• 제목/요약/키워드: Bacterial vector

검색결과 170건 처리시간 0.036초

Cloning and Prokaryotic Expression of C-type Lysozyme Gene from Agrius convolvuli

  • Kim, Jong-Wan;Yoe, Sung-Moon
    • Animal cells and systems
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    • 제12권3호
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    • pp.149-155
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    • 2008
  • We have isolated and characterized Agrius convolvuli cDNA encoding a c-type lysozyme. The cDNA sequence encodes a processed protein of 139 amino acid residues with 19 amino acid residues amino-terminal signal sequence and 120 amino acid residues mature sequence. The amino acid residues responsible for the catalytic activity and the binding of the substrate are conserved. Agrius lysozyme has a high identity to Manduca sexta. Recombinant A. convolvuli lysozyme was expressed in Escherichia coli BL21(DE3) pLysS cells for pGEX 4T-1 expression vector. Their optimal conditions for the fusion protein expression and purification were screened. Lysozyme gene amplified with primers ACLyz BamHI and ACLyz XhoI was ligated into the pGEX 4T-1 vector, which contained the glutathione S-transferase(GST) gene for fusion partner. The fusion protein was induced by IPTG and identified by SDS-PAGE analysis. Molecular weight of the fusion protein was estimated to be about 45 kDa. Recombinant lysozyme, fused to GST, was purified by glutathion-Sepharose 4B affinity chromatography. Western blot analysis of this protein revealed an immunoreactivity with the anti-Agrius lysozyme.

동물 세포 내에서 MJ1 인티그라제에 의한 부위 특이적 재조합 (Site-Specific Recombination by the Integrase MJ1 on Mammalian Cell)

  • 김혜영;윤보현;장효일
    • 한국미생물·생명공학회지
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    • 제39권4호
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    • pp.337-344
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    • 2011
  • 이전 연구에서, bacteriophage ${\Phi}FC1$이 Enterococcus faecalis KBL703에서 UV induction을 통해 분리 동정되었으며, ${\Phi}FC1$은 phage attachment site인 attP와 bacterial attachment site인 attB 사이에서 site-specific integration을 촉매하는 integrase를 가지고 있다는 것을 밝혀냈으며 이를 MJ1이라 명명하였다. 이 연구에서는 이를 바탕으로 MJ1에 의한 site-specific integration의 효율을 Escherichia coli와 NIH3T3 cell에서 확인 하기 위해 attP, attB, MJ1을 각각의 벡터에 삽입하였다. MJ1 인테그라제에 의한 재조합을 수행하기 위해서 기질 벡터 pABLP를 $DH5{\alpha}$에 형질전환시킨 후, LB 배지에서 $37^{\circ}C$ 1시간 배양한 후 암피실린(ampicillin)과 테트라싸이클린(tetracycline) 항생제 플레이트로 pGMJ1과 pABLP 같이 가지고 있는 colony 들을 선별하여, LacZ 유전자가 불활성화 된 흰색 콜로니 개수를 세고 통계를 낸 결과 integration의 frequency가 99% 이상인 것으로 나타났다. 또한, 실제로 재조합이 일어났는 지를 확인하기 위해서 콜로니 PCR을 수행하여 재조합의 산물인 attL 150 bp을 확인하였다. PCR 산물은 염기서열분석을 통해 정확한 site-specific integration이 일어났음을 확인하였다. MJ1에 의한 integration을 보이기 위해 attP와 attB를 가지고 있는 vector를 MJ1 expression vector와 함께 NIH3T3 cell에 cotransfection 했으며 GFP를 reporter로 사용해 그 activity를 관찰하였다. NIH3T3 cell에서 GFP의 발현을 형광 현미경을 통해 알아본 결과, MJ1에 의한 sitespecific integration이 다른 accessory protein의 도움 없이 일어난다는 것을 볼 수 있었다. 마찬가지 방법으로, attR과 attL 간의 excision을 GFP로 알아본 결과, GFP는 발현하지 않았으며, 이는 MJ1에 의한 excision이 일어나지 않았음을 보여주었다. 이와 같은 결과로 볼 때, MJ1의 host만이 아니라 넓은 범위안에서도 integration을 수행할 수 있다는 것을 보여주었다. 따라서 MJ1을 이용한 site-specific integration system의 개발은 gene therapy를 위한 gene delivery system의 구축에 있어서 좋은 시작이 될 수 있다.

