• 제목/요약/키워드: residual enzyme activity

검색결과 97건 처리시간 0.021초

배 첨가가 막걸리의 품질과 생리 기능성에 미치는 영향 (Effect of Pears on the Quality and Physiological Functionality of Makgeoly)

  • 이대형;김재호;이종수
    • 한국식품영양학회지
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    • 제22권4호
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    • pp.606-611
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    • 2009
  • This study was conducted to develop a high value pear Makgeoly that possessed the physiological functionality of pears and rice. To accomplish this, the effects of the addition of pears on the alcohol fermentation of Korean traditional rice wine, Makgeoly were investigated. The total acidity contents were unchanged for 9 days of fermentation after the addition of pear to the mash, however, it decreased by approximately 0.13% after 9 days. Additionally, the ethanol contents increased to 16.0% after 5 days of fermentation, after which they did not change significantly. The residual reducing sugar and free sugar content were decreased after 7 days and 5 days of fermentation, respectively. The total acceptability was the best in the Makgeoly that contained grated pear after 10 days of fermentation. Additionally, antihypertensive angiotensin Iconverting enzyme inhibitory activity was found to be greater than 80% in all pear Makgeoly, but the fibrinolytic activity, SOD-like activity and antioxidant activity were weakened. Based on these results, Makgeoly that was brewed by the addition of 20% grated pear into the fermented broth from fermentation at $20^{\circ}$ for 10 days has the potential to become a new functional Korean traditional Makgeoly with high acceptability and antihypertensive properties.

Improved Thermal Stability of a Novel Acidophilic Phytase

  • Byung Sam Son;So Hyeong Kim;Hye-Young Sagong;Su Rin Lee;Eun Jung Choi
    • Journal of Microbiology and Biotechnology
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    • 제34권5호
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    • pp.1119-1125
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    • 2024
  • Phytase increases the availability of phosphate and trace elements by hydrolyzing the phosphomonoester bond in phytate present in animal feed. It is also an important enzyme from an environmental perspective because it not only promotes the growth of livestocks but also prevents phosphorus contamination released into the environment. Here we present a novel phytase derived from Turicimonas muris, TmPhy, which has distinctive structure and properties compared to other previously known phytases. TmPhy gene expressed in the Pichia system was confirmed to be 41 kDa in size and was used in purified form to evaluate optimal conditions for maximum activity. TmPhy has a dual optimum pH at pH3 and pH6.8 and exhibited the highest activity at 70℃. However, the heat tolerance of the wildtype was not satisfactory for feed application. Therefore, random mutation, disulfide bond introduction, and N-terminal mutation were performed to improve the thermostability of the TmPhy. Random mutation resulted in TmPhyM with about 45% improvement in stability at 60℃. Through further improvements, a total of three mutants were screened and their heat tolerance was evaluated. As a result, we obtained TmPhyMD1 with 46.5% residual activity, TmPhyMD2 with 74.1%, and TmPhyMD3 with 66.8% at 80℃ heat treatment without significant loss of or with increased activity.

Effect of Omeprazole on Membrane P-Type ATPase and Peptide Transport in Helicobacter pylori

  • KI, MI-RAN;SOON-KYU YUN;SE-YOUNG HWANG
    • Journal of Microbiology and Biotechnology
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    • 제9권3호
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    • pp.235-242
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    • 1999
  • We investigated the growth-inhibitory mechanism of Helicobacter pylori by omeprazole (OMP) and its activated sulfenamide (OAS). Using dithiothreitol (DTT) and 5,5'-dithio-bis[2-nitrobenzoic acid] (DTNB; Ellman's reagent), we first determined the relationship between the binding capacity of these compounds to H. pylori membrane and its significance to membrane P-type ATPase activity. After incubation of the intact H. pylori cells with either OMP or OAS, the residual quantity of free SH-groups on the cell membrane was measured, and, the resulting values were plotted as a function of time. From this experiment, we found that there was a considerable difference in the membrane-binding rates between OMP and OAS. At neutral pH, the disulfide bond formation on H. pylori membrane was completed within 2 min of incubation of the intact cells with OAS. By OMP, however, it was gradually formed, exceeding 10 min of incubation for completion, whereby, the extent of P-type ATPase inhibition appeared to be proportional to the disulfide forming rate. From this data, it was suggested that the disulfide formation might directly affect enzyme activity. Since OMP per se cannot yield a disulfide bond with cysteine, it is predicted that the enzyme inactivation must be caused by the OAS form. Accordingly, we postulated that, under the neutral pH, OMP could be converted to OAS in the course of transport. By extrapolating the inhibitory slopes, we could evaluate K₁ values, relating to their minimal inhibitory concentrations (MICs) for H. pylori growth. In these MIC ranges, H. pylori uptake or vesicular export of nutrients such as peptides were totally prohibited, but their effect in Escherichia coli were negligible. From these observations, we strongly suggest that the P-type ATPase activity is essential for the survival of H. pylori cells in particular.

