• Title/Summary/Keyword: Recombinant DNA

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Plasmid Stability and Cloned-Gene Expression in Continuous Culture of Recombinant Escherichia Coli Under Derepressed Condition

  • Nam, Soo-Wan;Kim, Byung-Kwan;Kim, Jung-Hoe
    • Journal of Microbiology and Biotechnology
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    • v.4 no.1
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    • pp.1-6
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    • 1994
  • Continuous culture was carried out with a recombinant Escherichia coli W3110/pCR185, which encodes trp-operon enzymes when the temperature is shifted from $37^{circ}C\;t;42^{\circ}C$. Under derepressed condition of $42^{\circ}C$. plasmlid stability and gene expression were analysed as function of the dilution rate. The stability of plasmid increased with the dilution rate, but maximal levels of gene expression (tryptophan concentration) and plasmid DNA content were obtained at the lowest dilution rate, $0.075\;hr^{-1}$. The plasmid instability, observed at low dilution rates, could be explained by the unbalanced biosynthetic state of the recombinant cell harboring a high copy number of plasmid.

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Replication and encapsidation of recombinant Turnip yellow mosaic virus RNA

  • Shin, Hyun-Il;Kim, In-Cheol;Cho, Tae-Ju
    • BMB Reports
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    • v.41 no.10
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    • pp.739-744
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    • 2008
  • Turnip yellow mosaic virus (TYMV) is a positive strand RNA virus that infects mainly Cruciferae plants. In this study, the TYMV genome was modified by inserting an extra subgenomic RNA promoter and a multiple cloning site. This modified TYMV was introduced into Nicotiana benthamiana using a Agrobacterium-mediated T-DNA transfer system (agroinfiltration). When a gene encoding $\beta$-glucuronidase or green fluorescent protein was expressed using this modified TYMV as a vector, replication of the recombinant viruses, especially the virus containing $\beta$-glucuronidase gene, was severely inhibited. The suppression of replication was reduced by co-expression of viral silencing suppressor genes, such as tombusviral p19, closteroviral p21 or potyviral HC-Pro. As expected, two subgenomic RNAs were produced from the recombinant TYMV, where the larger one contained the foreign gene. An RNase protection assay revealed that the recombinant subgenomic RNA was encapsidated as efficiently as the genuine subgenomic RNA.

Design of Bacterial Vector Systems for the Production of Recombinant Proteins in Escherichia coli

  • Mergulhao;Filipe J.M.;Gabriel A. Monteiro;Joaquim M.S. Cabral;M. Angela Taipa
    • Journal of Microbiology and Biotechnology
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    • v.14 no.1
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    • pp.1-14
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    • 2004
  • More than twenty years have passed since the approval of the first recombinant DNA product for therapeutic use (recombinant human insulin, 1982). However, the biotechnology industry is still facing a shortage of manufacturing capacity due to the increasing demand of therapeutic proteins. This demand has prompted the search for a growing number of biological production systems but, nevertheless, the Gram-negative bacterium Escherichia coli remains one of the most attractive production hosts. This review highlights the most important features and developments of plasmid vector design, emphasizing the different reported strategies for improving the expression and secretion of heterologous proteins using the cellular machinery of E. coli.

Activities of Recombinant MT1-MMP Expressed in PANC-1 Cells. (PANC-1세포에서 발현된 재조합 MT1-MMP의 효소 활성)

  • Kim, Hye-Nan;Chung, Hye-Shin
    • Journal of Life Science
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    • v.18 no.3
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    • pp.422-425
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    • 2008
  • Membrane-type 1 matrix metalloproteinase (MT1-MMP) is a membrane-associated zinc-dependent endoproteinase involved in extracellular matrix remodeling. MT1-MMP hydrolyzes ECM proteins like collagen and is involved in cancer cell migration and metastasis. Caveolins are integral membrane proteins and play a role in formation of caveolae, specialized membrane microdomains involved in clathrin-independent endocytosis. Recombinant MT1-MMP was transiently expressed in PANC-1 cells. Cells expressing recombinant MT1-MMP were able to hydrolyze collagen and migrate on collagen coated trans-well. Both subjacent collagen degradation and the cell migration conferred by recombinant MT1-MMP were inhibited by co-transfection of plasmids containing caveolin-1 cDNA. The results support that MT1-MMP is localized in lipid raft of the membrane and MT1-MMP activities in invasive cells could be inhibited by caveolin.

