• 제목/요약/키워드: overexpression in E. coli

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대장균에서 진핵세포 펩타이드 호르몬 전구물질의 대량생산과 특성규명 (Overexpression and Characterization of Eukaryotic Peptide Hormone Precursors in E. Coli.)

  • 홍승환
    • 한국동물학회지
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    • 제33권3호
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    • pp.303-309
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    • 1990
  • 대장균에서 진핵세포의 펩타이드 호르몬 전구체를 대량으로 생산할 목적으로 T7 overexpression system을 이용하여 angler 어류의 prepro-SRIF I 유전자와 T7 phage coat 단백질 S10 유전자를 결합시켜 일련의 융합유전자를 합성하였다. 이 융합유전자를 가지고 있는 숙주 대장균, BL21 DE3는 3가지 종류의 서로 다른 SRIF 관련 폴리펩타이드를 대량 합성하였다. 본 연구에서는 대량합성된 폴리펩타이드의 특성을 규명하였으며, 펩타이드 호르몬 전구체를 얻기 어려운 이종이에서의 대량발현의 중요성과 표적 펩타이드 호르몬인 SRIF의 적용성을 논의하였다.

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Overexpression of YbeD in Escherichia coli Enhances Thermotolerance

  • Kim, Sinyeon;Kim, Youngshin;Yoon, Sung Ho
    • Journal of Microbiology and Biotechnology
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    • 제29권3호
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    • pp.401-409
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    • 2019
  • Heat-resistant microbial hosts are required for bioprocess development using high cell density cultivations at the industrial scale. We report that the thermotolerance of Escherichia coli can be enhanced by overexpressing ybeD, which was known to encode a hypothetical protein of unknown function. In the wild-type E. coli BL21(DE3), ybeD transcription level increased over five-fold when temperature was increased from $37^{\circ}C$ to either $42^{\circ}C$ or $46^{\circ}C$. To study the function of ybeD, a deletion strain and an overexpression strain were constructed. At $46^{\circ}C$, in comparison to the wild type, the ybeD-deletion reduced cell growth half-fold, and the ybeD-overexpression promoted cell growth over two-fold. The growth enhancement by ybeD-overexpression was much more pronounced at $46^{\circ}C$ than $37^{\circ}C$. The ybeD-overexpression was also effective in other E. coli strains of MG1655, W3110, DH10B, and BW25113. These findings reveal that ybeD gene plays an important role in enduring high-temperature stress, and that ybeD-overexpression can be a prospective strategy to develop thermotolerant microbial hosts.

Improving the Productivity of Recombinant Protein in Escherichia coli Under Thermal Stress by Coexpressing GroELS Chaperone System

  • Kim, So-Yeon;Ayyadurai, Niraikulam;Heo, Mi-Ae;Park, Sung-Hoon;Jeong, Yong-Joo;Lee, Sun-Gu
    • Journal of Microbiology and Biotechnology
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    • 제19권1호
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    • pp.72-77
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    • 2009
  • Here, we demonstrate that the overexpression of the GroELS chaperone system, which assists the folding of intracellular proteins and prevents aggregation of its biological targets, can enhance the thermotolerance of Escherichia coli strains and facilitate the production of recombinant protein under thermal stress. The overexpression of GroELS led to an about 2-fold higher growth rate of E. coli XL-1 blue than control at $45^{\circ}C$ and induced the growth of the strain even at $50^{\circ}C$, although the growth was not sustained in the second-round culture. The effect of GroELS overexpression was also effective on other E. coli strains such as JM109, $DH5{\alpha}$, and BL21. Finally, we have shown that coexpression of GroELS allows us to produce recombinant protein even at $50^{\circ}C$, a temperature at which the protein production based on E. coli is not efficient. This study indicates that the employment of the GroELS overexpression system can expand the range of environmental conditions for E. coli.

