• Title/Summary/Keyword: pUC8 vector

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Sequence Analysis of a Cryptic Plasmid pKW2124 from Weissella cibaria KLC140 and Construction of a Surface Display Vector

  • Kim, Soo Young;Oh, Chang Geun;Lee, Young Joo;Choi, Kyu Ha;Shin, Doo Sik;Lee, Si Kyung;Park, Kab Joo;Shin, Hakdong;Park, Myeong Soo;Lee, Ju-Hoon
    • Journal of Microbiology and Biotechnology
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    • v.23 no.4
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    • pp.545-554
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    • 2013
  • Plasmid isolation of kimchi-derived Weissella cibaria KLC140 revealed six different plasmids. The smallest plasmid, pKW2124, was DNA sequenced and characterized, showing 2,126 bp with a GC content of 36.39% and five putative open reading frames (ORFs). In silico analysis of these ORFs showed ORF1 encodes a putative replication protein similar to rolling circular replication proteins from other lactic acid bacteria. However, a single-stranded intermediate was not detected when S1 nuclease was treated, suggesting it may follow theta replication. Interestingly, the replication initiation site of this plasmid is 100% identical to other plasmids from lactic acid bacteria, suggesting it may function for replication initiation. To construct a surface layer expression vector, pTSLGFP, slpA encoding the surface layer protein from Lactobacillus acidophilus was PCR amplified and fused with the gfp gene, forming a SLGFP fused gene. The plasmid pKW2124 was cloned into the XbaI site of pUC19, forming an Weissella-E. coli shuttle vector pKUW22. NheI-linearized pTSLGFP was ligated into pKUWCAT containing pKUW22 and the chloramphenicol acetyltransferase gene from pEK104, resulting in an 8.6 kb pKWCSLGFP surface layer expression vector. After transformation of this vector into W. cibaria KLC140, a GFP fluorescence signal was detected on the surface of the transformant, substantiating production of SLGFP fused protein and its secretion. This is the first report for construction of a Weissella surface layer expression vector, which may be useful for surface layer production of beneficial proteins in Weissella.

Cloning and Expression of a Collagenase Gene from the Marine Bacterium Vibrio vulnificus CYK279H

  • Kim, Bong-Jo;Kim, Hak-Ju;Hwang, Sun-Hee;Bae, Seoung-Kwon;Ha, Soon-Duck;Kim, Jong-Deog;Kong, Jai-Yul
    • Journal of Microbiology and Biotechnology
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    • v.8 no.3
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    • pp.245-250
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    • 1998
  • A gene encoding an extracellular collagenase from the marine bacterium Vibrio vulnificus CYK279H was cloned into E. coli JM83 using the multicopy plasmid vector pUC19. The cloned strain of recombinant E. coli showing collagenase activity had an insert fragment of 3.5 kb and was named E. coli JM83/pKCL 279H. The cloned strain produced two different collagenase during cultivation. These enzymes, named collagenase-I and -II, were purified from the culture supernatant. SDS-PAGE indicated that collagenase-I had a molecular weight of 41 kDa and collagenase-II had a weight of 37 kDa. The N-terminal amino acid sequence of collagenase-I from the cloned strain, E. coli JM83/pKCL279H was determined and was not found to be similar to any other known collagenases. The optimum pH and temperature of the purified collagenase-I were 7.8 and $37^{\circ}C$, respectively.

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Cloning and Expression of cDNA Encoding a Cysteine Protease Inhibitor from Clamworm and Its Possible Use in Managing Anoplophora glabripennis Motschulsky (Coleoptera: Cerambycidae)

