• 제목/요약/키워드: protein purification

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대구의 간 단백질의 효소적 가수분해물로부터 안지오텐신 I 전환효소 저해 펩타이드의 분리.정제 및 특성 (Purification and Characterization of Angiotensin I Converting Enzyme lnhibitory Peptides from Enzymatic Hydrolysate of Cod Liver Protein)

  • 최영일;박표잠;최정호;변희국;정인철;문성훈;김세권
    • 생명과학회지
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    • 제10권2호
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    • pp.140-149
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    • 2000
  • In order to utilize marine processing waste which would normally be discarded, cod liver protein was hydrolysed by ${\alpha}$-chymotrysin, and the hydrolysate was investigated for the new angiotensin I converting enzyme (ACE) inhibitor. Thy hydrolysate was separated into three major types, with molecular weight cut-off (MWCO) values less than 10 kDa, 5 kDa and 1 kDa of ultrafiltration membranes, respectively. ACE inhibitory peptides were isolated from the fractions passed through MWCO 1 kDa membrane, and purified by using ion-exchange chromatography on a SP-Sephadex C-25 column, gel filtration on a Sephadex G-15 column, and HPLC on an ODS column. The purity was identified with capillary electrophoresis. The amino acid sequences of two peptides were Met-Ile-Pro-Pro-Tyr-Tyr (IC50=10.9 ${\mu}$M) and Gly-Leu-Arg-Asn-Gly-Ile (IC50=35.0 ${\mu}$M)

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Purification and Structural Characterization of Cold Shock Protein from Listeria monocytogenes

  • Lee, Ju-Ho;Jeong, Ki-Woong;Kim, Yang-Mee
    • Bulletin of the Korean Chemical Society
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    • 제33권8호
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    • pp.2508-2512
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    • 2012
  • Cold shock proteins (CSPs) are a family of proteins induced at low temperatures. CSPs bind to single-stranded nucleic acids through the ribonucleoprotein 1 and 2 (RNP 1 and 2) binding motifs. CSPs play an essential role in cold adaptation by regulating transcription and translation via molecular chaperones. The solution nuclear magnetic resonance (NMR) or X-ray crystal structures of several CSPs from various microorganisms have been determined, but structural characteristics of psychrophilic CSPs have not been studied. Therefore, we optimized the purification process to obtain highly pure Lm-Csp and determined the three-dimensional structure model of Lm-Csp by comparative homology modeling using MODELLER on the basis of the solution NMR structure of Bs-CspB. Lm-Csp consists of a ${\beta}$-barrel structure, which includes antiparallel ${\beta}$ strands (G4-N10, F15-I18, V26-H29, A46-D50, and P58-Q64). The template protein, Bs-CspB, shares a similar ${\beta}$ sheet structure and an identical chain fold to Lm-Csp. However, the sheets in Lm-Csp were much shorter than those of Bs-CspB. The Lm-Csp side chains, E2 and R20 form a salt bridge, thus, stabilizing the Lm-Csp structure. To evaluate the contribution of this ionic interaction as well as that of the hydrophobic patch on protein stability, we investigated the secondary structures of wild type and mutant protein (W8, F15, and R20) of Lm-Csp using circular dichroism (CD) spectroscopy. The results showed that solvent-exposed aromatic side chains as well as residues participating in ionic interactions are very important for structural stability. Further studies on the three-dimensional structure and dynamics of Lm-Csp using NMR spectroscopy are required.

친화성 고분자 유도체의 합성 및 단백질의 분리정제에 관한 연구 - p-Aminoanilinylsuccinyl-AH-Sepharose 4B의 합성 및 흰느타리버섯 중 단백질의 정제 - (Synthesis of Resin Derivatives and Purification of Protein - Synthesis of p-Aminoanilinylsuccinyl-AH-Sepharose 4B and Purification of Protein in Pleurotus cornucopiae -)

