investigated. Pretense production was dependent on the presence of phosphates in the medium. Supplementation of medium with calcium ion slightly increased protease production. The highest protease production was obtained at $1.4\%$ feather. The optimal medium contained $2.0\%$ glucose, $0.8\%$ skim milk, $0.06\%\;K_{2}HPO_{4}\%,\;0.04\%\;KH_{2}PO{4},\;0.06\%\;NaCl,\;0.03\%\;MgCl_{2}\cdot6H_{2}O,\;0.002\%\;CaCl_{2}\cdot2H_{2}O,\;and\;1.4\%$ whole feather. By using this optimized medium, increased production of the protease was achieved compared with the cases of using basal medium.

Optimization of Medium for Protease Production by Enterobacteriaceae sp. PAMC 25617 by Response Surface Methodology (반응표면분석법을 통한 Enterobacteriaceae sp. PAMC 25617의 protease 생산배지 최적화)

  • Kim, Hyun-do;Yun, Chul-Won;Choi, Jong-il;Han, Se Jong
    • Korean Chemical Engineering Research
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    • v.53 no.4
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    • pp.524-529
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    • 2015
  • This study was conducted to optimize the medium composition for cold-adaptive protease production of Enterobacteriaceae sp. by response surface methodology (RSM). Yeast extract, and TritonX-100 were identified as the significant factors affecting protease from one-factor-at-a-time method. RSM studies for optimizing protease production of Enterobacteriaceae sp. have been carried out for three parameters including yeast extract concentration, TritonX-100 concentration, and culture pH. These significant factors were optimized as 6.690 g/L yeast extract, 0.018 g/L Triton$^{TM}$ X-10, and pH 6.677. The experimentally obtained protease activity was 8.03 U /L, and it became 1.5-fold increase before optimization.

Production and Properties of Alkaline Pretense from Bacillus sp. Strain in Thermophilic and Alkaline Condition (Bacillus속 AP-5 균주의 고온성 알카리 배양에 따른 Alkaline Pretense의 생성 및 성질)

  • 이광배
    • Journal of environmental and Sanitary engineering
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    • v.5 no.2
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    • pp.103-110
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    • 1990
  • For production of thermophilic and alkaline protease, Bacillus sp. strain AP-5 was isolated from a compost. The production of the protease was reached at maximum for 4 days at $55^{\circ}$ in standing culture. Chitin and Cellulose as carbon source, and Skim Milk as nitrogen source were favorable for the production of the enzyme. Optimal temperature and optimal pH of the enzyme was $55^{\circ}$ and 11, respectively. Metal ion didn't effect on the enzyme activity, the protease was very stable at heat treatment of 30 min at $55^{\circ}$.

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Conditions for the Production of Amylase and Protease in Making Wheat flour Nuluk by Rhizopus japonicas T2 (Rhizopus japonicus T2에 의한 밀가루 누룩 제조시 Amylase와 Protease의 생산조건)

  • 소명환
    • The Korean Journal of Food And Nutrition
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    • v.6 no.2
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    • pp.96-102
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    • 1993
  • A Nuluk, a Korean traditional koji for brewing, was made with wheat flour and Rhizopus japonicus T2 which had a good aroma and strong abilities in producing saccharogenic and proteolytic enzymes, and cultural conditions for the production of those two enzymes were tested. The productivity of saccharogenic enzyme was markedly improved when Nuluk was made with unsteamed wheat flour as compared with that with steamed one, but that of acid protease was reduced. The addition of water containing 0.5% hydrochloric acid was unfavorable for the production of saccharogenic enzyme and neutral protease. The optimum ratio of water added to wheat flour for the production of saccharogenic enzyme and proteolytic enzyme was 28% on the basis of wheat flour. The productivity of saccharogenic enzyme was enhanced "when the Nuluk was molded after 10~20 hours precultivation but that of proteolytic enzyme was reduced as compared with no molding. The optimum temperature for the production of saccharogenic enzyme was 28f and that of proteolyic enzyme was also 28$^{\circ}C$. The optimum cultural time for the production of saccharogenic enzyme was 36 ~72 hours at 3$0^{\circ}C$ and that of proteolytic enzyme was 36 hours.ours.

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Characteristics of Fungal Protease Produced by Mucor racemosus f. racemosus from Korean Traditional Meju (재래식 메주로부터 분리한 Mucor racemosus f. racemosus PDA 103이 생산하는 Fungal Protease 특성)

  • 임성일;유진영
    • Microbiology and Biotechnology Letters
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    • v.27 no.6
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    • pp.466-470
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    • 1999
  • Protease production and its characteristics were investigated with Mucor racemosus f. racemosus PDA 103 which was isolated from Korean traditional meju. Optimum culture conditions of the strain for the production of the protease in basic medium[bean(Baektae):H2O=1:1(w/v)] were as follows: pH 6, 3$0^{\circ}C$ and 72hrs. Optimum pH and temperature for the enzyme activity of the protease produced by Mucor racemosus f. racemosus were pH 5 and 5$0^{\circ}C$, respectively. The enzyme was relatively stable a pH2.0~5.0 and at temperature below 4$0^{\circ}C$. Phenylmethane-sulfonyl fluoride and Ag+ inhibited the enzyme activity. This indicates that the enzyme is serine protease. Km value was 0.9$\times$10-4M and Vmax value was 5.93$\mu\textrm{g}$/min. This enzyme hydrolyzed casein more rapidly than bovine albumin.