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Thermostable Sites and Catalytic Characterization of Xylanase XYNB of Aspergillus niger SCTCC 400264

  • Li, Xin Ran;Xu, Hui;Xie, Jie;Yi, Qiao Fu;Li, Wei;Qiao, Dai Rong;Cao, Yi;Cao, Yu
    • Journal of Microbiology and Biotechnology
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    • 제24권4호
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    • pp.483-488
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    • 2014
  • In order to improve the expression of heat-resistant xylanase XYNB from Aspergillus niger SCTCC 400264, XynB has been cloned into Pichia pastoris secretary vector pPIC9K. The XynB production of recombinant P. pastoris was four times that of E. coli, and the $V_{max}$ and specific activity of XynB reached $2,547.7{\mu}mol/mg$ and 4,757 U/mg, respectively. XynB still had 74% residual enzyme activity after 30 min of heat treatment at $80^{\circ}C$. From the van der Waals force analysis of XYNB (ACN89393 and AAS67299), there is one more oxygen radical in AAS67299 in their catalytic site, indicating that the local cavity is much more free, and it is more optimal for substrate binding, affinity reaction, and proton transfer, etc, and eventually increasing enzyme activity. The H-bonds analysis of XYNB indicated that there are two more H-bonds in the 33rd Ser of XYNB (AAS67299) than in the 33rd Ala(ACN89393 ), and two H-bonds between Ser70 and Asp67.

Enhancing the Thermal Resistance of a Novel Acidobacteria-Derived Phytase by Engineering of Disulfide BridgesS

  • Tan, Hao;Miao, Renyun;Liu, Tianhai;Cao, Xuelian;Wu, Xiang;Xie, Liyuan;Huang, Zhongqian;Peng, Weihong;Gan, Bingcheng
    • Journal of Microbiology and Biotechnology
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    • 제26권10호
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    • pp.1717-1722
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    • 2016
  • A novel phytase of Acidobacteria was identified from a soil metagenome, cloned, overexpressed, and purified. It has low sequence similarity (<44%) to all the known phytases. At the optimum pH (2.5), the phytase shows an activity level of 1,792 μmol/min/mg at physiological temperature (37℃) and could retain 92% residual activity after 30 min, indicating the phytase is acidophilic and acidostable. However the phytase shows poor stability at high temperatures. To improve its thermal resistance, the enzyme was redesigned using Disulfide by Design 2.0, introducing four additional disulfide bridges. The half-life time of the engineered phytase at 60℃ and 80℃, respectively, is 3.0× and 2.8× longer than the wild-type, and its activity and acidostability are not significantly affected.

Biochemical Characterization of a Novel Alkaline and Detergent Stable Protease from Aeromonas veronii OB3

  • Manni, Laila;Misbah, Asmae;Zouine, Nouhaila;Ananou, Samir
    • 한국미생물·생명공학회지
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    • 제48권3호
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    • pp.358-365
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    • 2020
  • An organic solvent- and bleach-stable protease-producing strain was isolated from a polluted river water sample and identified as Aeromonas veronii OB3 on the basis of biochemical properties (API 20E) and 16S rRNA sequence analysis. The strain was found to hyper-produce alkaline protease when cultivated on fish waste powder-based medium (HVSP, 4080 U/ml). The biochemical properties and compatibility of OB3 with several detergents and additives were studied. Maximum activity was observed at pH 9.0 and 60℃. The crude protease displayed outstanding stability to the investigated surfactants and oxidants, such as Tween 80, Triton X-100, and H2O2, and almost 36% residual activity when incubated with 1% SDS. Remarkably, the enzyme demonstrated considerable compatibility with commercial detergents, retaining more than 100% of its activity with Ariel and Tide (1 h, 40℃). Moreover, washing performance of Tide significantly improved by the supplementation of small amounts of OB3 crude protease. These properties suggest the potential use of this alkaline protease as a bio-additive in the detergent industry and other biotechnological processes such as peptide synthesis.