  • 민태진;김용립;박상신;이수용
    • 한국균학회지
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    • 제17권3호
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    • pp.105-113
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    • 1989
  • 흰느타리버섯 Pleurotus cornucopiae 중의 단백질을 선택적으로 분리 정제하기 위하여, 출발물질인 AH 4B와 숙신산 무수물을 반응시켜 SAH 4B를 얻은 다음 이에 P-PD을 반응시켜 P-ASAH 4B를 합성하여 친화성 크로마토그래피하였다. 1) SAH 4B겔 중의 succinyl기의 capacity는 겔 1ml당 $9.0{\mu}mol$이었으며, p-ASAH 4B 겔 중의 p-aminoanilinyl기의 capacity는 겔 1ml당 $6.1{\mu}mol$ 이었다. 2) 합성한 P-ASAH 4B겔에 친화성 있는 단백질의 총 겉보기 분자량은 167KD이었으며, 이는 37KD와 130KD단백질의 복합체 이었다. 출발물질인 AH 4B겔에 친화성 있는 단백질의 총 겉보기 분자량은 97.2KD이었으며, 이는 3.2KD, 31KD및 61KD단백질의 복합체 이었다. 3) 합성한 P-ASAH 4B겔에 친화성이 있는 단백질 중의 아미노산 함량은 비극성 아미노산이 44.57%, 극성 아미노산이 24.75%, 양성 아미노산이 21.25% 및 음성 아미노산이 9.43%였고, AH 4B겔에 친화성이 있는 단백질 중의 아미노산 함량은 비극성 아미노산이 44.05%, 극성 아미노산이 29.13%, 양성 아미노산이 13.91% 및 음성 아미노산이 12.91%로 차이가 있었다. 4) 합성한 P-ASAH 4B겔 중의 p-amino-anilinyl기가 AH 4B겔 중의 아미노기보다 양전하를 가진 아미노산을 더 많이 함유하는 단백질을 선택적으로 분리하였다.

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Expression and Purification of a Recombinant scFv towards the Exotoxin of the Pathogen, Burkholderia pseudomallei

  • Lim, Kue-Peng;Li, Hong-Bin;Sheila Nathan
    • Journal of Microbiology
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    • 제42권2호
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    • pp.126-132
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    • 2004
  • A single chain variable fragment (scFv) specific towards B. pseudomallei exotoxin had previously been generated from an existing hybridoma cell line (6E6AF83B) and cloned into the phage display vector pComb3H. In this study, the scFv was subcloned into the pComb3X vector to facilitate the detection and purification of expressed antibodies. Detection was facilitated by the presence of a hemagglutinin (HA) tag, and purification was facilitated by the presence of a histidine tag. The culture was grown at 30$^{\circ}C$ until log phase was achieved and then induced with 1 mM IPTG in the absence of any additional carbon source. Induction was continued at 30$^{\circ}C$ for five h. The scFv was discerned by dual processes-direct enzyme-linked immunosorbent assays (ELISA), and Western blotting. When compared to E. coli strains ER2537 and HB2151, scFv expression was observed to be highest in the E. coli strain Topl0F'. The expressed scFv protein was purified via nickel-mediated affinity chromatography and results indicated that two proteins a 52 kDa protein, and a 30 kDa protein were co-purified. These antibodies, when blotted against immobilized exotoxin, exhibited significant specificity towards the exotoxin, com-pared to other B. pseudomallei antigens. Thus, these antibodies should serve as suitable reagents for future affinity purification of the exotoxin.

바이오의약품의 단백질 분리 및 정제를 위한 Avantor® ACE® 와이드 포어 HPLC 컬럼 가이드 (Avantor® ACE® Wide Pore HPLC Columns for the Separation and Purification of Proteins in Biopharmaceuticals)

  • Matt James;Mark Fever;Tony Edge
    • FOCUS: LIFE SCIENCE
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    • 제1호
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    • pp.3.1-3.7
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    • 2024
  • The article discusses the critical role of chromatography in the analysis and purification of proteins in biopharmaceuticals, emphasizing the importance of comprehensive characterization for ensuring their safety and efficacy. It highlights the use of Avantor® ACE® HPLC columns for the separation and purification of proteins, focusing on the analysis of intact proteins using reversed-phase liquid chromatography (RPLC) with fully porous particles. This article also details the application of different mobile phase additives, such as TFA and formic acid, and emphasizes the advantages of using type B ultra-pure silica-based columns for efficiency and peak shape in biomolecule analysis. Additionally, it addresses the challenges of analyzing intact proteins due to slow molecular diffusion and introduces the concept of solid-core (or superficially porous) particles, emphasizing their benefits over traditional porous particles for the analysis of therapeutic proteins. Furthermore, it discusses the development of Avantor® ACE® UltraCore BIO columns, specifically designed for the high-efficiency separation of large biomolecules, such as proteins, and demonstrates their effectiveness in achieving high-resolution separations, even for higher molecular weight proteins like monoclonal antibodies (mAbs). In addition, it underscores the complexity of analyzing and characterizing intact protein biopharmaceuticals, requiring a range of analytical techniques and the use of wide-pore stationary phases, operated at elevated temperatures and with relatively shallow gradients. It highlights the comprehensive range of options offered by Avantor® ACE® wide pore columns, including both fully porous and solid-core particles, bonded with a variety of complementary stationary phase chemistries to optimize selectivity during method development. The use of ultrapure and highly inert base silica is emphasized for enabling the use of lower concentrations of mobile phase modifiers without compromising analyte peak shape, particularly beneficial for LC-MS applications. Then the article concludes by emphasizing the significance of reversed-phase liquid chromatography and its compatibility with mass spectrometry as a valuable tool for the separation and analysis of intact proteins and their closely related variants in biopharmaceuticals.

