• Title/Summary/Keyword: Extracellular proteinase

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Purification and Characterization of Extracellular Proteinase Produced by Pseudomonas aeruginosa (Pseudomonas aeruginosa 세포질외 serine계열 단백질 분해효소의 정제 및 특성)

  • 이은실;송철용
    • Korean Journal of Microbiology
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    • v.29 no.6
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    • pp.345-352
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    • 1991
  • A serine proteinase of molecular weight 60 kd was purified from culture supernatant of P. aeruginosa using DEAE-Trisacryl M ion-exchange and AcA 54 gel filtration column chromatography, and the properties of serine proteinase were characterized. By means of SDS-polyacrylamide gel electrophoresis, the molecular weight of the enzyme was 55 kd. The optimal pH for the activity of purified enzyme was 7.5. The activity of the purified enzyme was completely inhibited by Di-isopropylfluorophosphate(DFP) and N-.alpha.-p-tosyl-L-lysine choloromethyl detone(TLCK) but not by other proteinase inhibitors such as E-64, pepstatin A, 1, 10-phenanthroline. The purified enzyme was capable of degrading type I and type IV collagen. Antisera obtained from hymans infected with Pseudomonas aeruginosa reacted to the purified serine proteinase in immunoblots. These results indicate that the purified enzyme is trypsin-like serine proteinase and this enzyme of P. aeruginosa may play an important role in tissue damage as a spreading factor and may be useful for serodiagnosis of Pseudomonas infections.

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A Plasmid of Lactococcus lactis subsp. lactis ML8 Linked with Lactose Metabolism and Extracellular Proteinase

  • LEE, JONG-HOON;HYONG JOO LEE
    • Journal of Microbiology and Biotechnology
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    • v.6 no.6
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    • pp.381-385
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    • 1996
  • Three distinct plasmids, with approximate molecular weights of 1, 4.5, and 33 megadaltons, were found in Lactococcus lactis subsp. lactis (L. lactis) ML8. Slow acid-producing mutants of L. lactis ML8, isolated by plasmid curing with acriflavine treatment, lacked the 33-megadalton plasmids. The plasmid-cured mutant showed lactose-negative (Lac) characteristics and the alteration of extracellular proteinase pattern. The possible involvement of extracellular proteinase with the 33-megadalton plasmid is highlighted in this research.

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Characters of proteinase inhibitor isolated from streptomyces fradiae (Streptomyces fradiae에서 분리한 단백질 분해효소저해물질의 특성)

  • 정영화;이병규;이계준
    • Korean Journal of Microbiology
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    • v.28 no.1
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    • pp.65-70
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    • 1990
  • The objective of the current study is to elucidate the biological roles of proteinase inhibitor in microorganisms. As the first step, a strain of Streptomyces fradiae was selected as a producer of extracellular proteinase inhibitor. The proteinase inhibitor was purified from culture broth through ultrafiltration, gel-filtration and ion-exchange chromatography. Molecular weight of the proteinase inhibitor was estimated to be 16, 800 by SDS polyacrylamide gel electrophoresis. It was found that the proteinase inhibitor inhibited only alkaline serine proteinases such as subtilisin, $\alpha$-chymotrypsin and Promase E but not trypsin and other proteinases. The mode of inhibition against Pronase E with succinyl-phenylalanine-p-nitroanilide as a substrate was competitive.

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Production of the Extracellular Alkaline Proteinase by Yarrowia Lipolytica 504D (Yarrowia lipolytica 504D의 Extracellular Alkaline Proteinase 생산성)

  • 유춘발;김창화;김태곤
    • Journal of Life Science
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    • v.8 no.3
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    • pp.333-338
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    • 1998
  • Productivity of alkaline proteinase from Yarrowia lipolytica 504D was investigated. For the production fo the enzyme, hemoglobin was the best nitogen source, however, casein and skim milk were also good. All carbon sources inhibited strongly the producitivity of the enzyme. Yeast extract increased the productivity of the enzyme to 220%, but almost mineral salts except monovalant ions decreased it. Based on these results, optimal medium was composed of 1.2% casein, 0.2% glucose, 0.16% yeast extract, and 0.1% ammonium sulfate. the best condition for the production of the enzyme was observed at pH 9 and $20^{\circ}C$ for 42 hours.

