• 제목/요약/키워드: optimization of enzyme production

검색결과 136건 처리시간 0.036초

Lipomyces starkeyi KCTC 17343에 의한 extracellular dextranase 최적생산과 덱스트란 hydrolysates 분석 (Optimization of an Extracellular Dextranase Production from Lipomyces starkeyi KCTC 17343 and Analysis of Its Dextran Hydrolysates)

  • 장윤혁;염중현;정경환;장병철;신정희;유선균
    • 생명과학회지
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    • 제19권4호
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    • pp.457-461
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    • 2009
  • 본 연구는 Lipomyces starkeyi KCTC 17343에 의한 dextranase 최적 생산 조건을 확립하고 dextran에 대한 효소 분해 특성을 규명하였다. 균주의 성장과 dextranase생산은 발효초기 pH와 온도에 따라 다르며 최적 pH는 4-5, 최적온도는 $25-30^{\circ}C$의 범위에서 결정이 되었다. 최적 발효조건에서의 dextranase 생산은 total enzyme activity가 4.85 IU/ml으로 나타났다. 이때의 발효균주의 specific growth rate는 $0.076h^{-1}$이었다. 발효 중 dextranase의 활성은 발효 정상기에서도 안정성을 유지하였다. Dextranase에 의한 dextran을 가수분해 결과, 가수분해물의 구성은 DP2 to 8에 이르는 올리고 덱스트란으로 이루어졌다.

한천 분해균 Cytophage sp. ACLJ-18의 분리 및 효소 생산 조건 최적화 (Isolation of Agar Degrading Bacteria, Cytophaga sp. ACLJ-18 and Optimization of Enzyme Production)

  • 조순영;주동식
    • KSBB Journal
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    • 제11권5호
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    • pp.593-599
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    • 1996
  • 군부에서 분리한 한천 분해 균주의 최적 효소 생산 조건은 질소원으로 nutrient broth, yeast extract를 각각 0.3%, 0.2%였고, 탄소원으로는 agar 0.5%가 가장 적절한 조건이었다. NaCI 농도는 2.0 % %, pH 7.0, 온도는 $30{\pm}2^{\circ}C$, 의 조건에서 약 96시간 배양하는 것이 가장 적절한 효소 생산 조건이었다. 분리균주의 생리, 생화학 특성을 조사한 결과, 그랑 음성 간균으로 gold-yellow colony를 형성하는 균 으로 oxidase, catalase 생성의 호기성균이었다. 각종 유기산류, 아미노산류 및 당류의 이용성 시험에 서 citrate, lactate, salicine, histidine, glucose, melibiose, sucrose에 대해 양성을 나타내었고, chitin, casein, gelatin을 분해하고, indole 및 H2S 를 생성하지 않았다. 이상의 결과로부터 본 균주는 Cytophaga sp.로 동정되었다.

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팽윤 Extrusion 전분을 기질로 한 불균일상 효소 반응계에서 Cyclodextrin 생성반응의 수치적 해석 (Kinetic Modiling of Cyclodextrin forming Reactionin a Heterogeneous Enzyme Reaction System using Swollen Extrusion Starch)

  • 조명진;박동찬;이용현
    • 한국미생물·생명공학회지
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    • 제23권4호
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    • pp.425-431
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    • 1995
  • A kinetic model of the cyclodextrin formation in a heterogeneous enzyme reaction system using swollen extrusion starch as substrate was derived emphasing the structural features of extrusion starch. The degree of gelatinization, the ratio of accessible and inaccessible portion of extrusion starch, adsorption of CGTase on swollen starch, the structural transformation during reaction, and product inhibition caused by produced CDs were considered in deriving kinetic model. Various kinetic constants were also evaluated. The derived kinetic equation was numerically simulated, which result showed that the derived kinetic equations can be used to predict the experimental data reasonably well under the various experimental conditions. Kinetic model can be utilized for the optimization of enzyme reactor and the process development for CD production from swollen extrusion starch.

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Optimization of Enzymatic Hydrolysis Conditions for Production of Angiotensin-I Converting Enzyme Inhibitory Peptide from Casein