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Studies on the Alkalophilic Bacteria Producing Alkaline Protease and its Enzyme Activities (알칼리성 Protease를 생성하는 알칼리성 세균 및 그 효소활성에 관한 연구)

  • Park, Soo-Jin;Lee, Kang-Man;Bae, Moo
    • YAKHAK HOEJI
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    • v.34 no.1
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    • pp.47-53
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    • 1990
  • Alkalophilic bacteria isolated from compost were selected, identified and tested for production of alkaline protease. The bacterium was tentatively assigned to Bacillus sp. based on the morphological, cultural and biochemical characteristics. The optimum pH of growth was 10 Galactose and Sodium glutamate enhanced the production of alkaline protease. The protease was most active at pH 11.0 and $60^{\circ}C$ and stable in the range of pH 5-11 and temp. $30^{\circ}-55^{\circ}C$. The protease was stabilized by the presence of calcium salts.

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Analysis of Producing of Thermostable Alkaline Protease using Thermoactinomyces sp. E79 (Thermoactinomyces sp. E79를 이용한 내열성 Alkaline 단백질 분해효소 생산:환경인자의 영향)

  • 정상원;박성식;박용철;오태광
    • Microbiology and Biotechnology Letters
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    • v.28 no.3
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    • pp.167-171
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    • 2000
  • Analysis of Production of Thermostable Alkaline Protease using Thermoactinomyces sp. E79. Jung, Sang Won, Sung-Sik Park, Yong-Cheol Park" Tae Kwang Oh2, and Jin-Ho Seo*, Department of Food Science and Technology, Seoul National University, Suwon 441-744, Korea, 1lnterdisciplinary program [or Biochemical Engineering & Biotechnology, Seoul National Univer5it}~ Seoul 151 "7421 Koreal 2Microbial Enzyme RU, Korea Research Institute of Bioscience & Biotechnology, Po. Box 1151 Yusong, Taejon 305"6001 Korea - This research was undertaken to analyze fermentation properties of Thermoactinomyces sp. E79 for production of a thermostable alkaline protease, which is able to specifically hydrolyze defatted soybean meal (DSM) to amino acids. TIle optimum pH for cell growth and protease production was pH 6.7, Thermoactinomyces sp. E79 did not grow at pHlO Among carbon sources tested, soluble starch was the best for protease production, while glucose repressed protease production. Tryptone was found to be the best nitrogen source for cell growth and soytone was good tor protease production. Oxygen transfer rate played an important role in producing thermostable alkaline protease. Ma'<..imum values of 6.58 glL of dry cell weight and 43.0 UJmL of protease activity were obtained in a batch fermentation using a 2.5 L jar fermentor at 1.93 X 102 hr-l of volumetric oxygen transfer coeff'jcient (kLa). Addition of 200 mgIL humic acid to the growth medium resulted in 1.64 times higher protease activity and 1.77 times higher cell growth than the case without humic acid addition.

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Production and Characterization of Alkaline Protease of Micrococcus sp. PS-1 Isolated from Seawater (해수에서 분리한 Micrococcus sp. PS-1이 생산하는 단백질 분해효소의 생산과 효소학적 특성)

  • Jin, Young-Rang;Yu, Sun-Nyoung;Kim, Kwang-Youn;Kim, Sang-Hun;Park, Seul-Ki;Kim, Hyeun-Kyeung;Lee, Yong-Seok;Choi, Yong-Lark;Ji, Jae Hoon;Ahn, Soon-Cheol
    • Journal of Life Science
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    • v.23 no.2
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    • pp.273-281
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    • 2013
  • The purpose of this research was to investigate the production and characterization of alkaline protease from Micrococcus sp. PS-1 newly isolated from seawater. Micrococcus sp. PS-1 was grown in Luria-Bertani (LB) medium. Its optimal temperature and pH for growth were $30^{\circ}C$ and 7.0, respectively. The effect of nitrogen sources was investigated on optimal enzyme production. A high level of alkaline protease production occurred in LB broth containing 2% skimmed milk. The protease was purified in a 3-step procedure involving ultrafiltration, acetone precipitation, and dialysis. The procedure yielded a 16.43-purification fold, with a yield of 54.25%. SDS-PAGE showed that the enzyme had molecular weights of 35.0 and 37.5 kDa. Its maximum protease activity was exhibited at pH 9.0 and $37^{\circ}C$, and its activity was stable at pH 8.0-11.0 and $25-37^{\circ}C$. The protease activity was strongly inhibited by PMSF, EDTA, and EGTA. Taken together, the results demonstrate that the protease enzyme from Micrococcus sp. PS-1 probably belongs to a subclass of alkaline metallo-serine proteases.