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Extracellular Proteinase를 생산하는 효모의 분리동정과 효소의 생산

  • Kim, Chnag-Hwa;Lee, Tae-Hyung;Yu, Choon-Bal;Jin, Ingnyol
    • Microbiology and Biotechnology Letters
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    • v.24 no.4
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    • pp.452-458
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    • 1996
  • A yeast strain TH65 producing a high level of proteinase under alkaline condition was isolated, and identified as Yarrowia lipolytica by morphological, physiological, and biochemical characteristics. In proteinase productivity, glycerol and glucose among tested carbon sources were very effective, and optimum concentration of glucose was 0.5%. Skim milk was found to be most effective nitrogen source in productivity, and its optimum concentration was 0.6%. But, cysteine, cystine and tryptophane decreased the proteinase productivity. Yeast extract was relatively effective at the range of 0.1-0.5%. The yeast showed maximum production of proteinase at 18$\circ$C, pH 9-11, and cultivation time of 36 hours.

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Effect of N-sources and NaCl Concentrations in Media on the Intra-and Extracellular Proteinase Activities of Streptococcus cremoris $ML_4$ and Streptococcus lactis $ML_8$ (Streptococcus cremoris $ML_4$ 및 Streptococcus lactis $ML_8$의 생육중 질소원과 염농도가 세포내 및 세포외 프로테이나제 역가에 미치는 영향)

  • Chang, Hae-Choon;Lee, Hyong-Joo
    • Korean Journal of Food Science and Technology
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    • v.21 no.1
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    • pp.86-91
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    • 1989
  • To investigate the effect of NaCl concentration and nitrogen sources in the medium for the Streptococci on the intra- and extracellular proteinase(ICP and ECP) which have been known as one of the major causes for the bitter peptide formation, Streptococcus lactis $ML_8$ and Streptococcus cremoris $ML_4$ strains were incubated at 0-4% NaCl in the medium and Na-caseinate as a nitrogen source 0-100%, and the cell growth, ICP and ECP activities were analyzed. As the concentration of the NaCl in the medium increased, the growth and ECP activity decreased but the ICP $activity/10^{10}$ cells increased on the contrary. This implied that the NaCl in the medium affects only the ECP which is associated mainly to the cell wall and cell membrane but not the ICP activity. When the content of the caseinate instead of other low molecular nitrogen sources were increased in the medium, the cell growth was lowered while the ECP activities increased probably by induction of proteinase production.

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Comparison of specific activity and cytopathic effects of purified 33 kDa serine proteinase from Acanthamoeba strains with different degree of virulence

  • Kim, Won-Tae;Kong, Hyun-Hee;Ha, Young-Ran;Hong, Yeon-Chul;Jeong, Hae-Jin;Yu, Hak-Sun;Chung, Dong-Il
    • Parasites, Hosts and Diseases
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    • v.44 no.4 s.140
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    • pp.321-330
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    • 2006
  • The pathogenic mechanism of granulomatous amebic encephalitis (GAE) and amebic keratitis (AK) by Acanthamoeba has yet to be clarified. Pretense has been recognized to play an important role in the pathogenesis of GAE and AK. In the present study, we have compared specific activity and cytopathic effects (CPE) of purified 33 kDa serine proteinases from Acanthamoeba strains with different degree of virulence (A. healyi OC-3A, A. lugdunensis KA/E2, and A. castelianii Neff). Trophozoites of the 3 strains revealed different degrees of CPE on human corneal epithelial (HCE) cells. The effect was remarkably reduced by adding phenylmethylsulfonylfluoride (PMSF), a serine proteinase inhibitor. This result indicated that PMSF-susceptible proteinase is the main component causing cytopathy to HCE cells by Acanthamoeba. The purified 33 kDa serine proteinase showed strong activity toward HCE cells and extracellular matrix proteins. The purified proteinase from OC-3A, the most virulent strain, demonstrated the highest enzyme activity compared to KA/E2, an ocular isolate, and Neff, a soil isolate. Polyclonal antibodies against the purified 33 kDa serine proteinase inhibit almost completely the proteolytic activity of culture supernatant of Acanthamoeba. In line with these results, the 33 kDa serine proteinase is suggested to play an important role in pathogenesis and to be the main component of virulence factor of Acanthamoeba.

