• Title/Summary/Keyword: pB10 plasmid

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Construction of Mammalian Cell Expression Vector for pAcGFP-bFLIP(L) Fusion Protein and Its Expression in Follicular Granulosa Cells

  • Yang, Run Jun;Li, Wu Feng;Li, Jun Ya;Zhang, Lu Pei;Gao, Xue;Chen, Jin Bao;Xu, Shang Zhong
    • Asian-Australasian Journal of Animal Sciences
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    • v.23 no.3
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    • pp.401-409
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    • 2010
  • FLICE inhibitory protein (FLIP) is one of the important anti-apoptotic proteins in the Fas/FasL apoptotic path which has death effect domains, mimicking the pro-domain of procaspase-8. To reveal the intracellular signal transduction molecules involved in the process of follicular development in the bovine ovary, we cloned the c-FLIP(L) gene in bovine ovary tissue with the reverse transcription polymerase chain reaction (RT-PCR), deleted the termination codon in its cDNA, and directionally cloned the amplified c-FLIP(L) gene into eukaryotic expression vector pAcGFP-Nl, including AcGFP, and successfully constructed the fusion protein recombinant plasmid. After identifying by restrictive enzyme BglII/EcoRI and sequencing, pAcGFP-bFLIP(L) was then transfected into follicular granulosa cells, mediated by Lipofectamine 2000, the expression of AcGFP observed and the transcription and expression of c-FLIP(L) detected by RT-PCR and Western blot. The results showed that the cattle c-FLIP(L) was successfully cloned; the pAcGFPbFLIP(L) fusion protein recombinant plasmid was successfuly constructed by introducing a BglII/EcoRI cloning site at the two ends of the c-FLIP(L) open reading frame and inserting a Kozak sequence before the start codon. AcGFP expression was detected as early as 24 h after transfection. The percentage of AcGFP positive cells reached about 65% after 24 h. A 1,483 bp transcription was amplified by RT-PCR, and a 83 kD target protein was detected by Western blot. Construction of the pAcGFP-bFLIP(L) recombinant plasmid should be helpful for further understanding the mechanism of regulation of c-FLIP(L) on bovine oocyte formation and development.

Improvement in Antagonistic Ablility of Antagonistic Bacterium Bacillus sp. SH14 by Transfer of the Urease Gene. (Urease gene의 전이에 의한 길항세균 Bacillus sp. SH14의 길항능력 증가)

  • 최종규;김상달
    • Microbiology and Biotechnology Letters
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    • v.26 no.2
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    • pp.122-129
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    • 1998
  • It were reported that antifungal mechanism of Enterobacter cloacae is a volatile ammonia that produced by the strain in soil, and the production of ammonia is related to the bacterial urease activity. A powerful bacterium SH14 against soil-borne pathogen Fusarium solani, which cause root rot of many important crops, was selected from a ginseng pathogen suppressive soil. The strain SH14 was identified as Bacillus subtilis by cultural, biochemical, morphological method, and $API^{circledR}$ test. From several in vitro tests, the antifungal substance that is produced from B. subtilis SH14 was revealed as heat-stable and low-molecular weight antibiotic substance. In order to construct the multifunctional biocontrol agent, the urease gene of Bacillus pasteurii which can produce pathogenes-suppressive ammonia transferred into antifungal bacterium. First, a partial BamH I digestion fragment of plasmid pBU11 containing the alkalophilic B. pasteurii l1859 urease gene was inserted into the BamH I site of pEB203 and expressed in Escherichia coli JM109. The recombinant plasmid was designated as pGU366. The plasmid pGU366 containing urease gene was introduced into the B. subtilis SH14 with PEG-induced protoplast transformation (PIP) method. The urease gene was very stably expressed in the transformant of B. subtilis SH14. Also, the optimal conditions for transformation were established and the highest transformation frequency was obtained by treatment of lysozyme for 90 min, and then addition of 1.5 ${mu}g$/ml DNA and 40% PEG4000. From the in vitro antifungal test against F. solani, antifungal activity of B. subtilis SH14(pGu366) containing urease gene was much higher than that of the host strain. Genetical development of B. subtilis SH14 by transfer of urease gene can be responsible for enhanced biocontrol efficacy with its antibiotic action.