Expression and Activity of Citrus Phytoene Synthase and $\beta$-Carotene Hydroxylase in Escherichia coli

  • Kim, In-Jung;Ko, Kyong-Cheol;Nam, Tae-Sik;Kim, Yu-Wang;Chung, Won-Il;Kim, Chan-Shick
    • Journal of Microbiology
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    • 제41권3호
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    • pp.212-218
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    • 2003
  • Citrus phytoene synthase (CitPsy) and ${\beta}$-carotene hydroxylase (CitChx), which are involved in caroteinoid biosynthesis, are distantly related to the corresponding bacterial enzymes from the point of view of amino acid sequence similarity. We investigated these enzyme activities using Pantoea ananatis carotenoid biosynthetic genes and Escherichia coli as a host cell. The genes were cloned into two vector systems controlled by the T7 promoter. SDS-polyacrylamide gel electrophoresis showed that CitPsy and CitChx proteins are normally expressed in E. coli in both soluble and insoluble forms. In vivo complementation using the Pantoea ananatis enzymes and HPLC analysis showed that ${\beta}$-carotene and zeaxanthin were produced in recombinant E. coli, which indicated that the citrus enzymes were functionally expressed in E. coli and assembled into a functional multi-enzyme complex with Pantoea ananatis enzymes. These observed activities well matched the results of other researchers on tomato phytoene synthase and Arabidopsis and pepper ${\beta}$-carotene hydroxylases. Thus, our results suggest that plant carotenoid biosynthetic enzymes can generally complement the bacterial enzymes and could be a means of carotenoid production by molecular breeding and fermentation in bacterial and plant systems.

Transiently Experessed Salt-Stress Protection of Rice by Transfer of a Bacterial Gene, mtlD

  • Lee, Eun-A;Kim, Jung-Dae;Cha, Yoo-Kyung;Woo, Dong-Ho;Han, In-Seob
    • Journal of Microbiology and Biotechnology
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    • 제10권3호
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    • pp.415-418
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    • 2000
  • Productivity of a rice plant is greatly influenced by salt stress. One of the ways to achieve tolerance to salinity is to transfer genes encoding protective enzymes from other organisms, such as microorganisms. The bacterial gene, mtlD, which encodes mannitol-1-phosphate dehydrogenase (Mtl-DH), was introduced to the cytosol of a rice plant by an imbibition technique to overproduce mannitol. The germination and survival rate of the imbibed rice seeds were markedly increased by transferring the mtlD gene when it was delivered in either a pBIN19 or pBmin binary vector. When a polymerase chain reaction was performed with the genomic DNAs of the imbibed rice leaves as a template and with mtlD-specific primers, several lines were shown to contain an exogenous mtlD DNA. However, a reverse transcription (RT)-PCR analysis revealed that not all of them showed an expression of this foreign gene. This paper demonstrates that the growth and germination of rice plants transiently transformed with the bacterial gene, mtlD, are enhanced and these enhancements may have resulted from the experssion of the mtlD gene. The imbibition method empolyed in this study fulfills the requirements for testing the function of such a putative gene in vivo prior to the production of a stable transgenic plant.

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Interaction of Escherichia coli K1 and K5 with Acanthamoeba casfellanii Trophozoites and Cysts

  • Matin, Abdul;Jung, Suk-Yul
    • Parasites, Hosts and Diseases
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    • 제49권4호
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    • pp.349-356
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    • 2011
  • The existence of symbiotic relationships between Acanthamoeba and a variety of bacteria is well-documented. However, the ability of Acanthamoeba interacting with host bacterial pathogens has gained particular attention. Here, to understand the interactions of Escherichia coli K1 and E. coli K5 strains with Acanthamoeba castellanii trophozoites and cysts, association assay, invasion assay, survival assay, and the measurement of bacterial numbers from cysts were performed, and nonpathogenic E. coli K12 was also applied. The association ratio of E. coli K1 with A. castellanii was 4.3 cfu per amoeba for 1 hr but E. coli K5 with A. castellanii was 1 cfu per amoeba for 1 hr. By invasion and survival assays, E. coli K5 was recovered less than E. coli K1 but still alive inside A. castellanii. E. coli K1 and K5 survived and multiplied intracellularly in A. castellanii. The survival assay was performed under a favourable condition for 22 hr and 43 hr with the encystment of A. castellanii. Under the favourable condition for the transformation of trophozoites into cysts, E. coli K5 multiplied significantly. Moreover, the pathogenic potential of E. coli K1 from A. castellanii cysts exhibited no changes as compared with E. coli K1 from A. castellanii trophozoites. E. coli K5 was multiplied in A. castellanii trophozoites and survived in A. castellanii cysts. Therefore, this study suggests that E. coli K5 can use A. castellanii as a reservoir host or a vector for the bacterial transmission.

