• 제목/요약/키워드: mouse a-amylase gene

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Expression of Mouse $\alpha-Amylase$ Gene in Methylotrophic Yeast Pichia pastoris

  • Uehara Hiroyuki;Choi Du Bok;Park Enoch Y.;Okabe Mitsuyasu
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제5권1호
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    • pp.7-12
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    • 2000
  • The expression of the mouse $\alpha-amylase$ gene in the methylotrophic yeast, P pastoris was investigated. The mouse $\alpha-amylase$ gene was inserted into the multi-cloning site of a Pichi a expression vector, pPIC9, yielding a new expression vector pME624. The plasmid pME624 was digested with SalI or BglII, and was introduced into P. pastoris strain GSl15 by the PEG1000 method. Fifty-three transformants were obtained by the transplacement of pME624 digested with SaiII or BglII into the HIS4locus $(38\;of\;Mut^+\;clone)$ or into the AOX1 locus $(15\;of\;Mut^s\;clone)$. Southern blot was carried out in 11 transformants, which showed that the mouse $\alpha-amylase$ gene was integrated into the Pichia chromosome. When the second screening was performed in shaker culture, transformant G2 showed the highest $\alpha-amylase$ activity, 290 units/ml after 3-day culture, among 53 transformants. When this expression level of the mouse $\alpha-amylase$ gene is compared with that in recombinant Saccharomyces cerevisiae harboring a plasmid encoding the same mouse $\alpha-amylase$ gene, the specific enzyme activity is eight fold higher than that of the recombinant S. cerevisiae.

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외래 알파아밀라제의 Saccharomyces cerevisiae에서의 생산과 분비효율의 증진 (Improvement of Production and Secretion of Heterologous \alpha-Amylase from Saccharomyces cerevisiae.)

  • 최성호;김근
    • 한국미생물·생명공학회지
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    • 제31권1호
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    • pp.36-41
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    • 2003
  • Saccharomyces cerevisiae로부터 외래 $\alpha$-amylase의 발현 및 분비를 증진시키기 위하여 여러 실험이 수행되었다. ADC1 promoter와 mouse salivary $\alpha$-amylase cDNA gene의 native signal sequence를 효모의 PRB1 promoter와 invertase leader sequence로 대치한 plasmid vector pCNN(AMY)를 제작하였다. 효모세포에서 생성된 $\alpha$-amylase의 세포외로의 분비율은 mouse o-amylase의 native signal sequence인 경우는 약 89.4%이었으며 invertase leader sequence로 치환된 경우는 96.3%로 분비효율이 증진되었다. 야생주인 K8l/pCNN(AMY)와 호흡결여변이주인 K81/pCNN(AMY)p-의 혐기적 조건하에서의 배양 결과 $\alpha$-amylase 생산량이 K8l/pCNN(AMY)보다 K81/pCNN(AMY)p-가 약 5~8배 정도 증가하였다. $\alpha$-Amylase의 생산에 있어서 배지조성에 따른 K81/pCNN(AMY)의 생산증진의 비교는 배지성분인 yeast extract와 peptone의 구성비율을 비교하였을 때 yeast extract 1%와 peptone 2%, NaCl의 경우 100 mM, 2-mercaptoethanol인 경우에는 0.015%(w/v)을 첨가하였을 때 최대 효소 활성을 나타내었고, 특히 2-mercaptoethanol인 경우에는 대조구에 비해 효소 생산량이 약 3배 정도 증진되었다.

