• 제목/요약/키워드: refolding

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Bacillus clausii I-52로부터 alkaline protease 유전자의 클로닝 및 발현 (Cloning and Expression of a Alkaline Protease from Bacillus clausii I-52)

  • 주한승;최장원
    • 농업생명과학연구
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    • 제45권6호
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    • pp.201-212
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    • 2011
  • 인천 연안의 심하게 오염된 갯벌로부터 강력한 세포외 알카리성 단백질 분해효소를 생산하는 호알카리성 Bacillus clausii I-52를 분리하였으며, 이 균주로부터 알카리성 단백질 분해효소의 유전자를 cloning하여 서열 분석을 하였다. Chromosome 서열이 완전히 밝혀진 Bacillus subtilis의 서열을 기초로 하여 알카리성 단백질 분해효소 및 promoter를 포함하도록 primer를 고안하여 PCR을 수행하여 2,277 bp의 DNA 단편을 얻었으며 BLAST 분석 결과 29 개의 아미노산으로 이루어진 signal peptide, 77 개의 아미노산으로 이루어진 propeptide 및 275 개의 아미노산을 갖는 활성형의 BCAP으로 구성된 총 381 개의 아미노산을 코딩하는 1,143 bp의 open reading frame을 확인하였다. 활성형 BCAP의 N-말단 아미노산은 Ala이며, 분자량 및 pI 값은 각각 27698.7 Da과 6.30으로 계산되었다. 아미노산 상동성을 분석한 결과, B. subtilis 유래의 nattokinase precursor 및 B. subtilis BSn5 유래의 subtilisin E precursor와 99%의 서열 상동성을 나타내어 B. clausii I-52 유래의 BCAP은 subtilisin 계열의 단백질 분해효소임을 확인하였다. E. coli BL21(DE3)에서 발현한 재조합 BCAP는 N-Suc-Ala-Ala-Pro-Phe-pNA 를 효율적으로 분해하였다. Refolding한 재조합 BCAP은 전형적인 serine protease inhibitor인 PMSF에 의하여 강하게 효소 활성이 억제됨으로써 serine protease 계열의 단백질 분해효소임을 알 수 있었다.

The rate-determining step in the dark state recovery process in the photocycle of PYP

  • Sasaki, Jun;Kumauchi, Masato;Hamada, Norio;Tokunaga, Fumio
    • Journal of Photoscience
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    • 제9권2호
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    • pp.130-133
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    • 2002
  • The last step in the photocycle of photoactive yellow protein (PYP) is a spontaneous recovery of the dark state from the active state in which the p-coumaric acid chromophore is thermally isomerized, concomitantly with the deprotona- tion of the chtomophore and the refolding of the protein moicty. For the purpose of understanding the mechanism of the thermal back-isomerization, we have investigated the rate-determining step by analyzing mutant PYPs of Met100, which was previously shown to play a major role in facilitating the reaction (1). The mutation to Lys, Leu, Ala, or Glu decelerated the dark state recovery by 1 to 3 three orders of magnitude. By evaluating temperature-dependence and pH-dependence of the kinetics of the dark state recovery, it was found that the retardation by mutations resulted from elevation of the activation enthalpy ( H$\^$┿/) and that the pKa of the chromophore, which was affected by the mutation, is in a linier correlation with the amplitude of the rate constants. It was, therefore, deduced from the correlation that the free energy for crossing the activated state in the dark recovery process is proportional to the free energy for the deprotonation of the chromophore, identifying the rate-determining step as the deprotonation of the chromophore. (1) Devanathan, S. Genick, U. K. Canestrelli, I. L. Meyer, T. E. Cusanovich, M. A. Getzoff, E. D. Tollin, G., Biochemistry 1998, 37, 11563 - 11568

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Thermal Stability of Phaseolus vulgaris Leucoagglutinin: a Differential Scanning Calorimetry Study