Temperature Effect on the Productivity of Recombinant Protein in a Lysis and DNA packaging-deficient and Temperature-sensitive Bacteriophage $\lambda$System (용균과 DNA 패키징 유전자가 결핍된 온도 민감성 박테리오 파아지 람다 시스템에서 재조합 단백질 생산성에 미치는 온도의 영향)

  • Oh, Jeong-Seok;Park, Tai-Hyun
    • KSBB Journal
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    • v.20 no.2 s.91
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    • pp.112-115
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    • 2005
  • E. coli in combination with bacteriophage $\lambda$ was used to overcome the intrinsic plasmid instability that is frequently found in recombinant fermentation especially in long-term operation. In order to enhance the stability and productivity, the bacteriophage ${\lambda}NM1070$ was used in this study. It is a $\lambda$ mutant, which is deficient in the synthesis of protein related to DNA packaging and cell lysis. The ${\lambda}NM1070$ is also a temperature-sensitive mutant. To optimize the production of recombinant protein in this temperature-sensitive system, the temperature effects on growth and cloned gene expression were investigated for stable and efficient recombinant gene expression. The induction to the lytic state was not complete at $36^{\circ}C$ while the temperature above $40^{\circ}C$ induced the lytic state completely. However, the productivity was decreased at $42^{\circ}C$ by temperature inhibition. The L-free cell concentration increased with the increase of temperature until $40^{\circ}C$. In conclusion, ${\lambda}NM1070$ has the optimal temperature at $38^{\circ}C$ for stability and at $40^{\circ}C$ for expression.

Cloning and Expression of Partial Japanese Flounder (Paralichthys olivaceus) IgD

  • Choi, Dae-Han;Jang, Han-Na;Ha, Dae-Mang;Kim, Jae-Wha;Oh, Chan-Ho;Choi, Sang-Hoon
    • BMB Reports
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    • v.40 no.4
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    • pp.459-466
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    • 2007
  • The cDNA sequence of the Japanese flounder (Paralychthys olivaceus) IgD has been previously reported (GenBank accession no. AB052658) and this was followed by the detection of IgD mRNA expression in some flounder organ tissues. However, it has not been determined whether the flounder IgD gene is virtually expressed into IgD protein. To characterize the flounder immunoglobulins utilized in elucidating the mechanism, evolution and diversity of the flounder immune system, antibodies specific to IgD and IgM were necessary. In the present study, partial flounder recombinant IgD (rIgD), IgM (rIgM) and the conserved regions of IgD and IgM (rCIg) were produced by cloning the cDNA sequence using isotype specific primers which were designed to produce unique fragments of IgD and IgM specific amino acid sequences. The production of recombinant Igs was ascertained by SDS-gel electrophoresis and immunoblot analysis using anti-T7$\cdot}$Taq antibody. The produced recombinant Igs were purified using affinity columns, and used as immunogens. Antibodies specific to the isotype of flounder Igs were generated by immunizing rabbits with rfIgs and the antibodies produced were identified by enzyme-linked immunosorbent assay (ELISA) and immunoblotting. Specificities of the generated antibodies were evaluated by testing cross-reactivity between recombinant IgM and IgD. By ELISA, rabbit antibodies against the rfIgD fragment (anti-rfIgD) failed to recognize any kind of flounder serum Igs, whereas respective antibodies against rfCIg (anti-rfCIg) and rfIgM fragments (anti-rfIgM) reacted with serum Igs. Likewise, in immunoblot assays, though anti-rfIgD did not, both anti-rfCIg and anti-rfIgM bound with the ~85 kd flounder IgM heavy chain. By flow cytometry analysis, anti-rfCIg, anti-rfIgD and anti-rfIgM reacted with 6%, 3% and 6.5% of cells, respectively, suggesting that flounder IgD is not secreted in serum but expressed on flounder B-like cell surfaces as in mammals. Antibodies produced against recombinant flounder Igs could be used to develop sandwich assay systems for detecting flounder Igs and for further investigating the flounder immune system.

Molecular Gene Cloning, Expression, and Characterization of Bovine Brain Glutamate Dehydrogenase

  • Kim, Dae-Won;Eum, Won-Sik;Jang, Sang-Ho;Yoon, Chang-Sik;Kim, Young-Hoon;Choi, Soo-Hyun;Choi, Hee-Soon;Kim, So-Young;Kwon, Hyeok-Yil;Kang, Jung-Hoon;Kwon, Oh-Shin;Cho, Sung-Woo;Park, Jin-Seu;Choi, Soo-Young
    • BMB Reports
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    • v.36 no.6
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    • pp.545-551
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    • 2003
  • A cDNA of bovine brain glutamate dehydrogenase (GDH) was isolated from a cDNA library by recombinant PCR. The isolated cDNA has an open-reading frame of 1677 nucleotides, which codes for 559 amino acids. The expression of the recombinant bovine brain GDH enzyme was achieved in E. coli. BL21 (DE3) by using the pET-15b expression vector containing a T7 promoter. The recombinant GDH protein was also purified and characterized. The amino acid sequence was found 90% homologous to the human GDH. The molecular mass of the expressed GDH enzyme was estimated as 50 kDa by SDS-PAGE and Western blot using monoclonal antibodies against bovine brain GDH. The kinetic parameters of the expressed recombinant GDH enzymes were quite similar to those of the purified bovine brain GDH. The $K_m$ and $V_{max}$ values for $NAD^+$ were 0.1 mM and $1.08\;{\mu}mol/min/mg$, respectively. The catalytic activities of the recombinant GDH enzymes were inhibited by ATP in a concentration-dependent manner over the range of 10 - $100\;{\mu}M$, whereas, ADP increased the enzyme activity up to 2.3-fold. These results indicate that the recombinant-expressed bovine brain GDH that is produced has biochemical properties that are very similar to those of the purified GDH enzyme.

