• Title/Summary/Keyword: pUB110

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Conditions for Transformation of Alkalophilic Bacillus sp. K-17 (호알칼리성 Bacillus속 B-17의 형질전환조건)

  • 성낙계;정운상;고학룡;정정희
    • Microbiology and Biotechnology Letters
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    • v.17 no.3
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    • pp.213-218
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    • 1989
  • To investigate the possibility of using alkalophilic Bacillus sp. K-11 as a host for molecular cloning, plasmid pUB110 and pBD64 were introduced into alkalophilic Bacillus sp. K-17 by protoplast transformation system. Protoplasts of Bacillus sp. K-11 were prepared by treatment with 200 $\mu\textrm{g}$/$m\ell$ Iysozyme in SMM buffer containing 0.4M sucrose. Optimal temperature, pH and culture time for protoplast formation were 4$0^{\circ}C$, 7.0 and 4hrs, respectively. Cell wall was regenerated efficiently on DM3 medium containing 0.8% agar and 0.5M sodium succinate. Under these conditions for protoplast formation and regeneration, the highest transformation efficiency was obtained with cells incubated for 4hrs, and using 30%(V/V) of 40%(W/V) PEG6,000, In characteristics of transfer-mants, plasmid pUB110 was more stable than plasmid pBD64 in Bacillus sp. K-17. Maximum xylanase production of both transformants carrying pUB110 and pBD64, respectively was similar, but under the same conditions, enzyme secretion by transformant carrying pUB110 was earlier than that of transformant carrying pBD64.

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Transformation of Gram-Positive Bacteria by Electroporation (Electroporation을 이용한 그람 양성 세균의 형질전환)

  • Oh, Tae-Gwon;Kim, Byung-Kak;Choi, Eung-Chil
    • YAKHAK HOEJI
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    • v.40 no.1
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    • pp.59-64
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    • 1996
  • Gram-positive bacteria, Bacillus subtilis BR151 and Staphylococcus aureus RN4220 were transformed with high efficiency by electroporation. The cells were incubated until late log phase, washed three times with 10% glycerol, 1mM HEPES, 12% sucrose and resuspended to $10^{10}{\sim}10^{11}cfu/ml$, then stored at -$70^{\circ}C$. Transformation efficiency of B. subtilis BR151 was $1.03{\times}10^7cfu/{\mu}g$ with cells washed with 10% glycerol and electroporated by 15KV/cm, 0.7msec pulse with pUB110. Transformation efficiency of S. aureus RN4220 was $4{\times}10^6cfu/{\mu}g$ with cells washed with 1mM HEPES + 10% glycerol and electroporated by 15KV/cm, 2.5msec pulse. The number of total transformants was 1000 when B. subtilis BRI51 was transformed with 100ng pUB110 DNA and the number of total transformants was 9000 when S. aureus RN4220 was transformed with 10ng pUB110 DNA

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Physiological properties and transformation of alkaline-tolerant bacteria (알카리내성 세균의 생리적 특성 및 형질전환)

  • 유주현;정용준;정건섭;오두환
    • Microbiology and Biotechnology Letters
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    • v.14 no.3
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    • pp.239-244
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    • 1986
  • To develop the potential use as new host strain for gene cloning, alkaline-tolerant isolates from soil were examined for amylase activity, protease activity, antimicrobial activity and transformability by using plasmid pUB 110. Of these strains, one was selected and identified as Bacillus sp. YA-14. in the enzymatic properties of Bacillus sp. YA-14 the optimal conditions for the reaction of amylase and protease were at pH 0.8 and pH 7.5 respectively. The antimicrobial activity of Bacillus sp. YA-14 was also found. For the transformation, Bacillus sp. YA-14 was cultured to late logarithmic growth phase ai 37$^{\circ}C$ in modified SPI medium (pH 8.0) containing 0.4% MgSO$_4$. The presence of pUB 110 plasmid DNA in transformants was confirmed by electrophoresis and stably maintained in the new host.

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Transformation of Bacillus brevis P176-2 with Plasmid DNA by Electroporation (전기천공법에 의한 Bacillus brevis P176-2의 형질전환)

  • 채기수;엄경일
    • The Korean Journal of Food And Nutrition
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    • v.5 no.2
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    • pp.77-83
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    • 1992
  • The optimum conditions and mechanisms for the plasmid-mediated genetic transformation of intact cells of Bacillus brevis Pl76-2, an extracellular protein producing bacterium by electroporation were investigated. It was found that pUB110 Plasmid DNA can be introduced into intact bacterial cells by electroporation. The frequency of transformation by this electroporation system depended upon the initial electric field strength, the capacity of the electric discharge capacitor, growth stage, number of successive pulses and composition of electroporation buffer. It was effective for transformation that cells were harvested, washed and resuspended with HSM [7M HEPES(PH 7.4), 272mM sucrose, 1 mM MgCl2] electroporation buffer when cell growth was attained to 1.2 at OD660. A maximum frequency of transformation of 2.40$\times$104 transformants per$\mu$g plasmid DNA was obtained by two succesive Pulses with an initial electric field strength of 12.5kV/cm and with a capacitance of 7.3uF.