  • Biswas, Shyamasri;Kayastha, Arvind M.
    • BMB Reports
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    • 제35권5호
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    • pp.472-475
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    • 2002
  • Phaseolus vulgaris phytohemagglutinin L is a homotetrameric-leucoagglutinating seed lectin. Its three-dimensional structure shows similarity with other members of the legume lectin family. The tetrameric form of this lectin is pH dependent. Gel filtration results showed that the protein exists in its dimeric state at pH 2.5 and as a tetramer at pH 7.2. Contrary to earlier reports on legume lectins that possess canonical dimers, thermal denaturation studies show that the refolding of phytohemagglutinin L at neutral pH is irreversible. Differential scanning calorimetry (DSC) was used to study the denaturation of this lectin as a function of pH that ranged from 2.0 to 3.0. The lectin was found to be extremely thermostable with a transition temperature around $82^{\circ}C$ and above $100^{\circ}C$ at pH 2.5 and 7.2, respectively. The ratio of calorimetric to vant Hoff enthalpy could not be calculated because of its irreversible-folding behavior. However, from the DSC data, it was discovered that the protein remains in its compact-folded state, even at pH 2.3, with the onset of denaturation occurring at $60^{\circ}C$.

재조합 사람 과립구 콜로니 자극인자인 C,J50001의 중합체의 생물학적 활성과 급성독성에 관한 연구 (Biological Activity and Acute Toxicity of the Multimers of CJ500011 Recombinant Human Granulocyte Colony-stimulating Factor (rHuG-CSF), Produced in E. coli)

  • 하석훈;이현수;김기완;정종상;김달현
    • Biomolecules & Therapeutics
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    • 제6권1호
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    • pp.89-94
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    • 1998
  • CJ50001 is a recombinant human granulocyte colony-stimulating facto, (rHuG-CSF) that stimulates the formation of neutrophils from bone marrow stem cells. It was produced in E. colt and purified through refolding and several processes. We produced CS970125(300) using purified C150001 and additives in order to test the stability of CJ50001. When CS970125(300) was stored at 50'S for more than 1 week, high molecular weight proteins were formed and those proteins were detected by non-reducing SDS-PAGE, gel filtration HPLC, and Western blot. Those proteins showed single band at the same position of CJ50001 in reducing SDS-PAGE. These data indicated that those high molecular weight proteins were the multimers of C150001. In biological assays, iu viro and in viro, the multimers did not have biological activity and inhibitory action to that of CJ 50001. The mutimers did not induce toxicity in mice and rats in acute toxicity test. These results suggest that if Cs970125(300) containing CJ50001 is stored at 5$0^{\circ}C$, CJ50001 will be the multimers that do not have biological activity and inhibitory effect to CJ50001 and do not induce acute toxicity.

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열충격 단백질의 신경정신의학적 의의와 중요성 (Heat Shock Proteins as Molecular Chaperons in Neuropsychiatry)

  • 오동훈;양병환;최준호
    • 생물정신의학
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    • 제14권4호
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    • pp.221-231
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    • 2007
  • Recent researches have shown that important cellular-based autoprotective mechanisms are mediated by heat-shock proteins(HSPs), also called 'molecular chaperones'. HSPs as molecular chaperones are the primary cellular defense mechanism against damage to the proteome, initiating refolding of denatured proteins and regulating degradation after severe protein damage. HSPs also modulate multiple events within apoptotic pathways to help sustain cell survival following damaging stimuli. HSPs are induced by almost every type of stresses including physical and psychological stresses. Our nervous system in the brain are more vulnerable to stress and damage than any other tissues due to HSPs insufficiency. The normal function of HSPs is a key factor for endogenous stress adaptation of neural tissues. HSPs play an important role in the process of neurodevelopment, neurodegeneration, and neuroendocrine regulation. The altered function of HSPs would be associated with the development of several neuropsychiatric disorders. Therefore, an understanding of HSPs activities could help to improve autoprotective mechanism of our neural system. This paper will review the literature related to the significance of HSPs in neuropsychiatric field.

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Design and Expression of Recombinant Antihypertensive Peptide Multimer Gene in Escherichia coli BL21

  • Rao, Shengqi;Su, Yujie;Li, Junhua;Xu, Zhenzhen;Yang, Yanjun
    • Journal of Microbiology and Biotechnology
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    • 제19권12호
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    • pp.1620-1627
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    • 2009
  • The design and expression of an antihypertensive peptide multimer (AHPM), a common precursor of 11 kinds of antihypertensive peptides (AHPs) tandemly linked up according to the restriction sites of gastrointestinal proteases, were explored. The DNA fragment encoding the AHPM was chemically synthesized and cloned into expression vector pGEX-3X. After an optimum induction with IPTG, the recombinant AHPM fused with glutathione S-transferase (GST-AHPM) was expressed mostly as inclusion body in Escherichia coli BL21 and reached the maximal production, 35% of total intracellular protein. The inclusion body was washed, dissolved, and purified by cation-exchange chromatography under denaturing conditions, followed by refolding together with size-exclusion chromatography and gradual dialysis. The resulting yield of the soluble GSTAHPM (34 kDa) with a purity of 95% reached 399 mg/l culture. The release of high active fragments from the AHPM was confirmed by the simulated gastrointestinal digestion. The results suggest that the design strategy and production method of the AHPM will be useful to obtain a large quantity of recombinant AHPs at a low cost.