Expression and Characterization of a Novel Nitrilase from Hyperthermophilic Bacterium Thermotoga maritima MSB8

  • Chen, Zhi;Chen, Huayou;Ni, Zhong;Tian, Rui;Zhang, Tianxi;Jia, Jinru;Yang, Shengli
    • Journal of Microbiology and Biotechnology
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    • 제25권10호
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    • pp.1660-1669
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    • 2015
  • The present study describes the gene cloning, overexpression and characterization of a novel nitrilase from hyperthermophilic bacterium Thermotoga maritima MSB8. The nitrilase gene consisted of 804 base pairs, encoding a protein of 268 amino acid residues with a molecular mass of 30.07 kDa after SDS-PAGE analysis. The optimal temperature and pH of the purified enzyme were 45℃ and 7.5, respectively. The enzyme demonstrated good temperature tolerance, with 40% residual activity after 60 min of heat treatment at 75℃. The kinetic constants Vmax and Km of this nitrilase toward 3-cyanopyridine were 3.12 μmol/min/mg and 7.63 mM, respectively. Furthermore, this novel nitrilase exhibited a broad spectrum toward the hydrolysis of the aliphatic nitriles among the tested substrates, and particularly was specific to aliphatic dinitriles like succinonitrile, which was distinguished from most nitrilases ever reported. The catalytic efficiency kcat/Km was 0.44 /mM/s toward succinonitrile. This distinct characteristic might enable this nitrilase to be a potential candidate for industrial applications for biosynthesis of carboxylic acid.

Characteristics of Urease from Vibrio parahaemolyticus Possessing tah and the Genes Isolated in Korea

  • Kim, Young-Hee;Kim, Jong-Sook
    • Journal of Microbiology
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    • 제39권4호
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    • pp.279-285
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    • 2001
  • Vibrio parahaemolyticus is a halophilic bacterium associated with seafood gastroenteritis. An unusual strain of Kanagawa-positive urease producing Vibrio parahaemolyticus O1:K1 was isolated from the environment and identified . A polymerase chain reaction assay revealed that this strain harbored both the tdh and the genes. The urease from this strain was studied. Maximum urease production was induced in LB medium containing 0.2% urea, 0.5% glucose, 2% NaCl and pH 5.5 with 6h of culti-vation at 37$\^{C}$ under aeration. Purification of urease was achieved by the process of whole cell lysate, 65% ammonium sulphate precipitation, DEAE-cellulose ion exchange column chromatography, Sepharose CL-6B gel filtration and oxirane activated Sepharose 6B-urea affinity chromatography with 203 fold purification and 2.2% yield. Analysis of the purified enzyme by SDS-PAGE demonstrated the presence of the subunits with a molecular weight of 85kDa, 59kDa, 41kDa and the molecular weight for the native enzyme by nondenaturing PAGE and gel filtration chromatography was 255kDa. The purified urease was stable at pH 7.5 and the opeimal pH in HEPES buffer was 8.0 The enzyme was stable at 60$\^{C}$ for 2 h with a residual activity of 32% . The addition of 10$\mu$M if NiCl$_2$maintained stability for 30 min. The Km value of the purified enzyme was 35.6 mM in urea substrate. The TD$\_$50/(median toxic dose) of the purified urease was 2.5$\mu\textrm{g}$/ml on human leukemia cells.

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Immobilization of GH78 α-L-Rhamnosidase from Thermotoga petrophilea with High-Temperature-Resistant Magnetic Particles Fe3O4-SiO2-NH2-Cellu-ZIF8 and Its Application in the Production of Prunin Form Naringin

