1.Study on fermentation condition of alkaline protease gene engineering strain and the purification and characterization of recombinant enzyme.
Xue-Ming TANG ; Zheng-Xiang WANG ; Wei-Lan SHAO ; Ji-Quan LIU ; Hui-Ying FANG ; Jian ZHUGE
Chinese Journal of Biotechnology 2002;18(6):729-734
In a 5L fermentor the production conditions of alkaline protease gene engineering strain BA071 were investigated. The maximum activity of alkaline protease reached 24,480 u/mL in 40 hours of fermentation by combination of enhancing aeration and changing the agitation rate. The fast purification method of recombinant protease was conducted with FPLC (Fast Protein Liquid Chromatography). The crude enzyme, treated with ammonium sulfate fractionation and decolored with DEAE-A-50 and polyethylene glycol concentration, was purified with CM-Sephadex-C-50 and Sephadex-G-75. The purified enzyme appears homologous on SDS-PAGE. The purity of enzyme was increased 76.2 times. SDS-PAGE analysis showed that the molecular weights of expressed recombinant products were about 28 kD. The optimal reaction pH and temperature of recombinant enzyme were at pH11 and 60 degrees C, respectively. The recombinant enzyme exhibited high temperature tolerance and was stable at a wide range of pH. Ca2+, MG2+ can enhance the stability of the recombinant enzyme. While the protease activity of the enzyme was strongly inhibited by Hg2+, Ag+, PMFS [symbol: see text] DFP, and was not affected by SDS and Urea.
Bacillus
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genetics
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metabolism
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Enzyme Stability
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Fermentation
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Genetic Engineering
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Metals
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pharmacology
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Recombinant Proteins
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biosynthesis
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Serine Endopeptidases
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genetics
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isolation & purification
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metabolism
2.Purification and characterization of a 33 kDa serine protease from Acanthamoeba lugdunensis KA/E2 isolated from a Korean keratitis patient.
Hyo Kyung KIM ; Young Ran HA ; Hak Sun YU ; Hyun Hee KONG ; Dong Il CHUNG
The Korean Journal of Parasitology 2003;41(4):189-196
In order to evaluate the possible roles of secretory proteases in the pathogenesis of amoebic keratitis, we purified and characterized a serine protease secreted by Acanthamoeba lugdunensis KA/E2, isolated from a Korean keratitis patient. The ammonium sulfate-precipitated culture supernatant of the isolate was purified by sequential chromatography on CM-Sepharose, Sephacryl S-200, and mono Q-anion exchange column. The purified 33 kDa protease had a pH optimum of 8.5 and a temperature optimum of 55 degrees C. Phenylmethylsulfonylfluoride and 4- (2- Aminoethyl) -benzenesulfonyl-fluoride, both serine protease specific inhibitors, inhibited almost completely the activity of the 33 kDa protease whereas other classes of inhibitors did not affect its activity. The 33 kDa enzyme degraded various extracellular matrix proteins and serum proteins. Our results strongly suggest that the 33 kDa serine protease secreted from this keratopathogenic Acanthamoeba play important roles in the pathogenesis of amoebic keratitis, such as in corneal tissue invasion, immune evasion and nutrient uptake.
Acanthamoeba/*enzymology/isolation & purification/pathogenicity
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Acanthamoeba Keratitis/*parasitology
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Animals
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Cornea/parasitology
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Humans
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Hydrogen-Ion Concentration
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Korea
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Serine Endopeptidases/chemistry/*isolation & purification/*metabolism
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Substrate Specificity
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Temperature
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Virulence Factors
3.Expression and purification of recombinant hypodermin C in Pichia pastoris.
Xing-Chun GAO ; Mei-Qian XU ; Guo-Sheng HE
Chinese Journal of Biotechnology 2007;23(3):552-556
Hypodermin C (HC) cDNA was amplified from recombinant pGEM - T/HC, cloned in frame with the signal sequence in yeast vector pPIC9k. The plasmid was linerarized and transformed into Pichia pastoris GS115 strain by electroporation method. Recombinant strain was screened by G418 resistant, and further confirmed by PCR. The recombinant strain which contains insert was induced in the medium containing 0.5% methanol. The supernatant was collected and then purified by anion exchange chromatography. SDS-PAGE indicated that the target protein is around 28kD. Western-blot showed it can react with rabbit-anti HC serum. Gelatin substrate SDS-PAGE displayed it had enzyme activity. Provided a method to produce enough antigens for carrying out extensive immunological analyses.
