• 제목/요약/키워드: trp-operon

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Klebsiella pneumoniae에서 트립토판 생산증대를 위한 숙주개발 및 재조합 trp plasmid의 발현 (Modigication of host cells and Expression of Recombinant E. coli trp plasmids for the increased Production of Tryptophan in Klebsiella pneumoniae)

  • 지연태;홍광원;박장현;이세영
    • 미생물학회지
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    • 제25권1호
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    • pp.46-51
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    • 1987
  • In order to increase the production of tryptophan by maximizing expression of recombinant trp plasmid, Klebsiella pneumoniae KC 105(pheA tyrA trpE trpR tyrR) was genetically modified. KC 107, inosine monophospate(IMP) auxotroph from KC 105 and KC 108, histidine(His) auxotroph from KC 107 were also derived respectively to increase phosphoribosylpyrophosphate(PRPP) production which is required for tryptophan biosynthesis. From KC 107 phosphoribosylpyrophosphate consumption which is required for tryptophan biosynthesis. From KC 107 and KC 108, KC 109 and KC 110, both arginine auxotrophs were derived respectively. To investigate the expression of recombinant trp plasmid in the selected K. pneumoniae mutants, the auxotrophic mutants were transformed with recombinant trp plasmids pSC 101-$trpE^{FBR}$, pSC 101-trpL(.DELTA.att) $trpE^{FBR}$ (pSC 101-trp-AF). Amount of tryptophan produced and activities of tryptophan synthase of $trpR^{-}$ mutant (KC 100) and $tyrR^{-}$ mutnat(KC 105) containing recombinant plasmid pSC 101-trp operon were increased by 30-40% as compared with KC 99(pheA tyrA trpE) containing recombinant plasmid pSC 101-trp operon. Activities of tryptophan synthase and production of tryptophan of KC 108 ($His^{-}$) and KC 109($Arg^{-}$) containing recombinant plasmid pSC 101-trp operon were increase by two-fold as compared with KC 107 containing pSC 101-trp operon.

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Klebsiella pneumoniae에 있어서의 escherichia coli K-12 $trpL({\Delta}att)\;trpE^{FBR}$유전자의 클로닝 및 발현 (Cloning and expression of escherichia coli K-12 $trpL({\Delta}att)\;trpE^{FBR}$ gene in klebsiella pneumoniae)

  • 지연태;김익영;이세영
    • 미생물학회지
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    • 제22권4호
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    • pp.229-234
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    • 1984
  • A modified E. coli trp operon, $trpL({\Delta}att)\;trpE^{FBR}$, was conjugally transfered into Klebsiella pneumoniae $KC_{100}\;(Phe^-,\;Tyr^-,\;Trp^-,\;Rif^r,\;Kam^r)$ by in vivo cloning using the hybrid plasmid $R_{6}K::$ Mucts 61 with a transfer frequency of $5.2{\times}10^{-7}$. Two K. pneumoniae transconjugants, $KUA_{701}\;and\;KUA_{702}$, were isolated. The characters of attenuation control-free and resistance to feedback-inhibition which are characteristics of donor C. coli trp operon were normally expressed in the $KUA_{701}.\;However,\;KUA_{702}$ retained only the feedback-inhibition resistant character. $Trp^+$ phenotype and ampicillin resistant character were completely stable in the transconjugants, but streptomycin resistant character was lost in the transconjugants.

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방향족 아미노산에 의한 대장균 serC-aroA Operon의 발현 억제 (Repression of Escherichia coli serC-aroA Operon by Aromatic Amino Acids)

  • 황우길;사재훈;김경훈;임창진
    • 미생물학회지
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    • 제32권2호
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    • pp.109-114
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    • 1994
  • 대장균에서 두 가지 다른 아미노산의 생합성에 관여하는 serC 유전자와 araA유전자는 혼합 operon을 이루고 있다. SerC-aroA 혼합 operon의 발현 조절 현상을 serC-aroA-lacZ fusion plasmid pWH2를 이용하여 측정하였다. serC-aroA 혼합 operon의 발현은 L-tyrosine, L=phenulalanine 및 L-tryptophan 등 방향족 아미노산들에 의하여 억제되었다. 방향족 아미노산에 의한 억제 효과는 $tyrR^-$ 균주 혹은 $trpT^-$ 균주에서는 감소하였다. 또한, 방향족 아미노산은 cyclic AMP에 의한 이 operon의 발현 상승 효과를 감소시키기도 하였다. 이들 결과로부터 대장균 serC-aroA 혼합 operon의 발현은 방향종 아미노산들에 의해 억제된다고 추정하였다.

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$aroP^{-}$변이가 E.coli에서 트립토판 방출에 미치는 영향 (Effects of $aroP^{-}$ mutation on the tryptophan excretion in escherichia coli)

  • 지연태;안병우;이세영
    • 미생물학회지
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    • 제23권1호
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    • pp.9-12
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    • 1985
  • 증폭된 재조합 trp operon의 발현을 위한 숙주박테리아 개발의 일환으로 숙수 E. coli에 $aroP^{-}$ 변이를 도입하였다. $aroP^{-}$ 변이의 유도에는 trans po son Tn10을 사용하였으며 P1Kc파아지를 이용하여 숙주박테리아에 형질도입하였다. General aromatic amino acid transport system이 결여된 $aroP^{-}$ 변이주는 $\beta$-thienylalanine ($(2{\times}10^{-4}M)$). p-fluor-phenylalanine ($(2{\times}10^{-4}M)$) 그리고 5-methyltryptophan에 저항성을 가졌다. $aroP^{-}$ 변이주는 $aroP^{-}$ 야생주에 비해서 〔$[^3H]$-tryptophan uptake가 상당히 감소하였다. 또한 NaN, ($(2{\times}10^{-4}M)$)를 처리하였을 때의 ($[^3H]$)-tryptophan uptake 비율은 aroP 변이주가 $aroP^{-}$야생주보다 덜 감소하였다. E. coli $trpR^{-ts}/ColE_1 -trp^+$ 균주에 aroP 형질을 도입하였을 때 트립토판 방출이 $aroP^{-}$ 야생주에 비해서 4 배나 증가하였다.