  • Li, Shengnan;Guo, Daosen;Zhao, Boguang;Ye, Jianling;Tian, Jie;Ren, Wenqing;Ju, Yunwei;Cui, Peng;Li, Ronggui
    • Journal of Microbiology and Biotechnology
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    • v.20 no.8
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    • pp.1243-1250
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    • 2010
  • A cDNA encoding a cysteine protease inhibitor (CPI) was isolated from the cDNA library of clamworm Perinereis aibuhitensis Grube. The deduced amino acid sequence analysis showed that the protein had 51%, 48%, and 48% identity with Zgc:153129 from Danio rerio, cystatin B from Theromyzon tessulatum, and the ChainA, stefin B tetramer from Homo sapiens, respectively. The gene was cloned into the intracellular expression vector pET-15b and expressed in Escherichia coli. The recombinant CPI (PA-CPI) was purified by affinity chromatography on Ni-charged resin and ion-exchange chromatography on DEAE-Sepharose FF. The relative molecular mass of PA-CPI was 16 kDa as deduced by SDS-PAGE. Activity analysis showed that the recombinant protein could inhibit the proteolytic activity of papain. A constitutive and secretive expression vector was also constructed, and the cDNA encoding CPI was subcloned into the vector for extracellular expression. Western blotting analysis results showed that the PA-CPI was secreted into the medium. Bioassay demonstrated that E. coli DH5${\alpha}$ harboring pUC18ompAcat-CPI showed a significant difference in mortality to the Asian longhorned beetle Anoplophora glabripennis compared with untransformed E. coli DH5${\alpha}$ and control.

Cloning and Expression of a Novel Chitosanase Gene (choK) from $\beta$-Proteobacterium KNU3 by Double Inverse PCR

  • Yi, Jae-Hyoung;Lee, Keun-Eok;Choi, Shin-Geon
    • Journal of Microbiology and Biotechnology
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    • v.14 no.3
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    • pp.563-569
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    • 2004
  • The DNA sequence of the chitosanase gene (choK) from $\beta$-Proteobacterium KNU3 showed an 1,158-bp open reading frame that encodes a protein of 386 amino acids with a novel 74 signal peptide. The degenerated primers based on the partial deduced amino acid sequences from MALDI- TOF MS analyses yielded the 820 bp of the PCR product. Based on this information, double inverse PCR cloning experiments, which use the two specific sets of PCR primers rather than single set primers, identified the unknown 1.2 kb of the choK gene. Subsequently, a 1.8 kb of full choK gene was cloned from another PCR cloning experiment and it was then subcloned into pGEM T-easy and pUC18 vectors. The recombinant E. coli clone harboring recombinant pUC18 vector produced a clear halo around the colony in the glycol chitosan plates. The recombinant ChoK protein was secreted into medium in a mature form while the intracellular ChoK was produced without signal peptide cleavage. The activity staining of PAGE showed that the recombinant ChoK protein was identical to the chitosanase of wild-type. The comparison of deduced amino acid sequences of choK revealed that there is 92% identity with that of Sphingobacterium multivorum chitosanase. Judging from the conserved module in other bacterial chitosanases, chitosanase of KNU3 strain (ChoK) belongs to the family 80 of glycoside hydrolases.

Nucleotide Sequence Analysis and Expression of the Alginate Lyase Gene from Pseudomonas sp. W7 in Escherichia coli

  • Lee, Jong-Hee;Kang, Jung-Hwa;Kim, Young-Ok;Kim, Jin-Man;Kong, In-Soo
    • Journal of Microbiology and Biotechnology
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    • v.8 no.5
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    • pp.531-535
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    • 1998
  • The gene encoding alginate lyase was isolated from a library constructed with the vector, pUC19, and expressed in Escherichia coli. The nucleotide sequence of the cloned alginate lyase gene (ALY) from Pseudomonas sp. W7 was determined. The nucleotide sequence revealed a 1,035 bp open reading frame (ORF), encoding 345 amino acid residues with a calculated molecular mass of 37,478 Da. The N-terminal amino acid sequences (15 residues) of purified alginate lyase corresponded to that of the deduced amino acid sequence.

