• 제목/요약/키워드: Bacillus subtilis BR151

검색결과 4건 처리시간 0.017초

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

  • 오태권;김병각;최응칠
    • 약학회지
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    • 제40권1호
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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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재조합 Plasmid DNA에 의한 Bacillus subtilis의 형질전환 (Transformation of Bacillus subtilis Protoplast by Recombinant Plasmid DNA)

  • Kim, Sang-Dal;John Spizizen
    • 한국미생물·생명공학회지
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    • 제13권4호
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    • pp.345-348
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    • 1985
  • Mannitol hypertonic regeneration media를 사용하는 PEG-induced protoplast transformation system을 이용해서 pUB110과 pE194의 recombinant plasmid로 B. subtilis BR151을 transformation 시킴으로써 두 plasmid에서 유래되는 각각의 Neo$^{R}$와 Em$^{R}$을 동일한 recipient cell 내에서 동시에 발현시킬 수 있었다. Neomycin과 erythromycin을 함께 함유하는 mannitol regeneration media상에서 recombinant plasmid의 transformation frequency는 6.5 $\times$ $10^{-5}$이었다. 한편 transformant cell 내에서 recombinant plasmid의 replication이 agarose gel electrophoresis로 확인되었다.

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B. pasteurii Urease 유전인자의 E. coli의 복제와 발현 (Molecular Cloning and Expression of Bacillus pasteurii Urease Gene in Escherichia coli)

  • Kim, Sang-Dal;John Spizizen
    • 한국미생물·생명공학회지
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    • 제13권3호
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    • pp.297-302
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    • 1985
  • 미생물중 urease생성능이 아주 강한 B. pasteurii의 Hind III partial digest 된 chromosomal DNA를 E. coli-B. subtilis bifunctional plasmid vector pGR 71으로 E. coli RR1 균주에 cloning 하므로써 그 urease gene을 expression시킬 수 있었다. 그러나 B. subtilis에서는 insertion DNA fragment의 deletion으로 expression되지 않았다. Cloning된 E.coli RR1 균주로부터 분리 정제한 urease gene함유 Plasmid(pGU66)의 restriction map을 작성하여 본 결과 7.1 Mdal의 insertion fragment가 삽입된 12.6Mdal의 plasmid에 Hind III, Bgl II, Xba I, Sal I등 몇 개의 cleavage site 위치를 찾을 수 있었다. Cloning된 E. coli의 urease는 periplasmic space에 많은 비율로 축적되며, 그 효소학적 성질은 donor인 B.pasteurii의 그것과 매우 유사하였다.

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마크로라이드-린코사마이드-스트렙토그라민 B(MLS)계 항생물질에 대한 유도 내성 (Screening of Inducible Resistance Genes to Macrolide-Lincosamide-Streptogramin B(MLS) Antibiotics)

  • 권애란;최성숙;김숙경;정영자;최응칠;김병각
    • 약학회지
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    • 제38권3호
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    • pp.293-299
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    • 1994
  • Forty nine clinical isolates of S. aureus showing resistance to erythromycin(EM) were selected from 83 strains isolated recently in Korea. Fourteen strains of S. aureus showing inducible resistance to MLS antibiotics were selected by disc agar diffusion method. Colony hydridization was executed using two MLS inducible resistance genes, ermA and ermC, identified previously from S. aureus as probes. S. aureus 375 and S. aureus 507 whose genes were not homologous to those probes were finally selected. It was confirmed that the resistance genes of S. aureus 375 and S. aureus 507 had no homology with those probes in southern hybridization test using ermA, ermC and ermAM as probes. It was determined that S. aureus 375 had a plasmid whose size was about 35 kb. To know if the plasmid may have the genes related to inducible resistance to MLS antibiotics, it was attempted to transform Bacillus subtillis BR151 and S. aureus RN4220 with the plasmid isolated from S. aureus 375. It was shown that the gene related to inducible resistance to MLS antibiotics did not exist in this plasmid. These results indicate that two clinical isolates of S. aureus showing inducible resistance to MLS antibiotics have novel genes that have no homology with MLS resistance genes identified so far. It is assumed that these genes may exist in chromosomal DNA.

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