• Title/Summary/Keyword: leupeptin

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Nutritional Regulation of Morphological and Physiological Differentiation on Surface Culture of Streptomyces exfoliatus SMF13

  • KYE JOON LEE;KIM, IN SEOP
    • Journal of Microbiology and Biotechnology
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    • v.5 no.4
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    • pp.200-205
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    • 1995
  • Nutritional factors regulating the morphological differentiation and physiological differentiation of Streptomyces exfoliatus SMF13 on surface cultures were evaluated. S. exfoliatus SMF13 produced leupeptin and chymotrypsin-like protease (CTP) at the stage of substrate mycelium growth, and leupeptin-inactivating enzyme (LIE) and trypsin-like protease (TLP) at the stage of aerial mycelium growth. The activity of leupeptin and CTP was high in the region of active growing substrate mycelium, whereas the activity of LIE and TLP was high in the region of aerial mycelium or spores. The differentiations were induced in glucose-limited conditions or by the addition of glucose anti-metabolite (methyl $\alpha$-glucopyranoside), but repressed by high concentrations of glucose or casamino acids. Morphological differentiation (formation of aerial mycelia and spores) was closely related with physiological differentiation (formation of brown-pigment, LIE and TLP). The local distribution of leupeptin, CTP, LIE, and TLP in a developing colony showed that colony development correlated with the production and functions of the compounds: CTP is essential for providing a nitrogen source for mycelium growth: leupeptin regulates TLP activity: LIE inactivates leupeptin: TLP hydrolyzes nongrowing mycelium.

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Inhibition Effect of Achyranthes japonica N. Root Extract on Cathepsin B (우슬뿌리 추출물의 Cathepsin B에 대한 저해효과)

  • Lee Ka-Soon;Lee Jin-Il;Lee Jong-Kuk;Lee Jeong;Kim Gi-Don;Oh Man-Jin
    • Food Science and Preservation
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    • v.12 no.3
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    • pp.275-281
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    • 2005
  • This study was carried out to investigate the cathepsin B inhibition effect by Achyranthes japonica N. root extract in vitro. The methanol/$H_{2}O$(4:1, v/v) extract was fractionated by ethyl acetate(F1), chloroform(F2), chloroform/methanol(3:1, v/v)(F3) and methanol(F4). The yield of F4 in Achyranthes japonica N. root was $8.27\%$. As an index material of Achyranthes japonica N. root, 20-hydroxy ecdysone was detected by TLC, and HPLC and it's content was $0.33\%$. Three isolates(F1, F3, F4) showed the cathepsin B inhibition activity, and F4 showed the highest inhibition activity among them. In the inhibition activity on cathepsin B, leupeptin, 20-hydroxy ecdysone and F4(at the same concentration of 20-hydroxy ecdysone.) were 92, 88 and $97\%$ on BANA($N{\alpha}$-benzoyl-DL-arginine ${\beta}$-naphthylamide) substrate, and 62, 36 and $67\%$ on CLN($N{\alpha}$-CBZ(carbobenzlyoxy)-L-lysine p-nitrophenyl ester HCI) substrate, respectively.

Characterization of the partially purified proteinase from Trichomonas vaginalis (질편모충으로부터 부분정제한 단백질 분해효소의 특성)

  • Min, Deuk-Yeong;Ryu, Jae-Suk;Hyeon, Geun-Hui
    • Parasites, Hosts and Diseases
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    • v.34 no.1
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    • pp.49-58
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    • 1996
  • Characterization of a purified proteinase from T4chomoncs uoginalis was carried out using bacitracin-sepharose affinity chromatography. Trichomonos uqginolis KT-9 isolate was used as a source of eye study Proteinase activity was determined using Bz-Pro- Phe-Arg-Nan as the substrate. Optimum pH for the purified proteinase activity was 7.0 and 6.0, 9.0 with DTT. Optimum temperature was 37℃ and isoelectric point was 7.2 Activity of this proteinase was inhibited by E-64, antipain, leupeptin, Hg2+ and Zn2+ and activated by DTT and cysteine. Activity of the purified proteinase was visualized by gelatin SDS- PAGE. The gelatinolytic activity of the purified proteinase was inhibited by E-64, antipain, leupeptin, and IAA, but not by PMSF and EDTA. On SDS-PAGE, the molecular weight of the purified proteinase was 60,000 daltons. Sera of rabbits infected with T. vaginalis reacted specifically in immunoblots with this proteinase. These results indicate that 60 kDa of purified proteinase was cysteine proteinase with antigenicity.