재조합 대장균에서 fadB 유사효소의 Polyhydroxyalkanoates 합성에 미치는 역할의 규명 (In Vivo Analysis of fadB Homologous Enzymes Involved in Biosynthesis of Polyhydroxyalkanoates in Recombinant Escherichia coli)

  • 최종일;박시재;이상엽
    • KSBB Journal
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    • 제19권4호
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    • pp.331-334
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    • 2004
  • 재조합 E. coli를 이용한 MCL-PHA의 생산에서 fatty acid pathway로부터 PHA 생합성 전구체 물질들이 만들어진다는 사실과 함께 이에 관여하는 enzymes이 밝혀지고 있다. 본 논문에서는 protein homology search로부터 탐색된 paaG와 ydbU genes의 PHA 생합성에서의 역할을 확인하기 위하여 paaG와 ydbU gene이 각각 knock-out된 mutant E. coli strains 를 제작하였다. 제작된 mutant E. coli들은 모균주들보다 낮은 PHA 농도와 함량을 가졌으며, 이러한 결과들로부터 paaG와 ydbU는 fatty acid pathway에서 PHA synthesis의 전구체 물질들을 공급한다는 사실을 확인하였다. 또한, 새로운 FadB homologous enzyme YgfG를 탐색하였으며, ygfG gene이 overexpression된 균주와 ygfG mutant를 제작하여 PHA 합성을 실험한 결과 ygfG도 paaG와 ydbU와 유사한 역할을 한다는 사실을 밝혔다. 이러한 연구결과들은 E. coli에서의 MCL-PHA 단량체들의 합성 경로를 확인하여 효과적인 PHA 생산 균주를 제작할 수 있게 할 것이다.

Overexpression of Escherichia coli Thiol Peroxidase in the Periplasmic Space

  • Kim, Sung-Jin;Cha, Mee-Kyung;Kim, Il-Han;Kim, Ha-Kun
    • Journal of Microbiology and Biotechnology
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    • 제8권1호
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    • pp.92-95
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    • 1998
  • Overproduction of Escherichia coli thiol peroxidase in the periplasmic space was achieved by locating the appropriate gene on a downstream region of the strong T7 promoter. E. coli strain BL21 carrying the recombinant plasmid pSK-TPX was induced by IPTG, lysed, and analyzed by SDS-polyacrylamide gel electrophoresis. A large amount of the overexpressed thiol peroxidase was located in the periplasmic space. A homogeneous thiol peroxidase was obtained from E. coli osmotic shock fluid by simple one-step gel permeation chromatography.

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Overexpression of Adenosine Deaminase in Escherichia coli

  • Jo, Young-Bae;Baik, Hyung-Suk;Bae, Kyung-Mi;Jun, Hong-Ki
    • Journal of Life Science
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    • 제9권2호
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    • pp.62-66
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    • 1999
  • To overexpress E. coli ADA in host strain E. coli M15, the expression plasmid pQEADD was constructed. To analyze the expression characteristics of ADA, a time course of the expression was first examined. The protein was not detected in no inducted in no induction samples. After the addition of IPTG, a band corresponding to the expected size of ADA was appeared. Its molecular weight was about 36,000 dalton. Maximum expression level was revealed when the cell cultured for 3∼4hrs after induction. This result indicated that the efficient expression of add can be achieved by induction at early logarithmic phase. The effect of different IPTG concentration on the degree of ADA expression was investigated. The expression levels of add were not largely affected by IPTG concentration. Location of overexpression ADA was checked out. A protein band corresponding to the ADA was seen in only crude extract B(insoluble protein). This result suggests that ADA is in E. coli M15. The molecular weight of ADA estimated by SDS-PAGE was approximately 36,000 Da.

Overexpression of the bacteriophase PRD1 DNA polymerase

  • Jung, Gu-Hung
    • 미생물학회지
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    • 제30권2호
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    • pp.141-148
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    • 1992
  • In order to overexpress bacteriophage PRD1 DNA polymerase in E. coli cells, the 2 kb HaeII fragment was isolated from phage genomic DNA. This fragment was then cloned into pEMBL/sup ex/ 3-expression vector. A specific 57bp deletion was performed by using uracil containing ss DNA and oligonucleotide spanning each region to remove an unwanted non-coding region. After this deletion, the PRD1 DNA polymerase gene is totally under the control of the vector promoter and SD sequence. Upon heat induction, a protein with an apparent size of 68 kdal was overexpressed as an active PRD1 DNA polymerase. The expression of PRD1 DNA polymerase was about 1% of total E. coli protein.

