• Title/Summary/Keyword: a-glucoamylase

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Isolation of Potent Amylolytic Fungus Rhizopus oryzae from Nuruk (누룩으로부터 전분 분해 활성이 우수한 Rhizopus oryzae 균주의 분리)

  • Choi, Yeong-Hwan;Choi, Da-Hye;Park, Eun-Hee;Kim, Myoung-Dong
    • Microbiology and Biotechnology Letters
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    • v.44 no.3
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    • pp.376-382
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    • 2016
  • The amylolytic enzyme activities of nuruks collected or produced in this study were examined. A maximum α-amylase activity of 24,747.1 ± 777.7 units/mg protein was obtained for a nuruk incubated at a relative humidity of 40% at 30℃. A nuruk matured at a relative humidity of 50% at 25℃ showed the highest glucoamylase acitivity. Among the 98 fungal strains isolated from the nuruk exhibiting the highest amylolytic enzyme activities, 26 strains of Aspergillus oryzae and 18 strains of Rhizopus oryzae were identified. Rhizopus oryzae MBF345 showed an α-amylase activity of 36,724.9 ± 10.2 units/mg protein and a glucoamylase activity of 4,911.8 ± 48.1 SP. These values were 1.7-fold and 1.4-fold greater, respectively, than those of the control strain. Strain MBF345 was deposited as KCTC46312 in the Korean Culture Type Collection.

Expression of Biologically Active Insect-Derived Antibacterial Peptide, Defensin, in Yeast (효모에서 활성형의 곤충유래 항균펩티드 defensin의 발현)

  • 강대욱;안순철;김민수;안종석
    • Journal of Life Science
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    • v.12 no.4
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    • pp.477-482
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    • 2002
  • As a biological model system for the production of an active antibacterial peptide, we have attempted the expression and secretion of insect defensin in Saccharomyces cerevisiae. Nucleotide sequences encoding mature defensin composed of 40 amino acids were fused in frame with promoter and signal sequence of Saccharomyces diastaticus glucoamylase, and mating factor $\alpha$ l[MF $\alpha$1] prosequence. The host strain, S. cerevisiae 2805 was transformed with the resulting plasmid, pSMFll The secretion of functional defensin was confirmed by growth inhibition zone assay using Micrococcus luteus as a test organism. Insect defensin was secreted to the culture supernatant in biologically active form by glucoamylase signal sequence and mating factor $\alpha$1 prosequence. Most of antibacterial activity was detected in the culture supernatant. Defensin was also active against Staphylococcus aureus and Listeria monocytogenes.

Purification and Properties of Glucoamylase from Schwanniomyces castellii (Schwanniomyces castellii Glucoamylase의 정제 및 성질)

  • Bai, Suk;Park, Jong-Chun;Kim, Dong-Ho;Kim, Kang-Hwa;Chun, Soon-Bai
    • Korean Journal of Microbiology
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    • v.29 no.2
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    • pp.104-110
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    • 1991
  • The glucoamylase of Schwanniomyces castellii was purified to homogeneity from the culture filtrate. the purified enzyme was a glycoprotein with a molecular mass of about 145 KDa, which was monomeric protein with an isoelectric point of 4.3. The pH and temperature optima were 5.5 and 40.deg.C, respectively. The enzyme was fairly stable up to 50.deg.C and at acid pH range (pH 4.5-6.0). The apparent Km of the enzyme toward soluble starch, isomaltose and pullulan were 3.84, 0.51 and 13.7 mg/ml, respectively. The analysis of amino acid composition on this enzyme was found to be acidic protein like other fungal glucoamylase. The amino acid sequence of N-terminal peptide consisted of Ala-Pro-Ala-Asp-Gly-Ile-Gly-Asp-X-Ala-X-Ala.

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Mechanism of Enzymatic Hydrolysis of Raw Corn Starch by Purified Glucoamylase of $\alpha$-Amylase in an Agitated Bead Reaction System (Glucoamylase 및$\alpha$-Amylase의 분쇄마찰매체 효소반응계에서의 생전분 효소분해 Mechanism)

  • 박동찬;이용현
    • Microbiology and Biotechnology Letters
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    • v.18 no.3
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    • pp.260-267
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    • 1990
  • The mechanism of enzymatic hydrolysis of raw corn starch by the purified glucoamylase and a - amylase in an agitated bead reaction system was studied by investigating the changes of sugar profiles produced by each enzyme, the granular structure of raw corn starch, the amount of enzyme adsorption on residual starch, and the amylose content in residual raw starch. The sugar profiles produced by the action of exo-type glucoamylase or endo-type $\alpha$ -amylase in an agitated bead system were not recognizably differed with those produced in reaction system without bead. Without enzyme the intergenic microcrystalline structure of starch granule was not changed by the simple mechanical impact of solid media, but it was cleaved. However, starch granule was fragment into large number of small particles by the synergistic action of enzyme and attrition-milling media, identified to be the major saccharification enhancing mechanism along with the increased amount of enzyme adsorption. The amylose content decreased more readily in an agitated bead reaction system, especially by $\alpha$ -amylase.