Host Vector Systems of Deep-sea Piezophilic Bacteria, and the Constructions of High Pressure Glow Cells

  • Sato, Takako;Kato, Chiaki
    • 한국미생물학회:학술대회논문집
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    • 한국미생물학회 2007년도 International Meeting of the Microbiological Society of Korea
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    • pp.83-85
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    • 2007
  • Deep-sea bacteria are adapted to extreme environments, such as high pressures and cold temperatures. We have isolated many piezophiles which grow well even under high pressures from deep-sea sediment. Shewanella violacea DSS12 and Moritella japonica DSK1 have the ability to grow at up to 70 MPa, and those bacteria have unique mechanisms of gene expression in response to high pressure conditions. The combination of gene expression systems in piezophiles, like the high pressure-dependent promoters and GFP reporter gene, may reveal highly fluorescent cells when exposed to high hydrostatic pressure conditions. It is predicted that a novel bio-sensing system can be made to probe high pressure environments using living bacteria. First, gene transformation into our piezophiles, strains DSS12 and DSK1, were examined. Eschericha coli S17-1 was used for bacterial conjugation with those piezophiles. As a result, the broad host range vector, pKT231, and the shuttle vector, pTH10, were successfully introduced to DSS12 and DSK1, respectively. Next, The pressure regulated promoters from DSS12 and DSK1 were cloned into proper vectors and combined with GFP as a reporter gene downstream of each promoter. The transformants of DSK1 and DSS12 with the recombinant pTH10 and pKT231 plasmid, which has cadA and glnA promoters (each of them is a pressure regulated promoter from DSK1 and DSS12, respectively) and GFP, were grown under high pressure and gene expression of GFP promoted by 50 MPa pressure was confirmed. This is a critical point to create a pressure-sensing bacteria, as the "High Pressure Glow Cells", which will indicate the level of environmental pressure using fluorescence of GFP as a reporter gene.

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Platform Technology for Food-Grade Expression System Using the genus Bifidobacterium

  • Park, Myeong-Soo;Kang, Yoon-Hee;Cho, Sang-Hee;Seo, Jeong-Min;Ji, Geun-Eog
    • 한국미생물생명공학회:학술대회논문집
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    • 한국미생물생명공학회 2001년도 Proceedings of 2001 International Symposium
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    • pp.155-157
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    • 2001
  • Bifidobacterium spp. is nonpathogenic, gram-positive and anaerobic bacteria, which inhabit the intestinal tract of humans and animals. In breast-fed infants, bifidobacteria comprise morethan 90% of the gut bacterial population. Bifidobacteria spp. are used in commericial fermented dairy products and have been suggested to exert health promoting effects on the host by maintaining intestinal microflora balances, improving lactose tolerance, reducing serum cholesterol levels, increasing synthesis of vitamins, and aiding the immune enchancement and anticarcinogenic activity for the host. These beneficial effects of Bifidobacterium are strain-related. Therefore continued efforts to improve strain characteristics are warranted. in these respect, development of vector system for Bifidobacterium is very important not only for the strain improvement but also because Bifidobacterium is most promising in serving as a delivery system for the useful gene products, such as vaccine or anticarcinogenic polypeptides, into human intestinal tract. For developing vector system, we have characterized several bifidobacterial plasmids at genetic level and developed several shuttle vectors between E. coli and Bifidobacterium using them. Also, we have cloned and sequenced several metabolic genes and food grade selection marker. Also we have obtained bifidobacterial surface protein, which will be used as the mediator for surface display of foreign genes. Recently we have succeeded in expressing amylase and GFP in Bifidobacterium using our own expression vector system. Now we are in a very exciting stage for the molecular breeding and safe delivery system using probiotic Bifidobacterium strains.

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4-Chlorobenzoic Acid 분해유전자의 클로닝과 유전학적 특성 (Cloning and Characterization of the Genes Responsible for Degradation of 4-Chlorobenzoic Acid)

  • 이익근;김종우;김치경
    • 미생물학회지
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    • 제28권1호
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    • pp.41-46
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    • 1990
  • 자연환경으로부터 분리한 DJ-12 균주는 4CBA 및 4CB를 비롯하여 그 대사산물인 4OHBA와 PCA를 분해하여 단일 탄소원으로 이용하였다. DJ-12 균주에서 4CBA 및 4CB분해유전자는 약 65kb 크기의 plasmid인 pDJ121에 존재하였으며, 이 pDJ121은 ExoRI, HindIII, SalI 그리고 PslI의 절단부위를 각각 9, 11, 10 그리고 19개씩 가지고 있었다. EcoRI으로 처리한 pDJ121 절편을 pKT230에 ligation 시켜 재조합 vector인 pDK450을 만들었으며, 이를 Pseudomonas putida KT2440에 transformation 시켜 얻은 cloned cell 에서는 4CBA 분해유전자가 잘 발현되었다.