Animals
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Blotting, Western
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Cell Line
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Chromatography, Ion Exchange
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Cloning, Molecular
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Electrophoresis, Polyacrylamide Gel
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Gelatin
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metabolism
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Gene Expression
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Immune Sera
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immunology
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Pichia
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genetics
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Plasmids
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genetics
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Rabbits
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Recombinant Proteins
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isolation & purification
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metabolism
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Serine Endopeptidases
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genetics
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immunology
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metabolism
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Substrate Specificity
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Transformation, Genetic
4.Comparison of specific activity and cytopathic effects of purified 33 kDa serine proteinase from Acanthamoeba strains with different degree of virulence.
Won Tae KIM ; Hyun Hee KONG ; Young Ran HA ; Yeon Chul HONG ; Hae Jin JEONG ; Hak Sun YU ; Dong Il CHUNG
The Korean Journal of Parasitology 2006;44(4):321-330
The pathogenic mechanism of granulomatous amebic encephalitis (GAE) and amebic keratitis (AK) by Acanthamoeba has yet to be clarified. Protease 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. castellanii 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.
Virulence Factors/isolation & purification/*metabolism
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Virulence
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Trophozoites/physiology
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Substrate Specificity
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Soil/parasitology
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Serine Endopeptidases/isolation & purification/*metabolism
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Humans
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Epithelial Cells/parasitology/*pathology
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Encephalitis
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Cornea/cytology/parasitology/*pathology
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Cells, Cultured
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Animals
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Acanthamoeba castellanii/enzymology/growth & development/pathogenicity
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Acanthamoeba Keratitis/parasitology
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Acanthamoeba/classification/*enzymology/growth & development/*pathogenicity
5.The homotrimeric structure of HtrA2 is indispensable for executing its serine protease activity.
Min Kyung NAM ; Young Mo SEONG ; Hyo Jin PARK ; Ju Youn CHOI ; Seongman KANG ; Hyangshuk RHIM
Experimental & Molecular Medicine 2006;38(1):36-43
Serine protease activity of high temperature requrement 2 (HtrA2) is essential for promoting cell death, as well as for protecting against cellular stresses. An X-ray crystallographic study described the formation of a pyramid shaped homotrimer that is a proteolytically competent form of HtrA2; however, little is known about effects of the trimeric structure of HtrA2 on the natural substrates. In this study, we generated the HtrA2 protein that has a single point mutation at the homotrimerization motif to assess relationship between structure and the proteolytic activity of HtrA2 on its substrates. Using gel filtration, a native gel electrophoresis system, and a co-precipitation assay, we confirm that phenylalanine 149 in HtrA2 is a crucial determinant for the formation of the HtrA2 homotrimeric structure. Moreover, we described that the HtrA2 monomeric form abolished not only autoproteolytic activity, but also the proteolytic activity against XIAP (X-linked inhibitor of apoptosis protein) known as the HtrA2 substrate. Taken together, the results indicate that the homotrimeric structure of HtrA2 is required for executing its serine protease activity.
Alanine/metabolism
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Amino Acid Motifs
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Amino Acid Sequence
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Amino Acid Substitution
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Cell Line
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Chromatography, Gel
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Crystallography, X-Ray
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Escherichia coli/genetics
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Glutathione Transferase/metabolism
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Hydrolysis
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Molecular Sequence Data
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Phenylalanine/metabolism
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Point Mutation
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Precipitin Tests
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Protein Structure, Tertiary
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Recombinant Fusion Proteins/metabolism
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Research Support, Non-U.S. Gov't
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Sequence Homology, Amino Acid
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Serine Endopeptidases/*chemistry/genetics/isolation & purification/*metabolism
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Structure-Activity Relationship
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Transfection
6.Recapitulation of SARS-CoV-2 infection and cholangiocyte damage with human liver ductal organoids.
Bing ZHAO ; Chao NI ; Ran GAO ; Yuyan WANG ; Li YANG ; Jinsong WEI ; Ting LV ; Jianqing LIANG ; Qisheng ZHANG ; Wei XU ; Youhua XIE ; Xiaoyue WANG ; Zhenghong YUAN ; Junbo LIANG ; Rong ZHANG ; Xinhua LIN
Protein & Cell 2020;11(10):771-775
Betacoronavirus
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isolation & purification
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pathogenicity
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Bile Acids and Salts
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metabolism
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Bile Ducts, Intrahepatic
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pathology
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virology
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Cell Culture Techniques
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Coronavirus Infections
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complications
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pathology
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Cytokine Release Syndrome
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etiology
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physiopathology
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Cytopathogenic Effect, Viral
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Epithelial Cells
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enzymology
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pathology
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virology
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Humans
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Hyperbilirubinemia
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etiology
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Liver
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pathology
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Organoids
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pathology
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virology
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Pandemics
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Peptidyl-Dipeptidase A
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analysis
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Pneumonia, Viral
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complications
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pathology
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Receptors, Virus
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analysis
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Serine Endopeptidases
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analysis
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Viral Load