• 제목/요약/키워드: Recombinant antibody refolding

검색결과 6건 처리시간 0.015초

Increased Refolding Yield of Disulfide Bond Bridged Fab-Toxin Homodimers by the Insertion of CH3 Domains

  • Song Jeong-Wha;Won Jae-Seon;Lee Yong-Chan;Choe Mu-Hyeon
    • Journal of Microbiology and Biotechnology
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    • 제16권7호
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    • pp.1104-1110
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    • 2006
  • Recombinant antibody-toxin is a bifunctional protein that binds and kills a target cell expressing a specific antigen on the surface of the cell, and its structure is chimeric, in which a toxin is fused to an antigen-binding domain such as scFv or Fab. Divalent antibody-toxin molecules showed higher cytotoxicities against cancer cell lines than monovalent molecules. However, the yields of the divalent molecules were very low. In this study, we introduced the CH2, CH3, or CH2-CH3 (=Fc) domain of antibody in the middle of the Fab-toxin between the hinge region of human IgG1 and the toxin domain to increase the yield. The covalently bonded dimer could be formed by three disulfide bridges from cysteine residues in the hinge region. The molecule with the CH3 domain showed about 3-fold higher dimerization yield than previously constructed Fab-toxin molecules, while maintaining the cytotoxic activity comparable to that of scFv-toxin. However, the introduction of CH2 or Fc domain to the same position showed little effect on the dimerization yield. We also observed that the introduction of the CH3 region made it possible to form noncovalently associated dimer molecules.

B3(Fab)-streptavidin Tetramer Has Higher Binding Avidity than B3(scFv)-streptavidin Tetramer

  • Won, Jae-Seon;Kang, Hye-Won;Nam, Pil-Won;Choe, Mu-Hyeon
    • Bulletin of the Korean Chemical Society
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    • 제30권5호
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    • pp.1101-1106
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    • 2009
  • Multivalent and multi-specific antibodies can provide valuable tools for bio-medical research, diagnosis and therapy. In antigen-antibody interactions, the avidity of antibodies depends on the affinity and the number of binding sites.$^1$ As artificial multivalent antibody agents, single chain Fv-streptavidin fusion tetramer proteins $(scFv-SA)_4$ have been previously tested.$^{1,\;2}$ Although, the Fab domain is known to be more stable than scFv in animal models,$^{3,\;4}$ it has never been used to make a multivalent agent with a streptavidin fusion. In this study, we prepared tetra-valent $(Fab-cSA)_4$ by fusing Fab with core streptavidin (cSA). This molecule was made using inclusion body production, refolding and chromatography purification. Affinities of the Fab-cSA tetramer and a scFv-cSA tetramer to a cell surface antigen were compared by ELISA using biotin-HRP. The Fab-cSA tetramer showed higher binding avidity than the scFv-cSA tetramer. The higher binding avidity of the Fab-cSA tetramer demonstrates its potential as a therapeutic agent for target-specific antibody therapy.

Increase of Spacer Sequence Yields Higher Dimer $(Fab-Spacer-Toxin)_{2}$ Formation

