• Title/Summary/Keyword: recombinant Saccharomyces cerevisiae

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High ${\beta}$-Glucosidase Secretion in Saccharomyces cerevisiae Improves the Efficiency of Cellulase Hydrolysis and Ethanol Production in Simultaneous Saccharification and Fermentation

  • Tang, Hongting;Hou, Jin;Shen, Yu;Xu, Lili;Yang, Hui;Fang, Xu;Bao, Xiaoming
    • Journal of Microbiology and Biotechnology
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    • v.23 no.11
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    • pp.1577-1585
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    • 2013
  • Bioethanol production from lignocellulose is considered as a sustainable biofuel supply. However, the low cellulose hydrolysis efficiency limits the cellulosic ethanol production. The cellulase is strongly inhibited by the major end product cellobiose, which can be relieved by the addition of ${\beta}$-glucosidase. In this study, three ${\beta}$-glucosidases from different organisms were respectively expressed in Saccharomyces cerevisiae and the ${\beta}$-glucosidase from Saccharomycopsis fibuligera showed the best activity (5.2 U/ml). The recombinant strain with S. fibuligera ${\beta}$-glucosidase could metabolize cellobiose with a specific growth rate similar to the control strain in glucose. This recombinant strain showed higher hydrolysis efficiency in the cellulose simultaneous saccharification and fermentation, when using the Trichoderma reesei cellulase, which is short of the ${\beta}$-glucosidase activity. The final ethanol concentration was 110% (using Avicel) and 89% (using acid-pretreated corncob) higher than the control strain. These results demonstrated the effect of ${\beta}$-glucosidase secretion in the recombinant S. cerevisiae for enhancing cellulosic ethanol conversion.

Increased Production of Exoinulinase in Saccharomyces cerevisiae by Expressing the Kluyveromyces marxianus INU1 Gene Under the Control of the INU1 Promoter

  • KIM HEE EUN;QIN RUI;CHAE KEON SANG
    • Journal of Microbiology and Biotechnology
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    • v.15 no.2
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    • pp.447-450
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    • 2005
  • Aspergillus niger inuE gene and Kluyveromyces marxianus INUI gene coding for exoinulinase were expressed in Saccharomyces cerevisiae under the control of K. marxianus INUI promoter. Recombinant S. cerevisiae expressing K. marxianus exoinulinase produced maximum 85 U/ml into culture medium, which was 9- to 14-fold higher than the activity produced by any other strain reported so far. In addition, K. marxianus INUI promoter produced 20- fold higher activity than S. cerevisiae glyceraldehydes phosphate dehydrogenase (GPD) promoter in S. cerevisiae.

Enhanced Transformation Efficiency of an Anticoagulant Hirudin Gene into Saccharomyces cerevisiae by a Double ${\delta}-Sequence$

  • Kim, Myoung-Dong;Yoo, Young-Je;Rhee, Sang-Ki;Seo, JIn-Ho
    • Journal of Microbiology and Biotechnology
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    • v.11 no.1
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    • pp.61-64
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    • 2001
  • Delta-integration vectors were constructed for the purpose of achieving homologous integration of the hirudin expression cassette into the chromosome of Saccharomyces cerevisiae. A double $\delta$ system truncated with the unnecessary bacterial genes, and consequently having a reduced insert size for integration, showed a four-fold increase in transformation efficiency at given DNA concentrations, and as a result, the constructed recombinant yeast strain had a 1.3-fold enhancement in hirudin expression level compared with a single $\delta$ system.

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Characteristics of Growth and Metal Removal in Recombinant Saccharomyces cerevisiae harboring a Metallothionein Gene (Metallothionein 유전자가 도입된 재조합 Saccharomyces cerevisiae의 생육과 금속제거에 대한 특성)