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Plasmid Stability and Cloned-Gene Expression in Continuous Culture of Recombinant Escherichia Coli Under Derepressed Condition

  • Nam, Soo-Wan;Kim, Byung-Kwan;Kim, Jung-Hoe
    • Journal of Microbiology and Biotechnology
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    • 제4권1호
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    • pp.1-6
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    • 1994
  • Continuous culture was carried out with a recombinant Escherichia coli W3110/pCR185, which encodes trp-operon enzymes when the temperature is shifted from $37^{circ}C\;t;42^{\circ}C$. Under derepressed condition of $42^{\circ}C$. plasmlid stability and gene expression were analysed as function of the dilution rate. The stability of plasmid increased with the dilution rate, but maximal levels of gene expression (tryptophan concentration) and plasmid DNA content were obtained at the lowest dilution rate, $0.075\;hr^{-1}$. The plasmid instability, observed at low dilution rates, could be explained by the unbalanced biosynthetic state of the recombinant cell harboring a high copy number of plasmid.

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대장균 배양 중 phe W$^+$-pheS-$^{-ts}$ System에 의한 재조합 trp$^+$ 플라스미드의 안정적 유지 (Stable Maintenance of Recombinant Plasmid Containing trp $^+$ Operon in E. coli Cultures by the phe W$^+$ -pheS$^{t8}$ System)

  • 강충민;최장원;이세영
    • 한국미생물·생명공학회지
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    • 제18권1호
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    • pp.89-93
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    • 1990
  • 재조합 pBR322-trp$^+$ 플라스미드의 숙주내 안정적 유지를 목적으로 tRNA phe 의 구조유전자인 pheW$^+$ 유전자를 pBR322-trp$^+$의 플라스미드에 도입시키고, 숙주세포로는 트립토판 생산을 위한 정상숙주 LC901의 phenylalanyl tRNA synthetase 온도감수성 변이체인 LC901-pheS-ts를 구성하여 이 온도감수성 숙주의 제한온도 (restrictive temperature)에서 재조합 trp$^+$ 플라스미드의 안정적 유지와 trp$^+$ 유전자가 미치는 효과를 조사하였다.

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Dynamic Behavior of Regulatory Elements in the Hierarchical Regulatory Network of Various Carbon Sources-Grown Escherichia coli

  • Lee, Sung-Gun;Hwang, Kyu-Suk;Kim, Cheol-Min
    • Journal of Microbiology and Biotechnology
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    • 제15권3호
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    • pp.551-559
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    • 2005
  • The recent rapid increase in genomic data related to many microorganisms and the development of computational tools to accurately analyze large amounts of data have enabled us to design several kinds of simulation approaches for the complex behaviors of cells. Among these approaches, dFBA (dynamic flux balance analysis), which utilizes FBA, differential equations, and regulatory events, has correctly predicted cellular behaviors under given environmental conditions. However, until now, dFBA has centered on substrate concentration, cell growth, and gene on/off, but a detailed hierarchical structure of a regulatory network has not been taken into account. The use of Boolean rules for regulatory events in dFBA has limited the representation of interactions between specific regulatory proteins and genes and the whole transcriptional regulation mechanism with environmental change. In this paper, we adopted the operon as the basic structure, constructed a hierarchical structure for a regulatory network with defined fundamental symbols, and introduced a weight between symbols in order to solve the above problems. Finally, the total control mechanism of regulatory elements (operons, genes, effectors, etc.) with time was simulated through the linkage of dFBA with regulatory network modeling. The lac operon, trp operon, and tna operon in the central metabolic network of E. coli were chosen as the basic models for control patterns. The suggested modeling method in this study can be adopted as a basic framework to describe other transcriptional regulations, and provide biologists and engineers with useful information on transcriptional regulation mechanisms under extracellular environmental change.

Estimation and Sensitivity Analysis of Kinetic Parameters for Plasmid Stability in Continuous Culture of a Recombinant Escherichia coli Harboring trp-operon Plasmid

  • NAM, SOO WAN;BYUNG KWAN KIM;JUNG HOE KIM
    • Journal of Microbiology and Biotechnology
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    • 제4권1호
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    • pp.13-19
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    • 1994
  • A model equation to describe the plasmid instability in recombinant Escherichia coli fermentation is proposed. The equation allows one to estimate easily the two model parameters; (1) the difference in the specific growth rates between plasmid-free cells and plasmid-harboring cells ($\delta$), and (2) the probability of plasmid loss by plasmid-harboring cells ($\rho$). The estimated values of $\delta and \rho$ were in the range of 0.02-0.07 and $10^{-3}-10^{-5}$, respectively, and were strongly dependent on the dilution rate. As another parameter, the ratio of specific growth rates of plasmid-free cells and plasmid-harboring cells ($\alha$) was calculated and the result showed the highest value of 1.28 at the lowest dilution rate of 0.075 $hr^{-l}$, examined in this work. By the sensitivity analyses on the estimates of $\delta and \rho$, it was found that the growth rate difference ($\delta$) affected the plasmid instability more seriously than the probability of plasmid loss ($\rho$). Furthermore, the profound instability of plasmid at low dilution rate could be explained by the high values of $\alpha and \rho$.

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