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Development of a Simple Cell Lysis Method for Recombinant DNA Using Bacteriophage Lambda Lysis Genes

  • Jang, Bo-Yun;Jung, Yun-A;Lim, Dong-Bin
    • Journal of Microbiology
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    • 제45권6호
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    • pp.593-596
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    • 2007
  • In this study, we describe the development of a simple and efficient method for cell lysis via the insertion of a bacteriophage lambda lysis gene cluster into the pET22b expression vector in the following order; the T7 promoter, a gene for a target protein intended for production, Sam7 and R. This insertion of R and Sam7 into pET22b exerted no detrimental effects on cellular growth or the production of a target protein. The induction of the T7 promoter did not in itself result in the autolysis of cells in culture but the harvested cells were readily broken by freezing and thawing. We compared the efficiency of the cell lysis technique by freezing and thawing to that observed with sonication, and determined that both methods completely disintegrated the cells and released proteins into the solution. With our modification of pET22b, the lysis of cells became quite simple, efficient, and reliable. This strategy may prove useful for a broad variety of applications, particularly in experiments requiring extensive cell breakage, including library screening and culture condition exploration, in addition to protein purification.

Large scale purification and characterization of recombinant human autotaxin/lysophospholipase D from mammalian cells

  • Song, Yuanda;Dilger, Emily;Bell, Jessica;Barton, William A.;Fang, Xianjun
    • BMB Reports
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    • 제43권8호
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    • pp.541-546
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    • 2010
  • We utilized a mammalian expression system to purify and characterize autotaxin (ATX)/lysophospholipase D, an enzyme present in the blood responsible for biosynthesis of lysophosphatidic acid. The human ATX cDNA encoding amino acids 29-915 was cloned downstream of a secretion signal of CD5. At the carboxyl terminus was a thrombin cleavage site followed by the constant domain (Fc) of IgG to facilitate protein purification. The ATX-Fc fusion protein was expressed in HEK293 cells and isolated from conditioned medium of a stable clone by affinity chromatography with Protein A sepharose followed by cleavage with thrombin. The untagged ATX protein was further purified to essential homogeneity by gel filtration chromatography with a yield of approximately 5 mg/liter medium. The purified ATX protein was enzymatically active and biologically functional, offering a useful tool for further biological and structural studies of this important enzyme.

인시목곤충의 성충체액 단백질에 관한 생리.생화학적 연구 II. 누에의 성충특이체액 단백질의 분리.정제 및 분자적 특성 (Physiological and Biochemical Studies on the Adult Heamolymph Proteins in Lepidoptera II. Purification and Molecular Properties of Adult Specific Protein in the Silkworm, Bombyx mori)

  • 이상몽;성수일
    • 한국잠사곤충학회지
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    • 제34권1호
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    • pp.30-34
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    • 1992
  • 누에의 성충특이체액단백질(adult specific protein : ASP)의 생리 생화학적 특성 및 성충화 발육에 따른 기능을 구명하기 위한 연구의 일환으로 ASP의 분리·정제 및 분자적 특성을 조사하였다. ASP는 Sephadex G-100 gel 여과 및 CM52 ion exchange chromatography에 의해 분리·정제되었으며, 정제된 단백질의 순도는 native-PAGE 및 면역전기영동에 의해 확인되었다. ASP는 분자량 19.5kDa 및 17.5kDa으로 추정되는 2종류의 subunits으로 구성되어 있고 또한 당 및 지질을 포함하지 않는 단순단백질임이 밝혀졌다.

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Pichia pastoris로부터 Toll-like Receptor 9의 세포 내 도메인 단백질의 발현과 순수분리 정제 (Expression and Purification of Toll-like Receptor 9 Cytoplasmic Domain in Pichia patoris)

  • 이균영;이곤호
    • Journal of Plant Biotechnology
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    • 제32권4호
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    • pp.269-273
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    • 2005
  • Methylotrophic 효모 Pichia pastoris 발현시스템을 사용하여 인간 TLR9 단백질의 세포내 TIR 도메인을 발현하였다. TIR 단백질이 P. pastoris에서 발현되어 배지 속으로 분비되는 것을 SDS-PAGE로 확인하였고, 발현된 단백질을 western-blot, MALDI-TOF 질량분석으로 동정하였다. 이를 통하여 TIR 딘백질이 P. pastoris에서 안정적으로 발현됨을 알 수 있었다. 그리고 발현된 단백질을 니켈 친화, 양이온교환수지, 겔 투과 크로마토그라피를 사용하여 순수 분리 정제하였다. P. pastoris를 이용한 단백질의 발현과 정제방법은 대장균에서 잘 발현되지 않는 단백질의 발현에 응용될 수 있을 것이다.