Phospholipase and Aspartyl Proteinase Activities of Candida Species Causing Vulvovaginal Candidiasis in Patients with Type 2 Diabetes Mellitus

  • Bassyouni, Rasha H.;Wegdan, Ahmed Ashraf;Abdelmoneim, Abdelsamie;Said, Wessam;AboElnaga, Fatma
    • Journal of Microbiology and Biotechnology
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    • v.25 no.10
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    • pp.1734-1741
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    • 2015
  • Few research had investigated the secretion of phospholipase and aspartyl proteinase from Candida spp. causing infection in females with type 2 diabetes mellitus. This research aimed to investigate the prevalence of vulvovaginal candidiasis (VVC) in diabetic versus non-diabetic women and compare the ability of identified Candida isolates to secrete phospholipases and aspartyl proteinases with characterization of their genetic profile. The study included 80 females with type 2 diabetes mellitus and 100 non-diabetic females within the child-bearing period. Candida strains were isolated and identified by conventional microbiological methods and by API Candida. The isolates were screened for their extracellular phospholipase and proteinase activities by culturing them on egg yolk and bovine serum albumin media, respectively. Detection of aspartyl proteinase genes (SAP1 to SAP8) and phospholipase genes (PLB1, PLB2) were performed by multiplex polymerase chain reaction. Our results indicated that vaginal candidiasis was significantly higher among the diabetic group versus nondiabetic group (50% versus 20%, respectively) (p = 0.004). C. albicans was the most prevalent species followed by C. glabrata in both groups. No significant association between diabetes mellitus and phospholipase activities was detected (p = 0.262), whereas high significant proteinase activities exhibited by Candida isolated from diabetic females were found (82.5%) (p = 0.000). Non-significant associations between any of the tested proteinase or phospholipase genes and diabetes mellitus were detected (p > 0.05). In conclusion, it is noticed that the incidence of C. glabrata causing VVC is increased. The higher prevalence of vaginal candidiasis among diabetics could be related to the increased aspartyl proteinase production in this group of patients.

Purification and Characterization of Extracellular Aspartic Proteinase of Candida albicans

  • Na, Byoung-Kuk;Lee, Seong-Il;Kim, Sin-Ok;Park, Young-Kil;Bai, Gill-Han;Kim, Sang-Jae;Song, Chul-Yong
    • Journal of Microbiology
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    • v.35 no.2
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    • pp.109-116
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    • 1997
  • An extracellular proteinase of Candida albicans was purified by a combination of 0~75% ammonium sulfate precipitation, DEAE Sepharose Fast Flow ion exchange chromatography, and Sephacryl S-200 HR molecular sieve chromatography. Its mlecular weight was approximately 41 kDa on SDS-PAGE and isoelectric point was 4.4. The enzyme was inhibited by pepstain A. Optimum enzyme activity ranged from pH 2.0 to 3.5 with its maximum at pH 2.5 and a temperature of 45$^{\circ}C$. The addition of divalent cations, $Ca^{2+}$, Zn$^{2+}$ and $Mg^{2+}$, resulted in no significant inhibition of enzymatic activity. However, some inhibitory effects were observed by Fe$^{2+}$, Ag$^{2+}$ and Cu$^{2+}$. With BSA as substrate, an apparent $K_m$ was determined to be 7$\times$10$^{-7}$ M and $K_i$, using pepstatin A as an inhibitor, was 8.05$\times$10$^{-8}$ M. N-terminal amino acid sequence was QAVPVTLXNEQ. Degradation of BSA and fibronectin was shown but not collagen, hemoglobin, immunoglobulin G, or lysozyme. The enzyme preferred peptides with Glu and Leu at the P$_1$ position, but the enzyme activity was highly reduced when the P$_2$ position was phe or pro. This enzyme showed antigenicity against sera of patients with candidiasis.

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