  • Do, Jeong-Ryong;Kim, Ki-Ju;Kim, Hyun-Ku;Kim, Young-Myoung;Park, Yeung-Beom;Lee, Yang-Bong;Kim, Seon-Bong
    • Food Science and Biotechnology
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    • 제16권4호
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    • pp.565-571
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    • 2007
  • This study was carried out to investigate an optimum condition for the high angiotensin-l converting enzyme (ACE) inhibitory activity and the yield on enzyme concentration, casein concentration, and hydrolysis time. The optimum condition was performed by response surface methodology for acquirement of casein hydrolysate of milk which shows high ACE inhibitory activity, Among 8 tested enzymes, Protamex showed the highest activation degree with 77.03 unit/g from casein. Their hydrolysis degrees of flovourzyme 500MG, protamex, mixture from 1% casein were 85.5, 88.5, and 93.5%, respectively. The ranges of enzyme concentration (0.25-1.25%), casein concentration (2.5-12.5%), and hydrolysis time (20-100 min) as 3 independent variables through preliminary experiments of the yield of casein hydrolysate and ACE inhibitory activity, and it shows optimum response surface at a saddle point. It shows enzyme concentration (0.64%), casein concentration (8.38%), and hydrolysis time (55.81 min) in the yield aspect and showed the highest activity at enzyme concentration (0.86%), casein concentration (5.97%), and hydrolysis time (63.86 min) in ACE inhibitory aspect. The $R^2$ value of a fitted optimum formula on the hydrolysis yield was 0.9751 as the significant level of 1%. The $R^2$ value of a fitted optimum formula on ACE inhibitory activity is 0.8398, and the significance is recognized in the range of 5%.

Optimization of Fungal Enzyme Production by Trichoderma harzianum KUC1716 through Surfactant-Induced Morphological Changes

  • Lee, Hanbyul;Lee, Young Min;Heo, Young Mok;Hong, Joo-Hyun;Jang, Seokyoon;Ahn, Byoung Jun;Lee, Sung-Suk;Kim, Jae-Jin
    • Mycobiology
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    • 제45권1호
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    • pp.48-51
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    • 2017
  • The morphological optimization of Trichoderma harzianum was carried out using several surfactants to achieve increased cellulase production. Addition of the surfactants to the culture medium successfully modified the fungal morphology from an aggregated form to a dispersed form. Optimization of the fungal morphology increased cellulase activity up to 177%. The morphologically optimized conditions enhanced the accessibility of the fungus to substrates and thus promoted cellulase production.

Optimization of the Production of Fibrinolytic Enzyme from Bacillus firmus NA-1 in Fermented Soybeans

  • Seo, Ji-Hyun;Lee, Sam-Pin
    • Preventive Nutrition and Food Science
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    • 제9권1호
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    • pp.14-20
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    • 2004
  • Bacillus strains capable of producing fibrinolytic enzyme were isolated from traditional fermented Korean soybean paste and Japanese fermented soybean (Natto). Among the 16 strains, a selected Bacillus sp. was identified as bacillus firmus, with 80.7% homology, by API kit analysis. Seed starter or B. firmus NA-1 was prepared with 5% soymilk prepared from micronized soybean powder. To produce fibrinolytic enzyme by B. firmus NA-1 the liquid culture was performed with NB broth (pH 7.0) fortified with 1% galactose, 0.1% tryptone, and 0.5% $K_2$HPO$_4$, by shaking with 180 rpm at 37$^{\circ}C$. Fibrinolytic enzyme activity reached the highest value at 7.8 unit/mL (plasmin unit) after fermentation for 72 hr. The crude fibrinolytic enzyme showed higher relative activity in the range of pH 7.0∼9.0. The activity of crude fibrinolytic enzyme was well maintained even after concentration by the vacuum evaporation at 5$0^{\circ}C$ for 1 hr.

Optimization of Shark (Squatina oculata) Cartilage Hydrolysis for the Preparation of Chondroitin Sulfate

  • Jo, Jin-Ho;Do, Jeong-Ryong;Kim, Young-Moung;Kim, Dong-Soo;Lee, Taek-Kyun;Kim, Seon-Bong;Cho, Seung-Mock;Kang, Suk-Nam;Park, Douck-Choun
    • Food Science and Biotechnology
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    • 제14권5호
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    • pp.651-655
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    • 2005
  • Enzymatic hydrolysis of shark (Squatina oculata) cartilage (SC) was optimized by response surface methodology (RSM) for chondroitin sulfate (CS) preparation. Among 11 commercial proteases, Maxazyme NNP showed highest productivity (CS yield per enzyme cost) of CS. Optimal hydrolysis conditions determined by RSM were 1.63% and 2.87 hr for enzyme concentration and hydrolysis time ($r^2\;=\;0.9527$, p<0.0l), respectively and highest yield of hydrolysate under the conditions was 42.3%. The yield ($43.1{\pm}2.1%$) and CS content ($24.8{\pm}0.1%$) of hydrolysate at optimal condition verified statistical optimization of SC enzymatic hydrolysis was valid.