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Construction of L-Threonine Overproducing Escherichia coli by Cloning of the Threonine Operon

  • Lee, Jin-Ho;Oh, Jong-Won;Noh, Kap-Soo;Lee, Hyune-Hwan;Lee, Jae-Heung
    • Journal of Microbiology and Biotechnology
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    • v.2 no.4
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    • pp.243-247
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    • 1992
  • The thr operon of Escherichia coli TF427, an $\alpha$-amino-$\beta$-hydroxyvaleric acid (AHV)-resistant threonine overproducer, was cloned in a pBluescriptII $KS^+$ plasmid by complementation of E. coli mutants. All clones contained a common 8.8 kb HindIII-generated DNA fragment and complemented the thrA, thrB, and thrC mutants by showing that these clones contained the whole thr operon. This thr operon was subcloned in the plasmid vectors pBR322, pUC18, and pECCG117, an E. coli/Corynebacterium glutamicum shuttle vector, to form recombinant plasmids pBTF11, pUTF25 and pGTF18, respectively. The subcloned thr operon was shown to be present in a 6.0 kb insert. A transformant of E. coli TF125 with pBTF11 showed an 8~11 fold higher aspartokinase I activity, and 15~20 fold higher L-threonine production than TF125, an AHV-sensitive methionine auxotroph. Also, it was found that the aspartokinase I activity of E. coli TF125 harboring pBTF11 was not inhibited by threonine and its synthesis was not repressed by threonine plus isoleucine.

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Molecular Cloning and Expression of a Cellulolytic Xylanase Gene from Bacillus circulans in Escherichia coli (Bacillus circulans 기원의 Cellulolytic Xylanase 유전자의 대장균에서의 클로닝 및 발현)

  • 이동석;김지연;김한복
    • Korean Journal of Microbiology
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    • v.36 no.3
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    • pp.196-202
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    • 2000
  • A gene for cellulolytic xylanase of Bacillus circulnns ATCC21365 was cloned on pUC 19 in Eschwichia coli. The recombinant plasniid pXLI80 contained an 1.8 id, inselt composed of0.5 kb and 1.3 kb PslI fragments derived from B, circulans. The 0.5 kh fragment in the upstream region of 1.3 kb one was confirmed lo be indispensable for not only expression but also hyperexpression of the cloned gene. The transformant overproduced the xylanase 135 times greater than that produced by the orlginal B circulnns. The optimum pH and temperature of the cloned enzyme we]-e pH 5.2 and $60^{\circ}C$, respectively. Heal pretl-eatment at TEX>$55^{\circ}C$C for 1 Indid not cause inhibition of the activity of this enzyme. The elm.ynie could hydl-olyre CMC and lichenan as well as xylan to produce xylose(or GI), xylohiose(or G2) and xylolnose(or G3) as inah products. Hence We defined the cloned enzyme as a cellulolytic xylanase. The SDS-PAG electrophoretic mobility and zyiiogram of this enzyme derived from whole cell extracts or c~~lture supematants or E. coli(pXL180) indicated a molecular weight of 45,000 and nonprocessing of the enzyme in the peilplasln of E. coli.

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Degradation of Trichloroethylene by a Growth-Arrested Pseudomonas putida

  • Hahm, Dae-Hyun
    • Biotechnology and Bioprocess Engineering:BBE
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    • v.3 no.1
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    • pp.11-14
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    • 1998
  • A toluene-oxidizing strain of Pseudomanas mendocina KR1 containing toluene-4-mono-oxygenase (TMO) completely degrades TCE with the addition of toluene as a co-substrate in aerobic condition. In order to construct in situ bioremediation system for TCE degradation without any growth-stimulating nutrients or toxic inducer such as toluene, we used the carbon-starvation promoter of Pseudomonas putida MK1 (Kim, Y. et al., J. bacteriol., 1995). Upon entry into the stationary phase due to the deprivation of nutrients, this promoter is strongly induced without further cell growth. The TMO gene cluster (4.5 kb) was spliced downstream of the carbon starvation promoter of Pseudomonas putida MK1, already cloned in pUC19. TMO under the carbon starvation promoter was not expressed in E. coli cells either in stationary phase or exponential phase. For TMO expression in Pseudomonas strains, tmo and carbon starvation promoter region were recloned into a modified broad-host range vector pMMB67HES which was made from pMMB67HE(8.9 kb) by deletion of tac promoter and lacIq (about 1.5 kb). Indigo was produced by TMO under the carbon starvation promoter in a Pseudomonas strain of post-exponential phase on M9 (0.2% glucose and 1mM indole) or LB. 18% of TCE was degraded in 14 hours after entering the stationary phase at the initial concentration of 6.6 ${\mu}$M in liquid phase.

