• 제목/요약/키워드: plasmid vector

검색결과 567건 처리시간 0.029초

Zymomonas mobilis의 Plasmid Vector 제조에 관한 연구 (Construction of Plasmid Vectors for Zymomonas mobilis)

  • Hwang, Duk-Ju;Rhee, Sang-Ki;Pack, Moo-Young
    • 한국미생물·생명공학회지
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    • 제15권5호
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    • pp.319-327
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    • 1987
  • 알코올 생산성이 높은 Zymomonas 균주의 기질 이용성을 넓히기 위한 목적으로 natural replicon을 포함하며 적당한 항생제 저항표지를 갖는 plasmid vector의 제조를 시도하였다. Z. mobilis ATCC10988에서 분리된 몇 개의 plasmid중 3.9kb의 적당한 크기를 갖는 pZM3를 선정하여 수종의 제한효소로 처리하여 절편의 크기에 따라 유전자 지도를 작성하였다. pZM 3의 replicon과 pBR 325의 chloramphenicol 저항유전자를 포함한 재조합 plasmid인 pHZ22를 개발하고 이 plasmid vector가 숙주세포인 Z. mobilis ATCC31821에서 독립적으로 replication됨을 확인하였다. 또 하나의 항생제 저항표지로서 RP4의 tetracycline 저항유전자를 분리하여 pHZ22에 도입함으로써 pHZT224를 제조하였는데 이 plasmid vector도 Zymomonas로 conjugation에 의해 전이되어 안정하게 유지 되었다. 본 연구를 통하여 개발된 plasmid vector는 Z. mobilis와 E. coli에 공히 작용하는 shuttle vector 로서 외부 유전자를 Zymomonas에 도입시킬 수 있는 유용한 유전자 운반체임이 확인되었다.

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Construction of a Bioluminescent Labelling Plasmid Vector for Bifidobacteria

  • Moon, Gi-Seong;Narbad, Arjan
    • 한국축산식품학회지
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    • 제38권4호
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    • pp.816-822
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    • 2018
  • Bifidobacterium is recognized as one of the most beneficial microorganisms in our gut. Many researches on bifidobacteria have been done to understand their roles in the gut. The objective of the present study was to develop a bioluminescent labelling plasmid vector for bifidobacteria to facilitate their visualization in vitro, in situ, and in vivo. A plasmid replicon (2.0 kb) of plasmid pFI2576 previously identified from B. longum FI10564 was amplified by PCR and cloned into pUC19 plasmid vector (2.68 kb). The cloned replicon was subcloned into pTG262 ($luc^+$) recombinant plasmid vector (7.4 kb) where a luciferase gene ($luc^+$) from pLuc2 (8.5 kb), an Escherichia coli and lactobacilli shuttle vector, was inserted into pTG262 plasmid vector. The final recombinant DNA, pTG262::pFI2576 rep ($luc^+$), was transferred into a B. catenulatum strain. This recombinant strain showed 3,024 relative luminescence units at $OD_{600}$ value of 0.352. Thus, this recombinant plasmid construct can be broadly used for labelling bifidobacteria.

Novel Trimeric Complex for Efficient Uptake of Plasmid Vector into HepG2 Cells

  • Joo, Jong-Hyuck;Park, Jong-Gu
    • 대한의생명과학회지
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    • 제9권2호
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    • pp.67-74
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    • 2003
  • Viral and non-viral vectors have been used in the delivery of genetic materials into animal cells and tissues, with each approach having pros and cons. Non-viral vectors have many useful merits such as easy preparation, low immunity and size tolerance of a transgene when compared to those of viral vectors. Delivery specificity may be achieved by complex formation between receptor ligands and a non-viral vector. In the present study, non-viral vector systems are investigated in an effort to find a practical delivery means for gene therapy, Receptor-ligand interaction between transferrin-receptor and transferrin was utilized for efficient gene transfer into cancer cells. A plasmid vector, pcDNA3 (LacZ) was ligated with a small duplexed oligo fragment in which a Biotin- VN$^{TM}$ phosphoramidite was placed in the middle of the oligo. The plasmid vector labeled by biotin was then conjugated with biotin-labeled transferrin via streptavidin. This trimeric conjugates were delivered to a hepatoma cell line, HepG2. The delivery efficiency of the trimeric conjugate was 2-fold higher than that of cationic liposomes used for transfection of a plasmid vector. These results demonstrate that a plasmid vector can be efficiently transferred into cells by forming a trimeric complex of plasmid vector-linker-ligand.

