• Title/Summary/Keyword: Brevibacterium lactofermentum

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Cloning and Expression of the dapD Gene from Brevibacterium lactofermentum in E. coli (Brevibacterium lactofermentum의 dapD 유전자의 Cloning 및 E. coli에서의 발현)

  • 김옥미;박선희;박혜경;이승언;하대중;이갑랑
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.30 no.5
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    • pp.802-805
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    • 2001
  • The dapD gene of Brevibacterium lactofermentum encoding tetrahydrodipicolinate N-succinyl transferase, one of the enzymes involved in lysine biosynthesis, was cloned by complementation of Escherichia coli dapD mutnat. The recombinant plasmid pLS1 was found to contain a 3.6 kb DNA fragment. Southern hybridization analysis confirmed that the cloned DNA fragment originated from B. lactofermentum. The data of L-lysine production showed that the B. lactofermentum dapD gene was expressed in E. coli.

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Site-speci fic Inactivation o meso-Diaminopimelate-dehydrogenase Gene (ddh) in a Lysine-producing Brevibacterium lactofementum. (Brevibacterium lactofermentum 에서 meso-Diaminopimelate-dehydrogenase Gene (ddh)의 Site-specific Inactivation)

  • 김옥미;박선희;이갑랑
    • Microbiology and Biotechnology Letters
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    • v.26 no.5
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    • pp.387-392
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    • 1998
  • Brevibacterium lactofermentum, a gram-positive bacteria, has both the diaminopimelate (DAP) pathway and meso-DAP-dehydrogenase (DDH) pathway for L-lysine biosynthesis. To investigate importance of DDH pathway and the related ddh gene in lysine production, we introduced site-specific mutagenesis technique. A 300 bp DNA fragment central to the meso-DAP-dehydrogenase gene (ddh) of B. lactofermentum was used to inactive chromosomal ddh gene via homologous recombination. Southern hybridization analysis confirmed that the chromosomal ddh gene was disrupted by the vector sequence. The B. lactofementum ddh mutant obtained have an inactive DDH pathway. The results reveal that inactivation of the ddh gene in B. lactofermentum leads to dramatic reduction of lysine production as well as decrease of the growth rate, indicating that the DDH pathway is essential for high-level lysine production as well as biosynthesis of meso-DAP.

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Frequency improvement of protoplast fusion in coryneform bacteria (Coryne형 제균의 원형질체 융합빈도 향상)

  • 김종헌;임번삼;이세영;전문진
    • Korean Journal of Microbiology
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    • v.23 no.3
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    • pp.190-196
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    • 1985
  • For frequency improvement of protoplast fusion in Brevibacterium flavum, Brevibacterium lactofermentum lactofermentum and Corynebacterium glutamicum, the effect of plasma expanders on fusion and cell wall regeneration, compatison between direct and two-step selection method, tendency of fusion frequency according to pH of fusion fluid and polyethylene glycol concentration were examined. By addition of 3% polyvinyl pyrrolidone to cell wall regeneration medium, regeneration frequencies were expressed 23 (Brevibacterium lactofermentum), 10.4 (Brevibacterium flavum) and 2.7 (Corynebacterium glutamicum) times higher than those of none polyvinyl pyrrolidone medium respectively.

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Genetic Recombination of Brevibacterium lactofermentum by Protoplast Fusion (Brevibacterium lactofermentum의 원형질체 융합에 의한 유전자 재조합)

  • 이혜경;최순영;윤윤경;이영하;민경희
    • Korean Journal of Microbiology
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    • v.28 no.2
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    • pp.98-103
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    • 1990
  • Brevibacterium lactofermentum SWA (arg trp) and B. lactofermentum SWB (met ser) were obtained from UV and NTG treatment. The rates of protoplast formation by B. lactofermentum SWA and SWB were 99.93% and 99.98%, respectively when each strain was treated with penicillin G in mid exponential growth phase, followed by incubation with 400 $\mu\textrm{g}$/ml of lysozyme in lysis fluid supplemented with 0.4M sucrose. Frequencies of protoplast regeneration in B. lactofermentum SWA and B. lactofermentum SWB were 9.27% and 10.32% respectively, on regeneration medium containing 0.5M sodium succinate, 50 mM $Mg^{2+}$, and 3% PVP. In intraspecific protoplast fusion between B. lactofermentum SWA and B. lactofermentum SWB, fusion frequency of $2.30\times 10^{-5}$ was observed by using the 100mM $CaCl_{2}$ and 30% PEG 6,000 in fusion fluid. Relative recombinant frequencies in each marker by means of selective media could be used for genetic analysis.