  • Xu, Jin;Shi, Xuejia;Zhang, Xiaomeng;Wang, Zhenzhong;Xiao, Wei;Zhao, Linguo
    • Journal of Microbiology and Biotechnology
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    • 제31권3호
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    • pp.419-428
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    • 2021
  • To efficiently recycle GH78 thermostable rhamnosidase (TpeRha) and easily separate it from the reaction mixture and furtherly improve the enzyme properties, the magnetic particle Fe3O4-SiO2-NH2-Cellu-ZIF8 (FSNcZ8) was prepared by modifying Fe3O4-NH2 with tetraethyl silicate (TEOS), microcrystalline cellulose and zinc nitrate hexahydrate. FSNcZ8 displayed better magnetic stability and higher-temperature stability than unmodified Fe3O4-NH2 (FN), and it was used to adsorb and immobilize TpeRha from Thermotoga petrophilea 13995. As for properties, FSNcZ8-TpeRha showed optimal reaction temperature and pH of 90℃ and 5.0, while its highest activity approached 714 U/g. In addition, FSNcZ8-TpeRha had better higher-temperature stability than FN. After incubation at 80℃ for 3 h, the residual enzyme activities of FSNcZ8-TpeRha, FN-TpeRha and free enzyme were 93.5%, 63.32%, and 62.77%, respectively. The organic solvent tolerance and the monosaccharides tolerance of FSNcZ8-TpeRha, compared with free TpeRha, were greatly improved. Using naringin (1 mmol/l) as the substrate, the optimal conversion conditions were as follows: FSNcZ8-TpeRha concentration was 6 U/ml; induction temperature was 80℃; the pH was 5.5; induction time was 30 min, and the yield of products was the same as free enzyme. After repeating the reaction 10 times, the conversion of naringin remained above 80%, showing great improvement of the catalytic efficiency and repeated utilization of the immobilized α-L-rhamnosidase.

어류 내장 유래 단백질 분해효소로부터 열안정성 개선을 위한 고정화 효소의 제조 (Preparation of an Immobilized Enzyme for Enhancing Thermostability of the Crude Proteinase from Fish Intestine)

  • 전유진;박표잠;변희국;송병권;김원석;김세권
    • 생명과학회지
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    • 제8권6호
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    • pp.627-637
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    • 1998
  • 수산가공공장에서 원료어 처리시 생성되는 부산물인 참치 내장중 유문수 조직으로부터 높은 활성을 가진 단백질 분해효소를 추출하고, 이것을 부분 정제하여 참치 유문수 유래 조효소(TPCCE)를 대량으로 제조하였다. 제조된 TP-CCE에 대한 최적활성조건을 규명하였으며, 아울러 시판 정제 단백질 분해효소들과 비교하였다. 또한 TPCCE의 열안정성을 높이고자 몇가지 종류의 담체에 물리적으로 흡착시켜 제조한 고정화 효소의 열안정성을 검토하였다. 1. 참치 유문수 조직으로부터 높은 활성을 가진 단백질 가수분해효소를 부분정제하여 조효소 상태를 추출하였으며 이때의 수율은 약 2.7% 정도로 매우 높았다. 활성은 천연기질인 카제인에 대하여 0.54 U/mg이었고, 합성기질인 BTEE와 BAEE에서는 각각 1.10과 2.69 U/mg로서 시판정제효소인 trypsin과 유사한 활성을 나타내었다. 2. 참치유문수 유래 조효소의 천연기질인 casein에 대한 가수분해의 최적조건은 pH 10.0, 반응온도 45$^{\circ}C$, 반응시간 12시간이었으며, 이 때의 가수분해도는 약 80%였다. 3. 참치 유문수로부터 추출된 조효소를 여러 가지 담체에 고정화시켰으며 이용된 담체중에서 고정화율은 Chitopearl, DEAE-Cellulose 및 키틴 순으로 가장 높았으며(70~80%), 합성기질인 BAEE에 대한 활성은 키틴, DEAE-Cellu-lose 및 키토산 고정화 효소의 순서로 각각 2.46 U/mg, 2.35U/mg, 및 2.29 U/mg이었고, BTEE에 대한 활성은 키토산, 키틴, CM-Cellulose의 순서로 각각 0.89 U/mg, 0.88 U/mg 및 0.86 U/mg이였다. 이중 키틴 고정화 효소가 모든 조건에서 충분한 효과를 보여 가장 효율적으로 나타났다. 4. 고정화 효소의 열안정성에서 대부분의 고정화 효소는 유리 TPCCE보다 높은 열안정을 보였으며, 특히 DEAE-Ce-llulose를 이용한 고정화 효소는 6$0^{\circ}C$의 높은 온도에서 7일이 경과한 후에도 약 95%의 활성을 유지하여 장시간의 효소 반응공정이나 고정화 효소를 이용한 컬럼 반응에서의 연속적 단백질 가수분해물 생성과 같은 공정에서 매우 효과적으로 이용될 수 있을 것으로 판단된다.

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