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Zymomonas mobilis Plasmid Vector의 숙주세포 내에서의 안정성에 관한 연구 (Stabilities of Plasmid Vectors in Zymomonas mobilis)

  • 이상기;박은숙;황덕주;박무영
    • 한국미생물·생명공학회지
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    • 제15권5호
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    • pp.328-333
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    • 1987
  • 고효율 에타놀 생성 균주인 Zymomonas mobilis의 plasmid vector가 숙주세포 내에서 안정하게 유지되는지의 여부를 회분 및 연속배양 방법을 통하여 조사하였다. Z. mobilis 숙주세포는 전이된 plasmid의 크기와 배지의 조성에 따라 증식속도에 영향을 받음을 알 수 있었고 작은 크기의 plasmid를 비 선택성 (non-selective) 배지에서 배양한 경우 더 빠른 성장을 보였다. 또한 사용한 4종류의 plasmid vector 모두 숙주세포 내에서 30세대 이상에 걸쳐 93% 이상의 높은 안정성을 나타내면서 독립적으로 증식함이 확인되었다.

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YEp 13 vector를 이용한 Bacillus amyloliquefaciens amylase gene의 cloning II. Saccharomyces cerevisiae에서의 발현 (Cloning of Bacillus amyloliquefaciens amylase gene using YEp 13 as a vector II. Expression of cloned amylase gene in Saccharomyces cerevisiae)

  • 김관필;서정훈
    • 한국미생물·생명공학회지
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    • 제14권3호
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    • pp.209-212
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    • 1986
  • YEp 13 plasmid에 B. amyloliquefaciens의 $\alpha$-amylase gene을 cloning시켜서 얻은 hybrid plasmid를 E. coli C 600으로 형질전환시켜서 amylase 활성을 나타내는 균주를 선별하였다. 선별된 E. coli C 600균주를 plasmid추출하여 전기영동해 본 결과 plasmid가 매우 불안정하였으며, 그중 가장 단순한 plasmid band를 지니고 있으며 amylase활성이 강한 E. coli균주를 선별하였다. 선별된 균주의 균체내에 있는 2개의 plasmid DNA를 분리하여 각각의 plasmid를 pTG 17-1, pTG 17-2로 명명하였으며 S. cerevisiae MC 16에서 형질전환이 가능한 pTG 17-2 DNA를 제한효소 EcoRI과 Pst I으로 restriction한 결과 EcoRI으로 처리한 경우는 7.3, 4.8, 2.4 kb인 3개의 분획으로 나타났으며 Pst I으로 처리한 경우는 linear로 14.5kb임을 알았으며 이로써 pTG 17-2 plasmid의 size가 약 14kb임을 알았다. 또한 E.coli균체내에서의 ampicillin sensitive로써 이 plasmid의 ampicillin resistance site가 결실되었음을 알았고 효모의 형진전환체로 부터의 $\alpha$-amylase는 균체외로 분비되지 않았고 효모균체내의 $\alpha$-amylase는 Somogyi-Nelson방법과 Agar diffusion 방법으로 확인하였다.

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Bacillus sp. SSA3 균주의 Expression Vector 개발 (Construction of Expression Vector of Bacillus sp. SSA3 Strain)

  • 조윤래;김종규;권대준
    • 한국미생물·생명공학회지
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    • 제20권6호
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    • pp.637-641
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    • 1992
  • 한국 재래식 된장.간장 발효균 Bacillus sp. SSA3 균주의 expression vector를 개발하기 위해 Bacillus sp. SSA3의 chromosomal DNA로부터 유전자의 promoter 부위를 cloning 하였다. Recombinant plasmid를 제작하기 위하여 Bacillus sp. SSA3의 chromosomal DNA을 HindIII로 절단한 단편을 pGR71 plasmid의 CAT gene과 pUC18 plasmid의 $\beta$-galactosidase gene의 전방에 삽입시킨 후, E.coli JM109에 형질전환하였다.E. coli JM109의 chloramphenicol 내성 clones으로부터 6 recombinant plasmid를 선별하였다. 이들 선별된 plasmid는 Bacillus sp. SSA3의 expression vector로 사용시 각 재조합 plasmid 중에 삽입된 promoter의 염에 대한 영향의 정도를확인하기 위해 10% NaCl이 첨가된 LB medium상에서 배양하였을 때, 이들 중 Bacillus sp. SSA3의 4 clones은 융합 CAT gene의 발현이 강하게 감소되었으나 2 clones은 약하게 저해되었다.