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Comparison of the Cell Surface Barrier and Enzymatic Modification System in Brevibacterium flavum and B. Lactofermentum

  • Jang Ki-Hyo;Britz Margaret L.
    • Biotechnology and Bioprocess Engineering:BBE
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    • v.10 no.3
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    • pp.225-229
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    • 2005
  • To investigate impediments to plasmid transformation in Brevibacterium flavum BF4 and B. lactofermentum BL1, cell surface barriers were determined by measuring growth inhibition whilst enzymatic barriers were determined by comparing DNA methylation properties. B. lactofermentum was more sensitive to growth inhibition by glycine than B. flavum. Release of cellular proteins during sonication was more rapid for B. lactofermentum than for B. flavum. Plasmid DNA (pCSL 17) isolated from B. flavum transformed recipient $McrBC^+$ strains of Escherichia coli with lower efficiency than $McrBC^-$. McrBC digestion of this DNA confirmed that B. flavum contain methylated cytidines in the target sequence of McrBc sequences but B. lactofermentum contained a different methylation pattern. DNA derived from the B. lactofermentum transformed recipient $EcoKR^+$ strains of E. coli with lower efficiency than $EcoKR^-$, indicating the presence of methylated adenosines in the target sequence of EcoK sequences. The present data describe the differences in the physical and enzymatic barriers between two species of corynebacteria and also provide some insight into the successful foreign gene expression in corynebacteria.

Construction and Transformation of an Endogenous Plasmid pBL1-free Brevibacterium lactofermentum (내재형 Plasmid pBL1이 제거된 Brevibacterium lactofermentum 개발과 형질전환)

  • 이규남;민본홍;윤기홍
    • Microbiology and Biotechnology Letters
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    • v.23 no.2
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    • pp.164-169
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    • 1995
  • An endogenous cryptic plasmid, pBL1, which has been used to construct plasmid vectors for coryneform bacteria producing amino acids, was eliminated from Brevibacterium lactofermentum. The pBL1 was partially digested with Sau3AI and the resulting DNA fragments were subcloned into a suicide vector pEM1 which contains a kanamycin-resistant (km$^{r}$) gene. KM$^{r}$ B. lactofermentum transconjugants were obtained by conjugal transfer of the pEM1 derivatives containing pBL1 DNA fragments from Escherichia coli into B. lactofermentum. A km$^{r}$ transconjugant was analyzed to contain a plasmid pEB14, which occurred in vivo by homologous recombination between pBL1 and the conjugal-transferred plasmid. The pEB14 including the pEM1-derived km$^{r}$ gene was found to be lost concomitantly with km$^{r}$ phenotype, resulting in the construction of a pBL1-free strain of B lactofermentum. Based on transformation efficiencies and plasmid stability, the resultant pBL1- free strain is more useful than wild strain as a host cell for genetic manipulation. It could be concluded that foreign plasmid DNAs are efficiently isolated and analyzed from the pBL1-free strain because of the absence of endogenous pBL1 plasmid.

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L-Lysine Production by Amplification of the ddh Gene in a Lysine-producing Brevibacterium lactofementum. (Brevibacterium lactofermentum에서 ddh 유전자의 증폭에 의한 L-Lysine의 생산)

  • 김옥미;박선희;이승언;배준태;김현정;이별나;이갑랑
    • Microbiology and Biotechnology Letters
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    • v.26 no.5
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    • pp.400-405
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    • 1998
  • The ddh gene encoding meso-DAP-dehydrogenase (DDH) involved in the dehydrogenase pathway is essential for high-level lysine production in Brevibacterium lactofermentum. To investigate the effect of the ddh gene amplification on lysine production by B. lactofementum, we constructed two E. coli -B. lactofermentum shuttle vector, pEB1 and pEB2. The recombinant plasmids, pRK1 and pRK2, carrying the ddh gene were introduced into B. lactofermentum by electroporation. The specific activity of DDH by amplification of the ddh gene was increased 7-fold, and also L-Lysine production of B. lactofermentum strains harboring recombinant plasmids were 18∼20% higher than that of the control.