  • Yoo Mee-Hyeon;Won Jae-Seon;Lee Yong-Chan;Choe Mu-Hyeon
    • Journal of Microbiology and Biotechnology
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    • 제16권7호
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    • pp.1097-1103
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    • 2006
  • The divalent antibody-toxins are expected to have increased binding avidities to target cells because of the two cell-binding domains. However, previous studies showed that the refolding yield of divalent antibody-toxin is very low, and it is assumed that homodimer formation of antibody-toxin is strongly interfered by the repulsion between the two large toxin domains that come close to each other during dimer formation. In this study, B3 antibody was used as a model antibody, and its Fab domain was used to construct three different kinds of Fab divalent molecules, $[B3(Fab)-toxin]_{2}$. The monomer Fab-toxin molecules were made by fusing the Fab domain of monoclonal antibody B3 to PE38, a truncated mutant form of Pseudomonas exotoxin (PE), and a connecting sequence that contained spacer amino acid sequence (G4S)n (n=l, 2, 3) was inserted between Fab and PE38. The prepared divalent molecules were $[Fab-S\;1,\;2,\;3-PE38]_{2}\;(=[Fab-SKPCIST-KAS(G_{4}S)nGGPE-PE38]_{2}\;(n=1,\;2,\;3))$, and they are derivatives of previously studied $[Fab-H2cys-PE38]_{2}\;(=[Fab-SKPCIST-KASGGPE-PE38]_{2})$. In $[Fab-Sl,\;2,\;3-PE38]_{2}$, two Fab-S1, 2, 3-PE38 monomers were covalently linked by the disulfide bond bridge made from cysteine in the -SKPCIST- sequence. The insertion of spacer amino acids after the disulfide bridge resulted in a 12-18 fold higher yield of dimer formation than previously constructed $[Fab-Hlcys-PZ38]_{2}[7]$, 3-4-fold higher than $[Fab-ext-PZ38]_{2}[25]$. These two molecules have less amino acid spacer sequence between the disulfide bridge and PE38 domain. The design of $[Fab-PE38]_{2}$ in this study gave molecules with a higher refolding yield. The results of cytotoxicity assay showed a higher cytotoxic effect of these divalent molecules than that of the monovalent scFv-PE38 molecule.

A Divalent Immunotoxin Formed by the Disulfide Bond between Hinge Regions of Fab Domain

  • 최성혁;김지은;이용찬;장영주;최무현
    • Bulletin of the Korean Chemical Society
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    • 제22권12호
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    • pp.1361-1365
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    • 2001
  • Recombinant immunotoxins are hybrid cytotoxic proteins designed to selectively kill cancer cells. A divalent immunotoxins, [B3(FabH1)-PE38]2, was constructed by recombining Fab domain of B3 antibody as a cell-targeting domain and Pseudo monas exotoxin A (PE) as a cytotoxic domain. Monoclonal antibody, B3, is the murine antibody (IgG1k) directed against Lewis Y-related carbohydrate antigens, which are abundant on the surface of many carcinomas. Fab fragment of this antibody was used in this study with the modified hinge sequence where last two cysteines out of three were mutated to serine. PE is a 66 kDa bacterial toxin that kills eukaryotic cells by inhibiting protein synthesis with ADP ribosylation of ribosomal elongation factor 2 (EF2). Fc region of B3 antibody was substituted with the truncated form of PE (38 kDa, PE38) on DNA level. [B3(FabH1)-PE38]2 was formed by disulfide bond between cysteines in the modified hinge region of B3(FabH1)-PE38. Each polypeptide for recombinant immunotoxins was overexpressed in Escherichia coli and collected as inclusion bodies. Each inclusion body was solubilized and refolded, and cytotoxic effects were measured. Divalent immunotoxins, [B3(FabH1)-PE38]2, had ID50 values of about 10 ng/mL on A431 cell lines and about 4 ng/mL on CRL1739 cell lines. Control immunotoxins, B3(scFv)-PE40, had ID50 values of about 28 ng/mL on A431 cell lines and about 41 ng/mL on CRL1739 cell lines. Divalent immunotoxins, [B3(FabH1)-PE38]2, had higher cytotoxic effects than B3(scFv)-PE40 control immunotoxins.

Baculovirus Expression and Biochemical Characterization of the Bombyx mori Protein Disulfide Isomerase (bPDI)

  • Goo, Tae-Won;Yun, Eun-Young;Kim, Sung-Wan;Park, Kwang-Ho;Hwang, Jae-Sam;Kwon, O-Yu;Kang, Seok-Woo
    • International Journal of Industrial Entomology and Biomaterials
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    • 제7권2호
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    • pp.127-131
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    • 2003
  • Protein disulfide isomerase (PDI) found in the endoplasmic reticulum (ER) catalyzes disulfide bond exchange and assists in protein folding of newly synthesized proteins. PDI also functions as a molecular chaperone and has been found to be associated with proteins in the ER. In addition, PDI functions as a subunit of two more complex enzyme systems: the prolyl-4-hydroxylase and the triacylglycerol transfer proteins. A cDNA that encodes protein disulfide isomerase was previously isolated from Bombyx mori (bPDI), in which open reading frame of 494 amino acids contained two PDI-typical thioredoxin active site of WCGHCK and an ER retention signal of the KDEL motif at its C-terminal, and we report its functional characterization here. This putative bPDI cDNA is expressed in insect Sf9 cells as a recombinant proteins using baculovirus expression vector system. The bPDI recombinant proteins are successfully recognized by antirat PDI antibody, and shown to be biologically active in vitro by mediating the oxidative refolding of reduced and scrambled RNase. This suggests that bPDI may play an important role in protein folding mechanism of insects.