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

  • 윤기홍;신혜영
    • 한국미생물·생명공학회지
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    • 제38권4호
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    • pp.385-390
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    • 2010
  • 청국장의 기호도를 개선하는 발효균으로 분리된 protease 생산균은 Bacillus licheniformis로 확인되었다. Protease 생산을 위한 배지를 최적화하기 위한 탄소원, 질소원, 인, 금속이온의 성분을 변화시키면서 균의 성장과 효소 생산성을 비교하였다. Glucose를 탄소원으로 사용하였을 때는 균의 성장은 정상적으로 일어나지만, protease 생산이 심하게 억제되는 것으로 나타났으며, Potato starch를 탄소원으로 사용하였을 때 효소 생산성이 가장 높았다. 질소원으로는 yeast extact가 효소 생산에 가장 적합하였다. 한편 2가 금속이온중 $Zn^{2+}$, $Cu^{2+}$, $Co^{2+}$을 배지에 첨가하였을 때는 균의 성장이 심하게 저해되었으며, 효소 생산도 되지 않았다. $CaCl_2$를 첨가한 배지에서는 균이 성장과 효소 생산성이 증가되었다. Potato starch(1.5%), yeast extract(1.5%), $CaCl_2$(0.7%), $K_2HPO_4$(0.03%)와 $KH_2PO_4$(0.03%)를 포함하는 것으로 구성된 최적화 배지에서 최대효소 생산성은 800 U/mL로 나타났으며 28시간 이후에는 배양액내 효소활성이 서서히 감소하였다.

탈지미세조류의 무효소 당화를 위한 마이크로파 전처리 조건 최적화 (Optimization of Microwave-Assisted Pretreatment Conditions for Enzyme-free Hydrolysis of Lipid Extracted Microalgae)

  • 정현진;민보라;김승기;조재민;김진우
    • Korean Chemical Engineering Research
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    • 제56권2호
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    • pp.229-239
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    • 2018
  • 본 연구의 목적은 탈지미세조류(LEA) 세포벽 분해를 통한 바이오당 생산에 있어 당화효소 사용없이 마이크로파 전처리만을 이용하여 글루코오스와 자일로오스를 생산하는 것이다. LEA의 주성분인 셀룰로오스와 헤미셀룰로오스의 무효소 당화를 위해 산 가수분해 기반의 마이크로파 전처리 조건을 반응표면분석법을 이용하여 최적화하였다. 마이크로파를 이용한 무효소 당화 공정의 주요 변수는 마이크로파 출력(198~702 W), 전처리 시간(39~241 sec)와 황산 농도(0~0.1 mol)로 최적 조건 예측을 위해 중심합성계획법을 이용하여 2차 회귀함수를 도출하였다. 마이크로파 출력과 전처리 시간이 LEA로부터 육탄당(C6)과 오탄당(C5) 생산에 유의한 영향을 주는 변수이며 증가에 따라 육탄당과 오탄당 당화율이 증가하는 경향을 확인하였다. 육탄당과 오탄당 당화율 최대화를 위한 산 가수분해를 적용한 마이크로파 전처리 최적 조건은 마이크로파 출력 700 W, 전처리 시간 185.7 sec와 황산 0.48 mol으로 육탄당 당화율 92.7%와 오탄당 당화율 74.5%가 예측되었으며 확인 실험을 통해 육탄당 당화율 94.2%와 오탄당 당화율 70.8%가 확인되어 예측의 유효성을 확인할 수 있었다. 이는 LEA의 셀룰로오스와 헤미셀룰로오스 당화를 위해 산 가수분해 적용 마이크로파 전처리만을 이용한 무효소 당화 공정 적용과 $100^{\circ}C$ 이하의 낮은 온도와 짧은 전처리 시간 적용을 가능하여 기존 전처리 대비 효과적인 공정 임을 입증했다.

Optimization of Medium for Lipase Production from Zygosaccharomyces mellis SG1.2 Using Statistical Experiment Design

  • Pramitasari, Marisa Dian;Ilmi, Miftahul
    • 한국미생물·생명공학회지
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    • 제49권3호
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    • pp.337-345
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    • 2021
  • Lipase (triacylglycerol lipase, EC 3.1.1.3) is an enzyme capable of hydrolyzing triacylglycerol, to produce fatty acids and glycerol and reverse the reaction of triacylglycerol synthesis from fatty acids and glycerol through transesterification. Applications of lipase are quite widespread in the industrial sector, including in the detergent, paper, dairy, and food industries, as well as for biodiesel synthesis. Lipases by yeasts have attracted industrial attention because of their fast production times and high stability. In a previous study, a lipase-producing yeast isolate was identified as Zygosaccharomyces mellis SG1.2 and had a productivity of 24.56 U/mg of biomass. This productivity value has the potential to be a new source of lipase, besides Yarrowia lypolitica which has been known as a lipase producer with a productivity of 0.758 U/mg. Lipase production by Z. mellis SG1.2 needs to be increased by optimizing the production medium. The aims of this study were to determine the significant component of the medium for lipase production and methods to increase lipase production using the optimum medium. The two methods used for the statistical optimization of production medium were Taguchi and RSM (Response Surface Methodology). The data obtained were analyzed using Minitab 18 and SPSS 23 software. The most significant factors which affected lipase productivity were olive oil and peptones. The optimum medium composition consisted of 1.02% olive oil, 2.19% peptone, 0.05% MgSO4·7H2O, 0.05% KCl, and 0.2% K2HPO4. The optimum medium was able to increase the lipase productivity of Z. mellis SG1.2 to 1.8-fold times the productivity before optimization.