  • 정동환;김대옥서진호
    • KSBB Journal
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    • v.10 no.5
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    • pp.475-481
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    • 1995
  • The effect of metallothionein expression on the metal resistance and removal by recombinant Saccharomyces cerevisiae containing the plasmid pJW9 was investigated. The recombinant strain S. cerevisiae BZ-pJ was constructed by transforming the host strain S. cerevisiae BZ3l-1-7Ba with the gene coding for a metal-binding protein, metallothionein. Introduction of the MT gene yielded an increase in the minimum inhibitory concentration (MIC) of copper more than three times compared with the host strain. The minimum inhibitory concentrations of $Cr^{2+}, Znr^{2+} and Pb^{2+}, $ were not different for the two strains. The recombinant yeast grown in a medium containing 8mM CuSO4 was able to remove copper with a capacity of 18.9mg $Cu^{2+}$/g dry cell. In a mixture of copper and zinc, the presence of copper relieved the toxic effects caused by zinc, resulting in an enhancement of the final cell density and the specific growth rate of the recombinant yeast. The capability to remove copper by the recombinant yeast was linearly proportional to the copper concentrations in the medium. The efficiency of copper removal was rather constant regardless of the initial copper concentrations. The specific removal of zinc was dependent on the zinc concentrations in media, though, and such dependence was not so pronounced as the concentration of copper.

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Cloning of Genomic DNAs of Trametes versicolor Acting as Autonomously Replicating Sequences in Saccharomyces cerevisiae

  • Sora An;Park, Kyoung-Phil;Park, Hyoung-Tae;Kim, Kyu-Joong;Kim, Kyunghoon
    • Journal of Microbiology
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    • v.40 no.3
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    • pp.245-247
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    • 2002
  • A genomic DNA library of the fungus Trametes versicolor was constructed in a yeast integration vector which contains the URA3 gene of the budding yeast Saccharomyces cerevisiae and the gene responsible for hygromycin B resistance, and fragments acting as autonomously replicating sequences (ARSes) in the budding yeast were identified from the genomic DNA library. Sixteen recombinant plasmids from the library transformed the budding yeast Saccharomyces cerevisiae to Ura+ at high frequencies. They were maintained stably under selective conditions, but were gradually lost from yeast cells at different rates under nonselective conditions, indicating that they contain eukaryotic origins of DNA replication and exist as extrachromosomal plasmids. Base sequences of four ARS DNAs among the 16 cloned fragments revealed that all or the four contain at least one 11 bp [(A/T)TTTA(T/C)(A/G)TTT(A/T)]consensus sequence of the budding yeast ARS.

Development of Bactericidal Yeast Strain by Expressing the Leucocin A Gene on the Cell Surface of Saccharomyces cerevisiae (Saccharomyces cerevisiae세포 표면에 leucocin A유전자의 발현에 의한 항균활성 효모의 개발)

  • Lee Sang-Hyeon
    • Journal of Life Science
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    • v.15 no.6 s.73
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    • pp.923-927
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    • 2005
  • ln order to develop yeast cells that produce a bacteriocin on their cell surfaces, the 114 bp Leucocin A gene with stop codon was ligated into pYDl, an yeast vector. The recombinant DNA, pYDl-LeucoA was used to transform yeast (Saccharomyces cerevisiae) cells. Yeast cells harboring pYDl-LeucoA showed antibacterial activity against Bacillus subtilis. To confirm these bacteriocidal yeast cells possess the Leucocin A gone, PCR was performed with plasmid prepared from transformed yeast cells as a template and two Leucocin A-specific primers. In this study, bacteriocidal yeast cells that can be used as an antibiotic or a food preservative were developed.

Effect of specific growth rate on the extracellular expression of Baccillus stearothermophillus Ll lipase in recombinant Saccharomyces cerevisiae

  • An, Jeong-O;Jang, Hyeong-Uk;Lee, Hong-Won;An, Ik-Seong;Ham, Seung-Ju;Jeong, Jun-Gi
    • 한국생물공학회:학술대회논문집
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    • 2001.11a
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    • pp.367-369
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    • 2001
  • Recombinant lipase gene (pYEGA ${\alpha}$ -lip) originated from Bacillus stearothermophillus Ll was overexpressed in Saccharomyces cerevisiae. The lipase gene expression level was compared by controlling a constant specifjc growth rates( ${\mu}$ = 0.03, 0.05, 0.07 and $0.1h^{-1}$. Cell g개wth was successfully controlled at the desired rates by feeding rate of glucose and the formation of by-product or accumulation of the glucose was not observed. Above the growth rate of $0.1h^{-1}$. the desired growth rate could not be achieved caused accumulation of by-products(ethanol). The lipase production increased as the specific growth rate decreased. The specific production rate at the lowest specific growth rater(${\mu}$ =0.03) was above 2- folds than the others.