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Effect of Changes in the Composition of Cellular Fatty Acids on Membrane Fluidity of Rhodobacter sphaeroides

  • Kim, Eui-Jin;Lee, Jeong K.
    • Journal of Microbiology and Biotechnology
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    • v.25 no.2
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    • pp.162-173
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    • 2015
  • The cellular fatty acid composition is important for metabolic plasticity in Rhodobacter sphaeroides. We explored the effects of changing the cellular ratio of unsaturated fatty acids (UFAs) to saturated fatty acids (SFAs) in R. sphaeroides by overexpressing several key fatty acid biosynthetic enzymes through the use of expression plasmid pRK415. Bacteria containing the plasmid pRKfabI1 with the fabI1 gene that encodes enoyl-acyl carrier protein (ACP) reductase showed a reduction in the cellular UFA to SFA ratio from 4 (80% UFA) to 2 (65% UFA) and had decreased membrane fluidity and reduced cell growth. Additionally, the ratio of UFA to SFA of the chromatophore vesicles from pRKfabI1-containing cells was similarly lowered, and the cell had decreased levels of light-harvesting complexes, but no change in intracytoplasmic membrane (ICM) content or photosynthetic (PS) gene expression. Both inhibition of enoyl-ACP reductase with diazaborine and addition of exogenous UFA restored membrane fluidity, cell growth, and the UFA to SFA ratio to wild-type levels in this strain. R. sphaeroides containing the pRKfabB plasmid with the fabB gene that encodes the enzyme β-ketoacyl-ACP synthase I exhibited an increased UFA to SFA ratio from 4 (80% UFA) to 9 (90% UFA), but showed no change in membrane fluidity or growth rate relative to control cells. Thus, membrane fluidity in R. sphaeroides remains fairly unchanged when membrane UFA levels are between 80% and 90%, whereas membrane fluidity, cell growth, and cellular composition are affected when UFA levels are below 80%.

Molecular Cloning and Analysis of Nucleotide Sequence of Xylanase Gene (xynk) from Bacillus pumilus TX703 (Bacillus pumilus TX703 유래 Xylanase 유전자(xynK)의 Cloning과 염기서열 분석)

  • 박영서
    • Journal of Life Science
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    • v.12 no.2
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    • pp.188-199
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    • 2002
  • A gene coding for xylanase from thermo-tolerant Bacillus pumilus TX703 was cloned into Escherichia coli DH5 $\alpha$ using pUC19. Among 7,400 transformants, four transformants showed clear zones on the detection agar plates containing oat-spells xylan. One of them which showed highest xylanase activity was selected and its recombinant plasmid, named pXES106, was found to carry 2.24 kb insert DNA fragment. When the nucleotide sequence of the cloned xylanase gene (xynK) was determined, xynK gene was found to consist of 1,227 base-pair open reading frame coding for a polypeptide of 409 amino acids with a deduced molecular weight of 48 kDa. The coding sequence was preceded by a putative ribosome binding site, the transcription initiation signals, and cia-acting catabolite responsive element. The deduced amino acids sequence of xylanase is similar to those of the xylanases from Hordeum vulgare (barley) and Clostridium thermocellum, with 39 and 31% identical residues, respectively. The amino acids sequence of this xylanase was quite different from those of the xylanases from other Bacillus species.

Expression of mue Gene on Plasmid pKM101 and pSL4 (플라스미드 pKM101 과 pSL4 의 muc 유전자의 발현에 관한 연구)

  • 전홍기;황유경;이상률;백형석
    • Korean Journal of Microbiology
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    • v.30 no.5
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    • pp.371-376
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    • 1992
  • Plasmid pSL4 of plasmid pKM 101 mutant have high protection effects and mutagenecity for UV and methyl methanesulfonate, The mucA gene and a pan of mucE gene of pKM 101 and pSL4 were sucloned onto lacZ' fusion vector pMC874 and the hybrid plasmids pBH31 and pBH30 were selected. These plsmids were intrduced into $recA^{+}lexA^{-}$, $recA^{-}와lexA^{+}$ strains and determined the activity of $\beta$-galactosidase for UV. In $recA^{+}lexA^{+}$ strain.$\beta$-galactosidase activity of pBH30 included mue region of pSL4 was higher thall pBH31 inclued muc region of pKM 10 I and the tf-galactosidase of two plasmids was not induced in reeA and leeA mutants with or without UV illumination. Without UV illumination. the .$\beta$-galactosidasc of pBH30 was expressed a little higher level than that of pBH3L We suggest that the functional difference of pKM 10l and pSL4 are due to the variety of mue regulatory region. Also. a plasmid pBH 100 earring umuC' -lacZ' gene fusion was constructed in vitro to study the regulation of the umu operon. It was shown that the umu operon is induced by UV and is regulated by the reeA and lexA genes.