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A plasmid vector faciliting gene expression in both yeast and mammalian cells

  • Lee, Tae-Ho
    • Journal of Microbiology
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    • 제35권2호
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    • pp.149-151
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    • 1997
  • A plasmid vector with combined features of yeast shuttle vector and mammalian expression vector was constructed to facilitate expression of cloned gene in both cell-types. All necessary elements required for plasmid maintenance and selection in E. coli, yeast and mammalian cells were size-economically arranged in this plasmid. The numan cytomegalovirus (CMV) immediate early promoter and yeast GAL1 promoter were sequentially placed in front of the gene to be expressed. The synthetic splicing donor and acceptor sequences were inserted into the immediate upstream and downstream of the GAL1 promotor, allowing the CMV promotor to direct the expression of a given gene in mammalian cell environment by splicing out the interfering GAL1 promotor sequence. When the resulting vector containing LacZ as a gene was introduced into yeast and mammalian cells, both cells efficiently produced .betha.-galactosidase, dimonstrating its dual host usage.

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R-plasmid pSBK203의 ori 부위 재조합 및 이를 이용한 E.coli와 B.subtilis 간의 Shuttle-Vector 구성 (Cloning of ori region of R-plasmid pSBK203 and construction of new shuttle-vectors for E. coli & B. subtilis using cloned fragments)

  • 권동현;석종성;변우현
    • 미생물학회지
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    • 제25권4호
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    • pp.262-273
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    • 1987
  • pBR 322와 pBD9을 이용하여 Staphylococcus aureus에서 분리된 chloramphenicol 저항성(Cmr) plasmid인 pSBK 203상의 ori 부위를 cloning하였다. 또한 E. coli 내에서도 발현하는 pSBK 203상의 Cm 저항성 부위 및 cloning 된 ori 부위를 pBR 322에 재조합시켜 E. coli와 그람양성균인 Bacillus subtilis 양쪽 모두에서 복제되고 또 항생물질에 대한 저항성도 각각 발현되는 shuttle vector 구성을 시도하였다.

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Rhizobium muliticopy plasmid의 복제 및 이주 기능을 이용한 rhizobium-E. coli shuttle vector 구축 (Construction of rhizobium-E. coli shuttle vector using replication and mobilization function of indigenous multicopy plasmid from rhizobium)

  • 조무제;신평균;최영주;강규영;윤한대
    • 미생물학회지
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    • 제27권2호
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    • pp.92-97
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    • 1989
  • the vector, pGUR19, for Rhizobium gene manipulation, was constructed by combining the replication and mobilization function of indigenous multicopy plasmid from Acacia(Robinia pseudoacacia L.) Rhizobia sp86 with E. coli cloning vehicle, pBR322. The vector could be efficiently mobilized by RP4 tra function incorporated into chromosome of E. coli named SM10 and efficiently transferred to various gram negative hosts including Rhizobium and Afrobacterium by transformation. Mobilization frequency of the constructed vector was ranged from $1.2\times 10^{-2}$ (E.coli HB 101) to $4.6\times 10^{-4}$ (A. tumefaciens 15955) and transformation frequency was ranged from $5.4\times 10^{-7}$(E. coli HB101) to $1.2\times 10^{-10}$ (A. tumefaciens 15955). The vector, pGUR19, was stably replicated and maintained in a variety of Rhizobium and Agrobacterium.

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Yeast 2 $\mu$m 플라스미드 유래 FLP recombinase 유전자의 곤충 배양세포내 발현 (Expression of the FLP recombinase of the 2 $\mu$m plasmid of yeast in the cultured cells of Bombyx mori using a transient expression vector)

  • 강석우;윤은영
    • 한국잠사곤충학회지
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    • 제39권1호
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    • pp.36-43
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    • 1997
  • In order to express the FLP recombinase in B. mori cultured cell line, BmN-4, transient expression system using a heat shock protein gene (hsp70) promoter of Dorosophilla melnogaster was constructed. This vector was designated as pHsSV. Activity strength of the hsp70 promoter was compared with that of immediate early gene (IE-1) and polyhedrin gene of BmNPV employing the E. coli $\beta$-galactosidase gene as a reporter gene. The result showed that the pHs $\beta$-gal plasmid vector expressed the $\beta$-galactosidase at 2nd and 3rd day after the transfer of plasmid DNA into BmN-4 cells, which was similar to that of pIE1 $\beta$-gal vector, but different from that of a recombinant virus, vBm $\beta$-gal. For the construction of FLP recombinase transient expression vector, the FLP recombinase gene was cloned by polymerase chain reaction technique. To express the FLP recombinase, this gene was inserted into pHsSV plasmid vector, under the control of the hsp70 promotor, and tranfected in BmN-4 cells. The expressed FLP recombinase was estimated at 44kDa on a 12.5% SDS-PAGE.

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