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Cloning, Nucleotide Sequencing, and Characterization of the ptsG Gene Encoding Glucose-Specific Enzyme II of the Phosphotransferase System from Brevibacterium lactofermentum

  • Yoon, Ki-Hong;Lee, Kyu-Nam;Lee, Jung-Kee;Park, Se-Cheol
    • Journal of Microbiology and Biotechnology
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    • v.9 no.5
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    • pp.582-588
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    • 1999
  • A Brevibacterium lactofermentum gene coding for a glucose-specific permease of the phosphoenolpyruvate-dependent phosphotransferase system (PTS) was cloned, by complementing an Escherichia coli mutation affecting a ptsG gene with the B. lactofermentum genomic library, and completely sequenced. The gene was identified as a ptsG, which enables an E. coli transformant to transport non-metabolizable glucose analogue 2-deoxyglucose (2DG). The ptsG gene of B. lactofermentum consists of an open reading frame of 2,025 nucleotides encoding a polypeptide of 674 amino acid residues and a TAA stop codon. The 3' flanking region contains two stem-loop structures which may be involved in transcriptional termination. The deduced amino acid sequence of the B. lactofermentum enzyme $II^{GIe}$ specific to glucose ($EII^{GIe}$) has a high homology with the Corynebacterium glutamicum enzyme $II^{Man}$ specific to glucose and mannose ($EII^{Man}$), and the Brevibacterium ammoniagenes enzyme $II^{GIc}$ specific to glucose ($EII^{GIc}$). The 171-amino-acid C-terminal sequence of the $EII^{Glc}$ is also similar to the Escherichia coli enzyme $IIA^{GIc}$ specific to glucose ($IIA^{GIc}$). It is interesting that the arrangement of the structural domains, IIBCA, of the B. lactofermentum $EII^{GIc}$ protein is identical to that of EIIs specific to sucrose or $\beta$-glucoside. Several in vivo complementation studies indicated that the B. lactofermentum $EII^{Glc}$ protein could replace both $EII^{ Glc}$ and $EIIA^{Glc}$ in an E. coli ptsG mutant or crr mutant, respectively.

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Cloning and Sequencing of the ddh Gene involved in the Novel Pathway of Lysine Biosynthesis from Brevibacterium lactofermentum

  • Kim, Ok-Mi;Kim, Hyun-Jeong;Kim, Dal-Sang;Park, Dong-Chul;Lee, Kap-Rang
    • Journal of Microbiology and Biotechnology
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    • v.5 no.5
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    • pp.250-256
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    • 1995
  • The ddh gene encoding meso-diaminopimelate (meso-DAP)-dehydrogenase (DDH) in Brevibacterium lactofermentum was isolated by complementation of the Escherichia coli dapD mutation. It was supposed from subcloning experiments and complementation tests that the evidence for DDH activity appeared in about 2.5 kb Xhol fragmented genome. The 2.5 kb Xhol fragment containing the ddh gene was sequenced, and an open reading frame of 960 bp encoding a polypeptide comprising 320 amino acids was found. Computer analysis indicated that the deduced amino acid of the B. lactofermentum ddh gene showed a high homology with that of the Corynebacterium glutamicum ddh gene.

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Influence on Lysine Production by Overexpression of the ddh Gene in a Lysine-producing Brevibacterium lactofermentum (Brevibacterium lactofermentum에서 ddh 유전자의 Overexpression이 $_L-Lysine$ 생산에 미치는 영향)

  • Park, Sun-Hee;Kim, Ok-Mi;Kim, Hyun-Jeong;Bae, Jun-Tae;Chang, Jong-Sun;Lee, Kap-Rang
    • Korean Journal of Food Science and Technology
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    • v.31 no.1
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    • pp.224-230
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    • 1999
  • The ddh gene encoding meso-DAP-dehydrogenase (DDH) involved in the dehydrogenase pathway is essential for high-level lysine production in Brevibacterium lactofermentum. To investigate its influence on lysine production by overexpression of the ddh gene in a lysine-producing B. lactofermentum, recombinant plasmid pRK1 and pRK31 containing the ddh gene of B. lactofermentum were constructed and they were introduced into B. lactofermentum by electroporation. Multiple copies of pRK1 and pRK31 caused 7-fold and 14-fold increase of DDH activity in B. lactofermentum cell extracts, respectively. As determined in shake flask fermentation, lysine production of B. lactofermentum harboring pRK1 or pRK31 was 22% or 19% higher than that of the control, respectively.

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