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세균 게놈 유래성 PyrR Orthologue의 기능 분석 (Characterization and Functional Study of PyrR Orthologues from Genome Sequences of Bacteria)

  • 김사열;조현수;설경조;박승환
    • 한국미생물·생명공학회지
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    • 제31권2호
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    • pp.103-110
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    • 2003
  • 그람 양성세균에서 PyrR단백질에 의하여 피리미딘의 생합성이 조절된다는 발견을 바탕으로 하여, Synechocystis sp.PCC6803과 Haemophilus influenzae의 PyrR orthologue 유전자를 Bacillus subtilis에서 형질전환 시켜 피리미딘 생합성의 조절 유무를 조사하였다. Synechocystis sp.PCC6803과 H. influenzae의 PyrR orthologue유전자를 pUC19과 T-vector에 클로닝 한후 pKH1, pKH2, pHPSK1, pHPSK2으로 각각 명명하였다. 이것을 다시 Escherichia. coli와 B. subtiius용 shuttle vector인 pHPS9에 클로닝 하여 pKH3, pKH4, pHPSK3, pHPSK4로 각각 명명하였다. B. subtilis DB104Δ PyrR에 pKH3, pKH4, pHPSK3, pHPSK4을 형질전환후 ATCase 활성을 측정결과 pHPSK3을 가진 균주만 피리미딘에 의한 조절작용이 일어난다는 사실을 통하여, H. influenzae의 PyrR orthologue 유전자의 선도 부분에 조절에 관여하는 미지의 부분이 있음을 예측할 수 있었다. 서로 다른 유래의 PyrR orthologue단백질을 정제하기 위하여 pET14b에 클로닝후 pKH5, pHPSK5으로 각각 명명하였다. SDS-PAGE로 분석한 결과 각각 약 18 kDa과 21 kDa의 분자량을 나타내었다. 정제된 PyrR orthologue 단백질의 UPRTase 활성을 측정한 결과 H. infuenzae의 PyrR orthologue 단백질은 UPRTase 활성을 나타내었으며 다양한 pH에서 측정한 결과 pH 5에서 가장 높은 활성을 나타내었다. 반면에, Synechocystis sp. PCC6803의 PyrR orhologue 단백질은 UPRTase 활성을 나타내지 않았다. 여러 가지 균주의 PyrR 아미노산 서열을 비교한 계통수 분석은 PyrR 단백질의 조절기작과 어느 정도 연관됨을 시사해 주었다.

Salmonella enterica serovar Typhimurium에서 Type III 분비장치의 표적단백질들의 분비신호 확인 및 Type III 분비장치를 이용한 Secretion Vector의 개발 (Identification of Secretion Signals of Target Proteins in Salmonella enterica serovar Typhimurium and Construction of Secretion Vector using this Signal)

  • 최혁진;엄준호;조정아;이선;이경미;이인수;박용근
    • 미생물학회지
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    • 제36권4호
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    • pp.254-258
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    • 2000
  • 소장의 상피세포내로 세균 세포가 들어가는 과정(invasion)은 Salmonella의 감염에서 중요한 단계이다. invasion은 Salmonella type III 분비장치에 의해 분비되는 단백질들에 의해 유도된다. type III 분비단백질들은 특이하게, 일반적인 분비단백질들이 가지는 N-말단 분비 신호 펩타이드를 가지고 있지 않는 것을 알려져 있다. Yersinia에서의 최근 연구에서 type III 분비장치에 의해 인지되는 분비신호는 분비 단백질을 암호화하는 mRNA의 5'말단부의가 형성하는 2차 구조에 있을 것이라는 보고가 있다. 본 연구에서는 Salmonella type III 분비장치의 분비신호를 조사하기 위해 type III 분비단백질중 하나인 sopE를 택하여 ompR과의 translational fusion을 만들었다. translational fusion을 위해 사용된 sopE DNA절편은 프로모터와 시작 콘돈으로부터 10, 15 코돈을 포함하는 절편이다. Immunoblot으로 확인한 결과, OmpR을 포함하는 fusion 단백질이 형질전환 Salmonella 세포로부터 분비되었다. 이러한 결과는 Salmonella의 type III 분비신호가 분비단백질을 암호화하는 mRNA의 5'말단에 위치할 가능성을 제시하고 있다. 또한, 이러한 분비신호를 활용하여 유용한 외래 단백질을 세균 세포 내에서 효과적으로 생산, 분비할 수 있는 secretion vector의 원형을 개발하였다.

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