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A study on strain improvement by protoplast fusion between amylase secreting yeast and alcohol fermenting yeast - ?$\pm$. Alcohol and glucoamylase productivities of fusant between S. cerevisiae and S. diastaticus (Amylase 분비효모와 alcohol 발효효모의 세포융합에 의한 균주의 개발 - 제2보. S. cerevisiae와 S. diastaticus간의 융합체의 glucoamylase생성 및 alcohol발효)

  • 서정훈;김영호;전도연;이창후
    • Microbiology and Biotechnology Letters
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    • v.14 no.4
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    • pp.311-318
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    • 1986
  • Glucoamylase and ethanol productivities of HSDD-170 and HSDM-119 formed by S. cerevisiae and S. diastaticus protoplast fusion were investigated. For the production of the glucoamylase, soluble starch as carbon source, yeast extract and C. S. L as nitrogen source added into the basal medium were favorable. The production of the enzyme reached at maximum after cultivation of the fusant for 4 days at 3$0^{\circ}C$, aerobically. The properties of glucoamylase produced by fusants were very similar to those produced by S. diastaticus as based on optimum temperature, pH stability. In alcohol fermentation from starch, strain HSDD-170 fermented starch faster than either of its parental strains. The maximum of alcohol yield in 15% of liquefied potato starch was 7.5% (v/v).

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Characterization of Brewing Yeast Expressing Glucoamylase Selected by Rare Mating. (Rare Mating에 의한 양초효모에서의 glucoamylase 발현 균주 HCS 선별 및 특성)

  • 최병주;장금일;김광엽
    • Microbiology and Biotechnology Letters
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    • v.29 no.4
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    • pp.212-220
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    • 2001
  • Rare mating was used to select a respiratory deficient mutant of Saccharomyces cerevisiae HDC52 strain. Glucoamylase gene of S. diastaticus K114 was developed into the RD mutant which could uptake maximum amount of non-fermentable sugars through the expression of glu- coamplyase gene and the fermentation characteristics of the developed strain HCS were investigated. The size of HCS yeast and HBD52 yeast strain were 13 $\mu\textrm{m}$ and 10$\mu\textrm{m}$ respectively. HCS strain which can uptake maximum amount of non-fermentable sugar through the expression of glucoamylase gene was developed. By karyotype anal- ysis. HCS stain but not RD mutant HBC52 showed a band of 1150 kb chromosome DNA This band should include glcoamylase gene from Saccharomyces diataticus K114 THis strain has glucoamylase which can degrade starch By transduction and contrnuance of glucoamylase gene HCS strain gegraded strach and formed halo. Also, HCS strain maintained the character after 50 generations. Glucoamylase activities of Saccharomyces diastaticus K114 and HCS yeast strains are 9.5 and 2.7~3.4(unit/ml) HCS and HBC52 strain showed similar sugar fermentation patterns and low flocculation In spore and film forming test, HCS and HBC52 strain formed neither spores nor films. In the limit fermentation test, HBC52 strain showed fermentation level of 68% and HCS strain showed 76~78% As the limit attenuation of HBC52 and HCS were ($2.00^{\circ}$P) and ($0.7~0.93^{\circ}$P) This study demon- strates and HCS strain may be used for low carbohydrate beer fermentation.

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Application and Analysis of Rhizopus oryzae Mycelia Extending Characteristic in Solid-state Fermentation for Producing Glucoamylase

  • Tang, Xianghua;Luo, Tianbao;Li, Xue;Yang, Huanhuan;Yang, Yunjuan;Li, Junjun;Xu, Bo;Huang, Zunxi
    • Journal of Microbiology and Biotechnology
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    • v.28 no.11
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    • pp.1865-1875
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    • 2018
  • Enhanced application of solid-state fermentation (SSF) in industrial production and the influence of SSF of Rhizopus K1 on glucoamylase productivity were analyzed using the flat band method. A growth model was implemented through SSF of Rhizopus K1 in this experiment, and spectrophotometric method was used to determine glucoamylase activity. Results showed that in bran and potato culture medium with 70% moisture in a loose state, ${\mu}$ of mycelium reached to $0.15h^{-1}$ after 45 h of culture in a thermostatic water bath incubator at $30^{\circ}C$. Under a low-magnification microscope, mycelial cells appeared uniform, bulky with numerous branches, and were not easily ruptured. The generated glucoamylase activity reached to 55 U/g (dry basis). This study has good utilization value for glucoamylase production by Rhizopus in SSF.