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The amino acid analysis of polyhedrin and DNA sequence of ployhedrin gene in nuclear polyhedrosis virus (Nuclear polyhedrosis virus의 polyhedrin 아미노산 및 polyhedrin gene 염기서열 분석)

  • Lee, Keun-Kwang
    • Journal of fish pathology
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    • v.8 no.1
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    • pp.37-46
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    • 1995
  • The amino acid analysis of polyhedrin protein and nucleotide sequence of polyhedrin gene in H. cunea nuclear polyhedrosis virus (HcNPV) genome have been studied. Polyhedrin had three polypeptide bands in SDS - polyactylamide gel electrophoresis. The major polypeptide had a molecular weight of 25 kd. The polyhedrin was composed of 17 different amino acids. HcNPV DNA was digested with EcoRI restriction enzyme and hybridized with ($\alpha^{32}P$) -labelled AcNPV polyhedrin gene cDNA. The polyhedrin gene was located on the fragment of EcoRI-H. The EcoRI - H fragment containing polyhedrin gene was cloned into the EcoRI site of pUC8 vector which was confirmed with southern blotting, and the recombinant plasmid containg polyhedrin gene was designated as hPE-H. The promoter region of polyhedrin genomic DNA was sequenced. The sequences identified as the TATA box was found at the 5' flanking region of the polyhedrin genomic DNA approximately -79 bp upstream from the transcriptional start site. But CAAT-like box was not shown near the TATA-like box in the polyhedrin gene. Four tandem repeats with the sequence 5' -CTAATAT-3' and 5'-TAAATAA-3' were found between -141 and -108 or -83 upstream and -52 bp downstream from the translation start site. About -141 bp region upstream from the translational start site was highly AT (78%) rich. The coding region for the polyhedrin starts and ends with ATG and TAA, respectively.

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Subcloning and Enhanced Expression of the $\beta$-Xylosidase Gene Cloned from Alkalophilic Bacillus sp. K-17 (호알칼리성 Bacillus sp. K-17 의 $\beta$-Xylosidase 유전자의 Subcloning 및 발현증진)

  • Sung, Nack-Kie;Ko, Hack-Ryong;Kho, Yung-Hee;Chun, Hyo-Kon;Chung, Young-Chul
    • Microbiology and Biotechnology Letters
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    • v.17 no.4
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    • pp.283-288
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    • 1989
  • To reduce the size of 5.0kb HindIII fragment containing $\beta$-xylosidase gene, the 5.0kb insert of pAX278 which was previously cloned was reduced by various deletions and thus 1.4kb EcoRI-Xbal fragment was subcloned into pUC19, and the recombinant plasmid was named pAK208. The $\beta$-xylosidase acnivity of E. coli harboring pAK208 was higher about 1.3times than that of pAX278. For the improvement of $\beta$-xylosidase activity, we cloned and expressed the $\beta$-xylosidase gene in E. coli using vector pKK223-3 containing a potent tac-promoter, and enzyme activity of the transformant harboring pKHR212 was increased about 3.3 and 1.8 times than that of E. coli(pAX278) and Bacillus sp. K-17, respectively. To obtain better expression of $\beta$-xylosidase gene, the whole 5.0kb HineIII fragment was recloned into pC194, and the Bacillus sp. K-17 transformant harbor-ing the recombinant plasmid pCX174 showed higher activity than that of the E. coli (pAX278) and Bacillus sp. K-17, respectively. The characteristics of enzyme purified from transformants were consistent with those front alkalophilic Bacillus sp, K-17.

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