Cloning of a ${\beta}-Xylosidase$ Gene from Alkalophilic Bacillus sp. and its Expression in Escherichia coli

  • Yu, Ju-Hyun;Kang, Yun-Sook;Park, Young-Seo
    • Journal of Microbiology and Biotechnology
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    • v.1 no.1
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    • pp.17-21
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    • 1991
  • A gene coding for ${\beta}-xylosidase$ in alkalophilic Bacillus sp. YC-335 isolated from soil was cloned into Escherichia coli HB101 using plasmid pBR322. The recombinant plasmid pYK40 was isolated, and the cloned HindIII fragment was 15 kilobases (kb). To reduce the size of the inserted DNA fragment of pYK40, the 15 kb HindIII fragment was subjected to a series of subclonings. A 6 kb subfragment was found to code for ${\beta}-xylosidase$ activity, and the recombinant plasmid was named pYK44. Southern hybridization analysis revealed that the cloned gene hybridized with 3.5 kb, 1.5 kb, and 1.0 kb of HindIII cleaved chromosomal DNA from Bacillus sp. YC-335. ${\beta}-xylosidase$ activity produced by recombinant E. coli was found to be 11 times higher than that produced by Bacillus sp. YC-335. Xylan was required to induce the production of ${\beta}-xylosidase$ in Bacillus sp. YC-335.

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Simple Purification of the Human Antimicrobial Peptide Dermcidin (MDCD-1L) by Intein-Mediated Expression in E. coli

  • Hong, In-Pyo;Kim, Yong-Seok;Choi, Shin-Geon
    • Journal of Microbiology and Biotechnology
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    • v.20 no.2
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    • pp.350-355
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    • 2010
  • Among human antimicrobial peptides (hAMPs), DCD-1L has a broad spectrum of antimicrobial activity over a wide pH range and in high salt concentrations. It offers a promising alternative to conventional antibiotics. The 458-bp-long dermcidin cDNA was amplified by PCR using a human fetal cDNA library as a template. The 147-bp fragment of the MDCD-1L gene encoding an additional methionine residue was subcloned into the pTYB11 vector. Recombinant MDCD-1L was expressed as an intein fusion protein in E. coli, and then purified by affinity chromatography using chitin beads. A small peptide with a molecular mass of about 5 kDa was detected by tricine gel electrophoresis. The recombinant MDCD-1L peptide was purified from the gel and its amino acid sequence was determined by nanoLC-ESI-MS/MS analysis. The initiating amino acid, methionine, remained attached to the N-terminal region of recombinant MDCD-1L. Purified MDCD-1L showed antimicrobial activity against a Micrococcus luteus test strain.

Molecular Colning and Ewpression of the $\alpha$-L-Arabinofuranosidase Gene of Bacillus stearothermophilus in Escherichia coli (Bacillus stearothermophilus로부터 $\alpha$-L-Arabinofuranosidase 유전자의 클로닝 및 Escherichia coli에서의 발현)

  • Eom, Soo-Jung;Kim, Hee-Sun;Cho, Ssang-Goo;Choi, Yong-Jin
    • Microbiology and Biotechnology Letters
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    • v.22 no.6
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    • pp.607-613
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    • 1994
  • The Bacillus stearothermophilus arfI gene encoding a-arabinofuranosidase was isolated from the genomic library, cloned into pBR322, and subsequently transferred into the Escherichia coli HB101. The recombinant E. coli was selected from approximately 10,000 transformants screened by making use of its ability to produce a yellow pigment around the colony on the selective medium supplemented with p-nitrophenyl-$\alpha$-L-arabinofuranoside (pNPAf), a chromogenic substrate. The functional clone was found to harbor a recombinant plasmid, pKMG11 with an insertion of about 5 kb derived from the B. stearothermophilus chromosomal DNA. Identity of the arfI gene on the insert DNA was confirmed by a zymogram with 4-methylumbelliferyl-$\alpha$-L-arabinofuranoside as the enzyme substrate. The $\alpha$-arabinofuranosidase from the recombinant E. coli strain showed very high substrate specificity; the enzyme displayed high activity only with pNPAf among many other p- or $o$-nitrophenyl derivatives of several sugars, and acted only on arabinoxylan among various natural arabinose containing polysaccharides tested.

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