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Trypsins from the Dark Fleshed Fish(Anchovy, Mackerel, Yellowfin Tuna and Albacore) 2. Enzymatic Properties and Thermal Stabilities (혈합육어(멸치, 고등어, 활다랭이 및 날개다랭이)의 Trypsin 2. 성질과 열 안정성)

  • 조득문;허민수;변재형
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.22 no.4
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    • pp.458-464
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    • 1993
  • In the present paper enzymatic properties of the trypsins from the four dark fleshed fish were compared with each other and thermal stabilities of the enzymes were also investigated. The trypsins from the dark fleshed fish showed their activity only in BA-p-NA substrate of the amide substrates such as BA-p-NA and SP-p-NA, and BAEE and TAME of the ester substrate such as ATEE, BAEE, BTEE, and TAME. The enzymes were strongly inhibited by the serine protease inhibitors such as antipain, leupeptin, TLCK, DFP and SBTI, and were also inhibited by such metal ions as Cu$^{2+}$ and Hg$^{2+}$, but fairly activated by $Mg^{2+}$. Denaturation constants of the enzymes were 13.4$\times$10$^{-4}$ sec$^{-1}$ for anchovy trypsin, 47.18$\times$10$^{-4}$ sec$^{-1}$ for mackerel trypsin A, 34.06$\times$10$^{-4}$ sec$^{-1}$ mackerel trypsin B, 42.28$\times$10$^{-4}$ sec$^{-1}$ for yellowfin tuna trypsin and 16.6$\times$10$^{-4}$ sec$^{-1}$ for albacore trypsin at 55$^{\circ}C$. The activation energies of the trypsins at a temperature range of 3$0^{\circ}C$ to 5$0^{\circ}C$ were estimated to be 13.91 ㎉/mole for anchovy trypsin, 11.61㎉/mo1e and 8.43㎉/mole for mackerel trypsin A and for mackerel typsin B, 4.35㎉/mole for yellowfin tuna trypsin, and 3.76㎉/mole for albacore trypsin.

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Isolation and Properties of a Cytoplasmic Metalloendoprotease in Escherichia coli (大腸菌 細胞質內 Metalloendoprotease의 抽出과 그 性質에 관하여)

  • Chung, Chin-Ha;Ha, Doo-Bong
    • The Korean Journal of Zoology
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    • v.27 no.4
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    • pp.199-212
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    • 1984
  • A cytoplasmic endoprotease, named protease Ci, has been partially purified by classical chromatographic procedures. This enzyme degrades insulin, glucagon and bovine growth hormone to trichloroacetic acid-soluble materials, but shows little or no hydrolysis of bovine serum albumin, casein or globin. It has a molecular weight of about 120,000 as determined by gel filtration on Sephadex G200, and it appears to be consisted of two identical subunits having molecular weight of 54,000 when estimated by polyacrylamide gel electrophoresis in the presence of sodium dodecyl sulfate. Protease Ci has an optimum pH of 7.5, and has an isoelectric point of 5.5. This enzyme is a metalloprotease, since it is inhibited by o-phenanthroline and can be activated by the addition of divalent metal cations, such as $Mn^++$ and $Co^++$. Protease ci is inhibited by p-hydroxymercuribenzoic acid, but not by either of leupeptin or Ep475 which are specific inhibitors of sulfhydryl protease. It is distinct from protease Pi, a perplasmic insulin degrading enzyme, since protease Ci is localized to the cytoplasm. The physiological function of protease Ci is presently unknown.