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Enzymatic Properties of Cytidine Deaminase Encoded by cdd Gene in Bacillus subtilis (Bacillus subtilis의 cdd 유전자에 의해 코드되는 Cytidine Deaminase의 효소학적 성질)

  • Song, Bang-Ho;Yoon, Mi-Sook;Kim, Kyung-Hwa;Yeo, Jeung-Sook;Jan Neuhard
    • Microbiology and Biotechnology Letters
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    • v.16 no.6
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    • pp.468-475
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    • 1988
  • The cloned B. subtilis cdd gene encoding cytidine/2'deoxycytidine deaminase (EC 3.5.4.5) was expressed in the cdd deficient B. subtilis mutant ED40. The gene was isolted from the cdd complementing plasmid pSO21, and inserted into the EcoR1/Pvu1 sites of pGB215-110 ΔB, which is a temperature sensitivie E. coli-B. subtilis shuttle vector. In the transformed B. subtilis ED4O harboring the resulting plasmid pSO100, cdd was expressed at several hundred fold elevated levels, and the cytidine deaminase activity in E. coli containing pSO100 was twice the level in B. subtilis/pSO0100. The Km value for cytidine of the partially purified enzyme is 1.88$\times$10$^{-4}$M at pH 7.0 and the V$_{max}$ = 11.1 $\mu$mol/min/mg of protein. The enzyme was completely inhibited by 0.1M mercaptoethanol and HgCl$_2$. The inhibition by p-chrolomercurybenzoic acid showed a Ki = 5 uM. These results suggest that sulfhydryl reagents block an active site thiol group, and/or disturb the formation of the tetrameic holoenzyme.

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Process Optimization for Concentration and Stabilization of Recombinant Endoxylanase Expressed in Bacillus subtilis (Bacillus subtilis에서 발현된 재조합 Endoxylanase 농축과 안정화 공정의 최적화)

  • Choe, Yeong-Rok;Park, Jeong-Ha;;Kim, Yeong-Man;Gwon, Hyeon-Ju;Kim, Byeong-U
    • Microbiology and Biotechnology Letters
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    • v.32 no.4
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    • pp.322-327
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    • 2004
  • A strong constitutive PJH promoter from Bacillus sp. was applied to overexpress the endoxylanase gene (639 bp) in Bacillus subtilis. The expression plasmid, pJHKJ4, was designed to contain the $P_{JH}$ promoter and open reading frame of endoxylanase including its own promoter. The plasmid was introduced into B. subtilis DB431 and the resulting transformant was grown on LB glucose medium. At the end of cultivation, the endoxylanase activity in the culture supernatant reached about 140 DIm!. The enzyme in the supernatant was concentrated by ultrafiltration (MW cut-off 10 kDa and 30 kDa) and ammonium sulfate precipitation. For the concentration of the enzyme, ultrafiltration was more efficient than 70% ammonium sulfate precipitation. The stabilization of concentrated enzyme solution at $50^{\circ}C$ was examined with various stabilizers such as NaCI, glycerol, polyethylene glycol, sorbitol, and $CaCI_2$. The most effective stabilizers were found to be NaCI and $CaCI_2$.

Molecular Cloning and Characterization of the Gene Encoding Phytoene Desaturase from Kocuria gwangalliensis (Kocuria gwangalliensis 유래 phytoene desaturase 유전자의 cloning과 특성 연구)