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Overexpression of Arylsulfatase in E. coli and Its Application to Desulfatation of Agar

  • Lim, Jae-Myung;Jang, Yeon-Hwa;Kim, Hyeung-Rak;Kim, Young-Tae;Choi, Tae-Jin;Kim, Joong-Kyun;Nam, Soo-Wan
    • Journal of Microbiology and Biotechnology
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    • 제14권4호
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    • pp.777-782
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    • 2004
  • The arylsulfatase gene (astA, 984 bp ORF) from the P. carrageenovora genome was amplified by PCR and subcloned into the pET21a vector. When the constructed plasmid pAST-A1 (6.4 kb) was introduced into E. coli BL21(DE3), the transformant on the LB plate containing IPTG showed a hydrolyzing activity for 4-methylumbelliferyl sulfate and p-nitrophenyl sulfate. The highest arylsulfatase activity (2.1 unit/ml) was obtained at 10 mM IPTG. Most arylsulfatase activity was found in the cell lysate, whereas no significant activity was detected in the culture supernatant. The molecular weight of the recombinant enzyme was estimated to be 33.1 kDa by SDS-PAGE. After the reaction of agar with arylsulfatase for 12 h at $40^{\circ}C$, the gel strength of the agar increased by 2-fold, and 73% of the sulfate in the agar had been removed. This result suggests that arylsulfatase expressed in E. coli could be useful in the production of electrophoretic grade agarose.

Influence of Gluconeogenic Phosphoenolpyruvate Carboxykinase (PCK) Expression on Succinic Acid Fermentation in Escherichia coli Under High Bicarbonate Condition

  • Kwon Yeong-Deok;Lee Sang-Yup;Kim Pil
    • Journal of Microbiology and Biotechnology
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    • 제16권9호
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    • pp.1448-1452
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    • 2006
  • The effects of amplifying the gluconeogenic phosphoenolpyruvate carboxykinase of Escherichia coli ($pck_{Ec}$) on succinic acid production in E. coli were examined under anaerobic condition. No significant increase in succinic acid production was observed in E. coli overexpressing the $pck_{Ec}$ gene without supplementing $NaHCO_{3}$ or $MgCO_{3}$. On the other hand, succinic acid production was enhanced as the $NaHCO_{3}$ concentration was increased. When 20 g/l of $NaHCO_{3}$ was added, succinic acid production in recombinant E. coli overexpressing PCK was 2.2-fold higher than that observed in the wild-type strain. It was concluded that the gluconeogenic $pck_{Ec}$ overexpression enabled E. coli to enhance succinic acid production only under the high bicarbonate supplementation condition.

Construction and Characterization of an Enhanced GFP-Tagged TIM-1 Fusion Protein

  • Qing, Jilin;Xiao, Haibing;Zhao, Lin;Qin, Guifang;Hu, Lihua;Chen, Zhizhong
    • Journal of Microbiology and Biotechnology
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    • 제24권4호
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    • pp.568-576
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    • 2014
  • TIM-1 (also known as KIM-1 and HAVcr-1) is a type I transmembrane glycoprotein member of the TIM family that may play important roles in innate and adaptive immune responses. The overexpression of proteins associated with membrane proteins is a major obstacle to overcome in studies of membrane protein structures and functions. In this study, we successfully coupled the overexpression of the TIM-1 protein with a C-terminal enhanced green fluorescent protein (GFP) tag in Escherichia coli. To the best of our knowledge, this report is the first to describe the overexpression of human TIM-1 in E. coli. The purified TIM-1-EGFP fusion protein recognized and bound directly to apoptotic cells and did not to bind to viable cells. Furthermore, we confirmed that the interactions of TIM-1-EGFP with apoptotic cells were blocked by TIM-1-Fc fusion proteins. This fusion protein represents a readily obtainable source of biologically active TIM-1 that may prove useful in future studies of human TIM-1.