Streptomyces peucetius subsp. caesius ATCC 27952 유래 Aklavinone 11-Hydroxylase 유전자의 대장균에서의 대량발현과 최적화 (Condition Optimization for Overexpression of the Aklavinone 11-Hydroxylase Gene from Streptomyces peucetius subsp. caesius ATCC 27952 in Escherichia coli.)

  • 민우근;홍영수;최용경;이정준;홍순광
    • 한국미생물·생명공학회지
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    • 제26권1호
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    • pp.15-22
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    • 1998
  • 일반적으로 Streptomyces류는 성장이 늦고 유지가 어려운 반면, E. coli는 배양기간이 짧고 유전자 조작도 간편한 장점이 있기 때문에, E. coli를 이용하여 유용단백질을 생산하는 연구가 일반적인 흐름이다. 그러나 E. coli에서 외래유전자를 도입하여 대량으로 생산을 시키는 경우에 비용해성의 inclusion body를 형성하는 경우가 많으므로 용해성의 활성형 단백질을 생산하기 위하여는 여러 가지 조건을 고려하여야 한다. 본 논문에서는 aklavlnone 11-hydroxylase gene(dnrF)을 E. coli BL2l에서 발현시킬 때의 배양조건을 배양온도와 IPTG농도의 두가지 요소를 조합하여 변형시키는 방법으로, 활성형 단백질의 생산을 최대화하고 inclusion body의 형성을 최소화하는 배양조건을 조사하였다. 그 결과, 37$^{\circ}C$에서 배양했을 때에는 0.02mM의 IPTG를 첨가하였을 때 inclusion body를 가장 적게 만들고, 그에 따라 생산되는 효소활성도 가장 높았다. 반면, 28$^{\circ}C$로 배양온도를 낮추었을 때에는 0.06mM의 IPTG를 첨가하였을 때 aklavinone 11-hydroxylase효소가 최대로 생산됨을 SDS-PAGE 및 효소 활성측정으로 확인하였다. IPTG농도를 0.1 mM로 높인 경우에는 28$^{\circ}C$, 37$^{\circ}C$에서 모두 aklavinone 11-hydroxylase효소가 과발현되어 Inclusion body를 가장 많이 생성하였음을 알 수 있었다. 방선균에서 동일 유전자를 대량발현시키는 경우 발현된 단백질의 효소 활성은 있으나 SDS-PAGE상에서의 단백질의 관찰이 불가능하였고, 동시에 단백질의 정제시 효소활성이 소실되어 정제가 불가능하였다. 이러한 효소 활성의 소실의 원인은 세포내의 어떤 저분자물질일 것으로 추정되며 본 연구에서 제작한 antibody를 이용하면, 효소의 정제가 용이하게 수행될 것이다. 특히 대장균계에서의 활성형 효소의 최적발현조건에서 세포를 배양하거나, inclusion body의 refolding을 실시한 후, 항체를 이용한 Western blot assay를 지표로 효소를 정제하면, 미지의 cofactor의 정체도 밝혀지고 aklavinone 11-hydroxylase류의 효소 특성 연구에 큰 도움이 될 것이다. 또한 이 효소를 이용한 다양한 종류의 bioconversion을 실시하여 그동안 background 때문에 생성된 product의 검출이 불가능했었던 소량의 생성산물의 분석도 가능할 것으로 판단되어 금후의 bioconversion연구에 기대하는 바가 크다.

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