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

  • 김정희;김근;최영길
    • 미생물학회지
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    • 제32권4호
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    • pp.271-279
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    • 1994
  • ${\alpha}$-Amylase와 glucoamylase를 동시에 안정하게 분비하여 전분을 일단계로 직접 에탄올로 발효시킬수 있는 효모 균주를 개발하기 위하여 glucoamylase를 분비하는 Saccharomyces diastaticus hybrid 균주에 쥐의 침샘 유래의 ${\alpha}$-amylase cDNA 유전자를 plasmid vector를 이용하여 도입하였다. 이 균주로부터 효소생산에 필요한 유전자를 잃어버림이 없이 안정하게 분비할 수 있도록 하기 위하여 $\alpha$-amylase 유전자를 효모의 염색체에 삽입시키기 위한 integrating plasmid vector인 YIpMS$\Delta$R(LEU2)를 제작하였다. 이 vector의 효모형질전환에 있어 원형(circular)상태와 제한 효소 XbaI으로 처리된 직선화된(linearized) 상태의 두가지 형태를 비교한 결과 형질전환 효율에서나 형질전환체내의 $\alpha$-amylase 유전자 보유정도가 모두 직선화된 형태의 경우가 원형상태의 경우보다 높았다. Linearized vecotr를 가진 효모 형질전환체에서의 유전자 발현 안정도는 세포분열을 거듭할수록 episomal vecotr에 의한 효모 형질전환체에서의 발현 안정도보다 우수하게 나타났다. 또한 이 linearized vector를 가진 형질전환체는 $\alpha$-amylase와 glucoamylase를 동시에 분비하여 glucoamylase만 분비하는 원균주보다 2배 이상의 전분분해력을 보였다.

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Construction of a Transformed Yeast Strain Secreting Both $\alpha$-Amylase and Glucoamylase for Direct Starch-Fermentation

  • Kim, Keun
    • Journal of Microbiology and Biotechnology
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    • 제4권1호
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    • pp.7-12
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    • 1994
  • A yeast strain secreting glucoamylase was transformed with an expression vector (pMS12) containing the promoter of yeast alcohol dehydrogenase I gene ADC1, mouse salivary $\alpha$-amylase cDNA, and a segment of yeast $21\mu m$ plasmid. The transformed strain could produce ethanol from starch (4%, w/v) through a direct one-step process with the conversion efficiency of 93.2%, during 5 days of fermentation, while the original, untransformed strain exhibited a conversion efficiency of 38.1% under the same condition. When the regulatory site of the ADC1 promoter region was removed, the production of ethanol increased to 29~37% in the presence of exogenous 3%(v/v) ethanol in the fermentation medium.

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Production of a Functional Mouse Interferon ${\gamma}$from Recombinant Saccharomyces cerevisiae

  • Lim, Young-Yi;Park, Seung-Moon;Jang, Yong-Suk;Yang, Moon-Sik;Kim, Dae-Hyuk
    • Journal of Microbiology and Biotechnology
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    • 제13권4호
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    • pp.537-543
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    • 2003
  • The mouse interferon gene (MuIFN-${\gamma}$) was cloned and then used to transform Saccharomyces cerevisiae. Expressed MuIFN-$\{gamma}$ protein (MuIFN-${\gamma}$) was successfully secreted into culture medium due to the presence oi the signal peptide of rice amylase 1A. Two different promoters fused to MuIFN-${\gamma}$ were tested: glyceraldehyde-3-phosphate dehydrogenase (GPD) promoter and a yeast hybrid ADH2-GPD (AG) promoter consisting of alcohol dehydrogenase II (ADH2) and GPD promoter. Using the hybrid promoter, the accumulation of MuIFN-${\gamma}$transcript was the highest after the 24 h cultivation, and then gradually decreased as the cultivation proceeded. However, both cell growth and recombinant MuIFN-${\gamma}$production reached their peaks after the 4-day cultivation. It was possible to produce 6.5 mg/l of MuIFN-${\gamma}$ without any changes in cell growth. Using GPD promoter, the MuIFN-${\gamma}$ transcript accumulation and the recombinant MuIFN-${\gamma}$ production followed the same pattern as the cell growth. However. compared to that of the hybrid promoter, the production of recombinant MuIFN-${\gamma}$ was 0.2 mg/l. The secreted MuIFN-${\gamma}$ had estimated molecular masses of 21 kDa and 23 kDa, which were larger than that of the encoded size due to glycosylation. The protection assay against the viral infection indicated that the recombinant MuIFN-${\gamma}$ was bioactive.