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Production of Recombinant Rotavirus Capsid Protein VP7 from Stably Transformed Drosophila melanogaster S2 Cells

  • Park, Jong-Hwa;Chang, Kyung-Hwa;Lee, Youn-Hyung;Kim, Hae-Yeong;Yang, Jai-Myung;Chung, In-Sik
    • Journal of Microbiology and Biotechnology
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    • v.12 no.4
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    • pp.563-568
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    • 2002
  • Stably transformed Drosophila melanogaster 52 cells producing recombinant VP7 were obtained, and recombinant VP7 expression was confirmed by Western blot analysis. The molecular weight of recombinant VP7 expressed in 52 cells was approximately 35.5 kDa, and 75% of the total VP7 produced was present in the medium. Recombinant VP7 contained N-linked glycosylated oligosaccharides. Aprotinin, leupeptin, and polyvinylpyrrolidone did not have any noticeable effect on recombinant VP7 production; however, DMSO and sodium butyrate increased its production by 120% and 60%, respectively.

Purification and Characterization of a Pretense Actinidin Isolated from Cheju Kiwifruit (제주산 키위에서 분리한 단백질분해효소 Actinidin의 정제 및 특성)

  • 조성자;정수현
    • The Korean Journal of Food And Nutrition
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    • v.7 no.2
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    • pp.87-94
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    • 1994
  • A protease, actinidin, was isolated from Cheju kiwi fruit Actinidia chinesis. The enzyme was purified about 8.5 fold with the yield of 25% by column chromatographies of DEAE-Toyopearl and Sphadex. G-100. Purified enzyme gave a single protein band on polyacrylamide gel electrophoresis and its molecular weight estimated by SDS-PAGE was about 27, 000. The optimum pH and temperature were 7.0 and 4$0^{\circ}C$, respectively. This enzyme was stable at the ranges of pH 5.0~9.0 and below 5$0^{\circ}C$. It was also found that Fe+2, Fe+3, and Na+ ions increased enzyme activity, whereas Hg+2 and Co+2 ions decreased. The enzyme was inhibited by phenylmercuric acetate and leupeptin, which indicated that active center of the emzyme had thiol-group. The enzyme reaction followed the Michaelis-Men-ten dkinetics with the Km value of 0.32 mM for casein.

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Characterization of a Fibrinolytic Enzyme Produced by Bacillus subtilis MJ-226 Isolated from Meju (전통 메주에서 분리한 Bacillus subtilis MJ-226이 생산하는 혈전용해효소의 특성)

  • Lim, Sung-Mee
    • Korean Journal of Microbiology
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    • v.45 no.4
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    • pp.377-384
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    • 2009
  • Among 27 Bacillus sp. isolated from Meju, a traditional Korean soybean fermented food, a strain MJ-226 was selected due to its strong fibrinolytic activity, and it was identified to be Bacillus subtilis MJ-226 according to morphological and biochemical characterization and sugar utilization. The fibrinolytic enzyme of B. subtilis MJ-226 was maximally produced by cultivating in the Tryptic Soy Broth (TSB) for 24~26 h at $37^{\circ}C$, and the enzymes activity was promoted with adding glucose, fructose, peptone or yeast extract to TSB. The fibrinolytic enzyme was stable at the range of pH from 6.0 to 8.0, and between 35 and $40^{\circ}C$. Also, when the crude enzyme was exposed to various metal ions and chemical inhibitors for 12 h, the enzyme stability was maintained by $MnSO_4$, $CaCl_2$, KCl, and NaCl. However, the stability was destroyed by treatment with $CuSO_4$, $MgSO_4$, $ZnSO_4$, $FeSO_4$, and $BaCl_2$, and the enzyme was unstable in the presence of chemical inhibitors such as iodoacetic acid, leupeptin, phenylmethanesulphonyl fluoride (PMSF), sodium dodecyl sulfate (SDS), thiourea, trans-1,2-diaminocyclohexane-N,N,N',N'-tetraacetic acid (CDTA) and ethylenediaminetetraacetic acid (EDTA).