Soluble Expression of OmpA from Haemophilus parasuis in Escherichia coli and Its Protective Effects in the Mouse Model of Infection

  • Ahn, Jungoh;Hong, Minhee;Yoo, Sungsik;Lee, Eungyo;Won, Hokeun;Yoon, Injoong;Jung, Joon-Ki;Lee, Hongweon
    • Journal of Microbiology and Biotechnology
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    • 제22권9호
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    • pp.1307-1309
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    • 2012
  • Haemophilus parasuis causes contagious porcine Gl$\ddot{a}$sser's disease leading to severe losses in the swine industry. In this study, we established an efficient Escherichia coli-based system for the expression of H. parasuis major outer-membrane protein (MOMP) that has been known as a good vaccine candidate against Gl$\ddot{a}$sser's disease. Use of an E. coli-derived pelB leader sequence made it possible to produce recombinant MOMP (rMOMP) as the soluble forms without an additional refolding process. Using two different animal models, it was evaluated that the rMOMP was capable of inducing a significant immune response and providing protection against H. parasuis infection.

Characterization of a novel methionine sulfoxide reductase A from tomato (Solanum lycopersicum), and its protecting role in Escherichia coli

  • Dai, Changbo;Singh, Naresh Kumar;Park, Myung-Ho
    • BMB Reports
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    • 제44권12호
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    • pp.805-810
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    • 2011
  • Methionine sulfoxide reductase A (MSRA) is a ubiquitous enzyme that has been demonstrated to reduce the S enantiomer of methionine sulfoxide (MetSO) to methionine (Met) and can protect cells against oxidative damage. In this study, we isolated a novel MSRA (SlMSRA2) from Micro-Tom (Solanum lycopersicum L. cv. Micro-Tom) and characterized it by subcloning the coding sequence into a pET expression system. Purified recombinant protein was assayed by HPLC after expression and refolding. This analysis revealed the absolute specificity for methionine-S-sulfoxide and the enzyme was able to convert both free and protein-bound MetSO to Met in the presence of DTT. In addition, the optimal pH, appropriate temperature, and $K_m$ and $K_{cat}$ values for MSRA2 were observed as 8.5, $25^{\circ}C$, $352{\pm}25\;{\mu}M$, and $0.066{\pm}0.009\;S^{-1}$, respectively. Disk inhibition and growth rate assays indicated that SlMSRA2 may play an essential function in protecting E. coli against oxidative damage.

Cloning, Expression in Escherichia coli, and Enzymatic Properties of a Lipase from Pseudomonas sp. SW-3

  • An, Sun-Young;Kim, Sang-Wan;Park, Yong-Lark;Joo, Woo-Hong;Lee, Young-Choon
    • Journal of Microbiology
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    • 제41권2호
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    • pp.95-101
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    • 2003
  • The lipase gene (lipA) and its activator gene (lipB) of Pseudomonas sp. SW-3 were cloned and sequenced. The lipB was found to be present immediately downstream of lipA. The deduced amino acid sequences of lipA and lipB showed a high level of homology to those of other lipases belonging to the family I.1 of bacterial lipases. When lipA was expressed in Escherichia coli using T7 promoter, an active lipase was produced in cells carrying both lipA and lipB, but not in cells harboring only lipA. Recombinant lipase (rPSL) overproduced in an insoluble form was solubilized in the presence of 8 M urea, purified in a urea-denatured form and refolded by removing urea in the presence of the Ca$\^$2+/ ion. rPLS had maximum activity at pH 8.0 and 50$^{\circ}C$, was stable at pHs from 7.0 to 9.0 and below 50$^{\circ}C$, and showed the highest activity toward the p-nitrophenyl ester of palmitate (Cl6).