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Molecular Cloning and Expression of Alkaline Amylase Gene of Alkalophilic Bacillus sp. in Bacillus subtilis and Escherichia coli (알카리성 Bacillus sp.의 호알카리성 amylase 유전자의 Bacillus subtilis와 Escherichia coli로의 cloning과 발현)

  • Bae, Moo;Park, Shin-Hae
    • Microbiology and Biotechnology Letters
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    • v.17 no.2
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    • pp.160-164
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    • 1989
  • A 5.7Kb EcoRI fragment containing alkaline amylase gene of Bacillus sp. AL-8 obtained in the previons experiment (10) was transformed in B. subtilis via plasmid pUB110. The enzymatic proper-ties of the amylase produced by the transformants were Identical to those of the donor strain. Thus, the alkaline amylase activity from the transformant was maximum at pH 10 and 5$0^{\circ}C$. And the enzyme was very stable over the ranges of alkaline pH. In order to determine the location of the alkaline amylase gene within the 5.7Kb DNA fragment, the fragment was subcloned in E. coli. It was found that the alkaline amylase gene was located k EcoRI fragment of 3.7Kb.

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Cloning and Expression of A Liquefying $\alpha$-Amylase Gene from Bacillus amyloliquefaciens in Bacillus subtilis (Bacillus amyloliquefaciens 액화형 $\alpha$-amylase 유전자의 클로닝 및 Bacillus subtilis에서의 발현)

  • 김사열;송방호;이인구;서정환;홍순덕
    • Microbiology and Biotechnology Letters
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    • v.14 no.6
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    • pp.479-485
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    • 1986
  • A 5200 basepair DNA fragment containing the Bacillus amyloliquefaciens amyE gene, encoding liquefying $\alpha$-amylase (1,4-$\alpha$-1)-glucan glucanohydrolase, EC 3.2.1.1), has been inserted into BamHI site of the pUB110 and the hybrid plasmid was designated as pSKS3. The pSKS3 was transformed into the Bacillus subtilis KM2l3 as a host which is a saccharifying $\alpha$-amylase deficient mutant of Bacillus subtilis NA64, and the plasmid in the transformed cell was expressed $\alpha$-amylase production and kanamycin resistance. The $\alpha$-amylase production of the transformed cell was reduced to one fifth of that of the donor strain. The Bacillus subtilis KM2l3 tarring pSKS3 indicated that the amyE gene product is a polypeptide which has the same electrophoretic mobility with that of the Bacillus amyloliquefaciens, but different from the saccharifying $\alpha$-amylase of Bacillus subtilis NA64. It means that the amyE gene of pSKS3 originales from the Bacillus amyloliquefaciens.

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Construction of Pretense-defective Mutant of Bacillus subtilis by Homologous DNA Recombination (상동성 유전자재조합을 이용한 단백질분해효소 비생산 바실러스균주의 구축)

  • Lee, Jin-Tae;An, Bong-Jeun
    • Food Science and Preservation
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    • v.7 no.4
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    • pp.414-417
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    • 2000
  • Competent cell transformation of B. subtilis AC819 was carried out using phenotypic protease-defective(Npr-) DNA of B. subtilis MT-2. An obtained transformant, designated B. subtilis HL-1, was obtained by homologous DNA recombination. Phenotypes of B. subtilis HL-1 were characterized histidine requirement streptomycin-resistance, tetracyclin resistance and non-producing protease. Protoplast transformation frequency of B. subtilis HL-1 by plasmid pUB110 was higher than that of B. subtilis MT-2. From this result, B. subtilis HL-1 is useful for protease gene transformation and thermostable protease gene cloning as a host.