  • Seo, Yong Bae;Choi, Seong Seok;Nam, Soo-Wan;Kim, Gun-Do
    • Microbiology and Biotechnology Letters
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    • v.45 no.3
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    • pp.226-235
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    • 2017
  • Carotenoids such as phytoene, lycopene, and ${\beta}-carotene$ are used as food colorants, animal feed supplements, and for human nutrition and cosmetic purposes. Previously, we reported the isolation of a novel marine bacterium, Kocuria gwangalliensis, which produces a pink-orange pigment. Phytoene desaturase (CrtI), encoded by the gene crtI, catalyzes lycopene formation from phytoene and is an essential enzyme in the early steps of carotenoid biosynthesis. CrtI is one of the key enzymes regulating carotenoid biosynthesis and has been implicated as a rate-limiting enzyme of the pathway in various carotenoid synthesizing organisms. Here, we report the cloning of the crtI gene responsible for lycopene biosynthesis from K. gwangalliensis. The gene consisted of 1,584 bases encoding 527 amino acid residues. The nucleotide sequence of the crtI gene was compared with that of other species, including Kocuria rhizophila and Myxococcus xanthus, and was found to be well conserved during evolution. An expression plasmid containing the crtI gene was constructed (pCcrt1), and Escherichia coli cells were transformed with this plasmid to produce a recombinant protein of approximately 57 kDa, corresponding to the molecular weight of phytoene desaturase. Lycopene biosynthesis was confirmed when the plasmid pCcrtI was co-transformed into E. coli containing the plasmid pRScrtEB carrying the crtE and crtB genes required for lycopene biosynthesis. The results from this study will provide valuable information on the primary structure of K. gwangalliensis CrtI at the molecular level.

Surface Display of Bacillus CGTase on the Cell of Saccharomyces cerevisiae (Saccharomyces cerevisiae에서 Bacillus CGTase의 표층발현)

  • Kim Hyun-Chul;Lim Chae-Kwon;Kim Byung-Woo;Jeon Sung-Jong;Nam Soo-Wan
    • Journal of Life Science
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    • v.15 no.1 s.68
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    • pp.118-123
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    • 2005
  • For the expression in Saccharomyces cerevisiae, Bacillus stearothermophilus cyclodextrin glucano­transferase gene (cgtS) in pCGTS (4.8 kb) was subcloned into the surface expression vector, pYD1 (GALl promoter). The constructed plasmid, pYDCGT (7.2 kb) was introduced into S. cerevisiae EBY100 cells, and then yeast transformants were selected on the synthetic defined media lacking tryptophan. The formation of cyclodextrin (CD) was confirmed with active staining of culture broth of transformant grown on starch medium. Enzymatic reaction products with respect to the culture time and the reaction time were examined by TLC analysis. The results indicated that the enzyme activity was exhibited after 12 h cultivation and CD was produced after 10min of enzymatic reaction. When the surface-engineered yeast cells were cultured on galactose medium, maximum activities of CGTase were about 21.3 unit/l and 16.5 unit/l at $25^{\circ}C\;and\;30^{\circ}C$, respectively. The plasmids stability showed about $80\%\;even\;at\;25^{\circ}C\;and\;30^{\circ}C$.

Cloning of Geranylgeranyl Pyrophosphate Synthase (CrtE) Gene from Kocuria gwangalliensis and Its Functional Co-expression in Escherichia coli (코쿠리아 광안리엔시스의 제라닐제라닐 피로인산염 합성 효소의 클로닝과 대장균에서 공발현을 통한 효소 활성에 관한 연구)

  • Seo, Yong-Bae;Kim, Gun-Do;Lee, Jae-Hyung
    • Journal of Life Science
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    • v.22 no.8
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    • pp.1024-1033
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    • 2012
  • A gene encoding a novel geranylgeranyl pyrophosphate (GGPP) synthase from Kocuria gwangalliensis has been cloned and expressed in Escherichia coli. The deduced amino acid sequence showed 59.6% identity with a putative GGPP synthase (CrtE) from K. rhizophila. An expression plasmid containing the crtE gene was constructed, and E. coli cells containing this plasmid produced a recombinant protein with a theoretical molecular mass of 41 kDa, corresponding to the molecular weight of GGPP synthase. Due to the lack of crtE, crtB, and crtI in E. coli, the biosynthesis of lycopene was only obtained when the plasmid pCcrtE was co-transformed into E. coli expressing the pRScrtBI-carrying carotenoid biosynthesis crtB and crtI genes, which were sub-cloned from Paracoccus haeundaensis. The biochemical studies on the expressed proteins were performed via HPLC. The results obtained from this study will provide a wider base of knowledge regarding the primary structure of CrtE cloned from K. gwangalliensis at the molecular level.