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Recombinant Human L-ferritin from Saccharomyces cerevisiae: Molecular Characterization and Synthesis of Iron Oxide Nanoparticles (효모에서 생산한 재조합 human L-ferritin의 생화학적 특성 및 나노입자의 철산화물 합성)

  • Kim, Kyung-Suk
    • KSBB Journal
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    • v.26 no.2
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    • pp.119-125
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    • 2011
  • In the synthesis of nanoparticles, much attention has been paid to regulating the particle size. There has been a possible evident that using the central cavity (core) of the protein ferritin has a greatly significant influence on it because the core can generate the nanometer-sized mineral particles of variable metal ions. In this report, recombinant human L-ferritins produced from Saccharomyces cerevisiae were purified and their molecular properties were characterized. The cDNA for human ferritin L chain was also expressed in another host such as Escherichia coli, and the properties of recombinant L-ferritins were compared. From isoelectric focusing experiment, the L-ferritin from the recombinant yeast showed no indication of N-glycosylation. Some post-translational modifications other than N-glycosylation were speculated in the L-ferritins from yeast. A difference was made in the L-ferritins in their iron uptake rates and the initial rate of the L-ferritin from yeast was slightly increased. The reconstitution yield and size distribution of the core minerals were analyzed in the L-ferritins by transmission electron microscopy. The L-ferritin from yeast with higher reconstitution yield (54.5%) showed slightly larger sizes (mean 6.92 nm) with narrower size distribution than the L-ferritin from E. coli. It is, in conclusion, speculated that L-ferritin from yeast is relatively superior to the other, in view of the size of nanoparticle and its relative homogeneity.

Selection of Optimum Expression System for Production of Kringle Fragment of Human Apolipoprotein(a) in Saccharomyces cerevisiae

  • Cha Kwang Hyun;Kim Myoung Dong;Lee Tae Hee;Lim Hyung Kweon;Jung Kyung Hwan;Seo Jin Ho
    • Biotechnology and Bioprocess Engineering:BBE
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    • v.9 no.6
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    • pp.523-527
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    • 2004
  • Recombinant Saccharomyces cerevisiae expression systems were developed to pro­duce a novel human anti-angiogenic protein called LK8, an 86 amino-acid kringle fragment pro­tein with three disulfide linkages. Galactose-inducible LK8 expression plasmid was constructed, and LK8 production levels by four S. cerevisiae strains were compared in order to select an op­timal host strain. S. cerevisiae 2805 was the most efficient among the strains tested. Elevating the LK8 gene copy number through multiple integration using 8-sequences as target sites re­sulted in more than a two-fold increase in the LK8 production level compared with the plasmid­based expression system. The maximum LK8 protein concentration of 25 mg/L was obtained from batch cultivation of the yeast transformant that harbors 16 copies of the LK8 gene. In con­clusion, the strain integrated with the multiple LK8 gene secreted the protein with relatively high yield, although, the increased LK8 gene dosage over 11 copies did not lead to further en­hancement in batch cultivations.

Overexpression of Thermoalkalophilic Lipase from Bacillus stearothermophilus L1 in Saccharomyces cerevisiae

  • Ahn, Jung-Oh;Jang, Hyung-Wook;Lee, Hong-Weon;Choi, Eui-Sung;Haam, Seung-Joo;Oh, Tae-Kwang;Jung, Joon-Ki
    • Journal of Microbiology and Biotechnology
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    • v.13 no.3
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    • pp.451-456
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    • 2003
  • An expression vector system was developed for the secretory production of recombinant Bacillus stearothermophilus L1 lipase in Saccharomyces cerevisiae. The mature L1 lipase gene was fused to ${\alpha}-amylase$ signal sequence from Aspergillus oryzae for the effective secretion into the culture broth and the expression was controlled under GAL10 (the gene coding UDP-galactose epimerase of S. cerevisiae) promoter. S. cerevisiae harboring the resulting plasmid successfully secreted L1 lipase into the culture broth. To examine an optimum condition for L1 lipase expression in the fed-batch culture, L1 lipase expression was induced at three different growth phases (early, mid, and late-exponential growth phases). Maximum product on of L1 lipase (1,254,000 U/l, corresponding to 0.65/1) was found when the culture was induced at an early growth phase. Secreted recombinant L1 lipase was purified only through CM-Sepharose chromatography, and the purified enzyme showed 1,963 U/mg of specific activity and thermoalkalophilic properties similar to those reported for the enzyme expressed in Escherichia coli.