Characteristics and Applications of Immobilized Glucoamylase (고정화 글루코아밀라제의 성질과 응용)

  • Cho, Sung-Hwan;Kim, Ze-Uook
    • Applied Biological Chemistry
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    • v.28 no.4
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    • pp.233-238
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    • 1985
  • Glucoamylases catalyze a stepwise hydrolysis of starch with the production of glucose. In order to make an efficient conversion of starch into glucose, glucoamylases prepared from Rhizopus spp. (Sigma Co.) were attached to a porous glass and immobilized by glutaraldehyde-induced crosslinking. The porous glass used in this study was $ZrO_2$ coated, $40{\sim}80$ mesh, 550 A pore diameter. Using the forgoing glass, we could couple as much as 50mg of protein per gram of carrier. Substrate for the glucoamylase was an enzyrne-modified thin-toiling 30% cornstarch solution used where greater solubility and low viscosity are desired. Immobilized glucoamylase had an optimum pH 7.0 to the alkaline side of soluble enzyme. Km values of immobilized and soluble enzyme were 1.04 mM and 1.25mM, respectively. The thermal stability of glucoamylase was increased by immobilization and the immobilized enzyme showed an optimum temperature at $40{\sim}60^{\circ}C$. The continuous conversion of cornstarch to glucose by use of immobilized glucoamylase resulted in the production of a more than 90 DE product.

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Mitotic Stability of Heterologous $\alpha$-Amylase Gene in Starch-Fermenting Yeast (전분발효 효모에서의 외래 $\alpha$-Amylase 유전자의 세포분열시 안정성 증진)

  • Kim, Jung-Hee;Kim, Keun;Choi, Yong-Keel
    • Korean Journal of Microbiology
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    • v.32 no.4
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    • pp.271-279
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    • 1994
  • To develop a yeast strain which stably secretes both $\alpha$-amylase and glucoamylase and therefore is able to convert starch directly to ethanol, a mouse salivary $\alpha$-amylase cDNA gene with a yeast alcohol dehydrogenase I promoter has been introduced into the cell of a Saccharomyces diactaticus hybrid strain secreting only glucoamylase. To secrete both enzymes more stably without loss of the $\alpha$-amylase gene during a cell-multiplication, an integrating plasmid vector containing $\alpha$-amylase gene was constructed and introduced into the yeast cell. The results showed that the linearized form of the integrating vector was superior in the transformation efficiency and the rate of the expression of the $\alpha$-amylase gene than the circular type of the vector. The yeast transformant having a linearized plasmid vector exhibited higher mitotic stability than the yeast transformant habouring episomat plasmid vector. The transformant containing the linearized vector producing both $\alpha$-amylase and glucoamylase exhibited 2-3 times more amylolytic activity than the original untransformed strain secreting only glucoamylase.

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The Glucoamylase Signal Sequence Directs the Efficient Secretion of Human $\alpha$1-Antitrypsin in Yeast Cells (효모에서 Glucoamylase 신호서열에 의한 인체 $\alpha$1-Antitrypsin의 분비 효율 향상)

  • Song, Moo-Young;Kwon, Ki-Sun;Kang, Dae-Ook;Yu, Myeong-Hee;Park, Hee-Moon;Kim, Jinmi
    • Korean Journal of Microbiology
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    • v.31 no.3
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    • pp.203-207
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    • 1993
  • Five different secretion vectors were constructed by varying the signal sequences and .alpha.-antitrypsin (.alpha.1-AT) a numan secretory protein, was produced from yeast cells. The signal sequences used are those of acid phosphatase (PH05) and .alpha.-factor (M f.alphal1) of Saccharomyces cerevisiae, glucoamylase (STA1) of Saccharomyces diastaticus, and human .alpha.1-AT. Four vectors directed the efficient secretion of .alpha.1-AT ito the culture media. The secretion vector carrying the glucoamylase signal sequence (pGAT11) showed the highest efficiency of secretion. About 70% of .alpha.1-AT produce dwere secreted into the media. The endo H treatment of partially purified .alpha.1-AT indicates that the secreted .alpha.1-AT appeared to be glycosylated. This glycosylation pattern was altered when amino acid substitution mutations were introduced at the three glycosylation sites of .alpha.-AT.

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