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Expression of a $\beta$-1,3-Glucanase Gene from Bacillus circulans in B. subtilis and B. megaterium (Bacillus subtilis와 Bacillus megaterium에서의 $\beta$-1,3-glucanase 유전자의 발현)

  • 김기훈;김지연;김한복;이동석
    • Korean Journal of Microbiology
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    • v.37 no.4
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    • pp.253-258
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    • 2001
  • A Bacillus circulans KCTC3004 $\beta$-1,3-glucanase gene contained in a recombinant plasmid pLM460 derived from subcloning the original recombinant plasmid pLM530 was trasferred into a new shuttle vector plasmid pLMS1180 by ligating linearized DNAs of pLM460 and pUB110. B. subtilis RM125 and B. megaterium ATCC14945 transformed with pLMS1180 produced the $\beta$-1,3-glucanase substantially. Most of the enzyme was produced during the exponential growth period. The maxium activities of the $\beta$-1,3-glucanase produced by the Bacillus transformants were compared with that of the B. circulans gene donor strain. The B. subtilis RM125 (pLM1180) enzyme showed the activity 14 times higher than that of the gene donor cells, followed by the B. megaterium ATCC14945 (pLMS 1180) enzyme with activity 5 times higher than that of the gene donor cells. While E. coli secreted about 7% of the produced enzyme, B. subtilis excreted the enzyme into the medium wholly and B. megaterium about 97% of the total product. The SDS-PAGE of this enzyme produced in E. coli (pLMS1180), B subtilis (pLMS1180) or B. megaterium (pLMS1180) indicated a molecular weight of 38,000. The enzymes overproduced in three different host cells hydrolyzed laminarin to produce mainly laminaribiose, laminaritriose, and laminarioligosaccharides. The plasmid pLMS1180 was stable in B. megaterium, E. coli, but was unstable in B. subtilis.

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Cloning and Expression of an $\alpha$-Amylase Gene from Bacillus circulans in B. subtilis and B. megaterium (Bacillus circulans $\alpha$-amylase 유전자의 Basillus subtilis와 Bacillus megaterium에서의 클로닝 및 발현)

  • 이동석;김지연;김한복
    • Korean Journal of Microbiology
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    • v.36 no.3
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    • pp.203-208
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    • 2000
  • A Baczllus circdans KCTC3004 $\alpha$-amylase gene contained in a recombinant plasmid pAL850 was transferred into a new shuttle vector plasmid pALSIlI by ligating linearlzed DNAs of pUC19 and pUB110. B. subtilis RM125 and B. megatenurn ATCC14945 transfonned with pALS111 produced the $\alpha$-amylase substantially Most of the enzyme was produced during the exponential growth period. The maxiinurn activities of the $\alpha$-amylase produced by the Bucillus transformants were compared with that of the B. circulans gene donor strain. The B. subtilis RM125(pALS111) enzyme showed the actlvicy 95 times higher than that of the gene donor cells, followed by the B, nzegaterium ATCC14945(pALSlll) enzyme with activity 34 limes higher than that of the gene donor cells. While E coli secreted about 10% of the produced enzyme, B. subtilis excreted the enzyme inlo the medium wholly and B. megaterirun about 98% ofthe total product. The plasmid pALSI11 was quite stable inB. nzegaterium (92%), inoderately stable in B. subtilis (76%), but was unstable in E. coli (38%). The SDS-PAGE and zymogram of this enzyme produced in E. coli(pALS111), B. subtilis( pALS111) or B. megateril~m (pALS111) indicated a molecular weight of 55,000. The enzymes overproduced in three different host cells hydrolyzed starch to produce mainly maltoaiose and mallooligosaccharides.

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Characterization of a Small Cryptic Plasmid from Pseudomonas nitroreducens Strain TX1 (Pseudomonas nitroreducens TX1에 존재하는 작은 플라스미드의 특성 규명)

  • Nguyen, Ngoc Tuan;Lee, Kyoung;Kang, Ju Beom;Huang, Shir-Ly
    • Korean Journal of Microbiology
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    • v.50 no.3
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    • pp.210-215
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    • 2014
  • Pseudomonas nitroreducens TX1 was isolated from a rice field drainage in Taiwan. The bacterium is of special interest because of its capability to use a group of nonionic surfactants such as alkylphenol polyethoxylates even at high concentrations as a sole carbon source. In this study, a small cryptic circular plasmid, pTX1, was characterized from P. nitroreducens TX1. It is 2,286 bp in length with a GC content of 63.3% and harbors three open reading frames, $Rep_{pTX1}$ and functionally unidentified ORF1 and ORF2. The predicted $rep_{pTX1}$ gene product is homologous to Rep proteins of plasmids belonging to the pC194/pUB110 family, which is predominantly found in Gram-positive bacteria and is known to replicate by the rolling-circle mechanism. The copy number of pTX1 was estimated to be about 150 in each cell. Based on the genetic fingerprints and comparison with other plasmids, it is concluded that pTX1 replicates by a rolling circle mechanism which is rarely found for Pseudomonas plasmids.