• 제목/요약/키워드: Single-chain antibody

검색결과 59건 처리시간 0.036초

Streptavidin이 융합된 DR4 항원에 특이적인 single-chain Fv 항체의 개발 (The development of anti-DR4 single-chain Fv (ScFv) antibody fused to Streptavidin)

  • 김서우;우상욱;김진규
    • 미생물학회지
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    • 제54권4호
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    • pp.330-342
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    • 2018
  • Streptavidin (STR)과 Biotin system은 Biotin의 Streptavidin에 대한 높은 비공유 친화력(non-covalent affinity; $K_D=10^{-14}M$)과 4 Biotin 결합부위를 갖는 Streptavidin의 tetramer 구조로 인해 복수의 항원결합부위 및 복수의 항원특이성을 갖는 항체를 제조할 수 있기 때문에 가장 활발하게 연구되고 있다. 이 system을 활용하기 위해 우리는 Streptomyces avidinii 염색체 DNA로부터 PCR을 통해 Streptavidin (STR) 유전자를 증폭하고 이를 TRAIL (tumor necrosis factor ${\alpha}$ related apoptosis induced ligand) receptor인 death receptor 4 (DR4)에 특이적으로 결합하는 hAY4 single-chain Fv 항체유전자에 융합시켰다. 대장균에서 발현시킨 STR에 융합된 hAY4 ScFv (hAY4-STR) 항체는 가열시킨 SDS-PAGE에서 43 kDa monomer를 나타내었다. 그러나 가열하지 않은 SDS-PAGE와 Size-exclusion chromatography에서는 tetramer인 172 kDa을 나타내었는데 이는 hAY4 ScFv-STR 항체가 STR의 자연적인 비공유결합에 의해 유도된 tetramer를 형성하고 있음을 나타내고 있다. 본 융합 단백질은 Ouchterlony assay와 ELISA에서 보여주는 것처럼 자연 Streptavidin과 유사한 Biotin 결합력을 유지하고 있었다. ELISA와 Westernblot을 이용하여 정제된 hAY4-STR 융합항체의 DR4 항원결합력 또한 확인하였다. 게다가 표면 플라즈몬 공명(surface plasmon resonance) 분석에서 hAY4 ScFv-STR tetramer는 tetramerization에 의해 hAY4 ScFv monomer보다 60배 더 높은 항원결합력을 나타내었다. 요약하면 hAY4 ScFv-STR 융합단백질은 E. coli에서 soluble tetramer로 성공적으로 발현 및 정제되었으며 Biotin과 DR4 항원에 동시에 결합함을 보여 주었다. 이는 bifunctional and tetrameric ScFv 항체를 제조 할 수 있음을 제시해 주고 있다.

인간의 급성 비임파성 백혈암세포(HL60)의 표면항원에 결합하는 재조합 single-chain Fv (ScFv)의 개발 (The development of murine recombinant single-chain variable domain fragment (ScFv) specific to acute non-lymphocytic leukemia (ANLL) cell line HL60)

  • 김철홍;한승희;김형민;한재용;임명운;김진규
    • 미생물학회지
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    • 제51권2호
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    • pp.115-125
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    • 2015
  • 단일클론항체 AP64 IgM은 인간의 급성 비임파성 골수암(ANLL) 세포주 HL60에 결합하며 쥐의 ANLL 세포에도 교차결합(cross-react)한다. 또한 complement에 의해 매개되어지면 골수암 억제효과를 나타낸다. 본 연구에서는 RT-PCR에 의해 AP64 IgM을 분비하는 하이브리도마의 $V_H$$V_L$ cDNA로부터 유래된 재조합 single-chain variable domain fragment (ScFv)를 제조하였다. $V_H$$V_L$은 15개 아미노산으로 구성된 linker $(G_4S)_3$으로 연결되었다. 재조합 ScFv는 Escherichia coli BMH 71-18에서 single polypeptide chain으로 발현되었다. Periplasmic extract를 $Ni^+$-NTA-agarose affinity column에 가하여 발현된 재조합 ScFv를 정제하였으며 westernblot으로 정제된 단백질을 탐지하였다. 정제된 재조합 ScFv는 AP64 IgM 모항체가 탐지하는 항원과 같은 HL60 세포의 표면항원(약 30 kDa)을 인지하였다. 그러나 HL60의 표면항원에 대한 ScFv의 결합력은 AP64 IgM 모항체보다 낮아서 추후 이에 대한 개선이 필요하다. 종합하여 볼 때 HL60 세포주에 특이적인 재조합 ScFv는 진단 또는 치료목적으로 유용한 생물학적 제재가 될 수 있을 것이다.

대장균의 alkaline phosphatase가 융합된 anti-DR4 single-chain Fv (ScFv) 항체의 개발 (The development of anti-DR4 single-chain Fv (ScFv) antibody fused to Escherichia coli alkaline phosphatase)

  • 한승희;김진규
    • 미생물학회지
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    • 제52권1호
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    • pp.10-17
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    • 2016
  • 항체의 특이적 결합을 분석하는 효소면역분석법은 항원의 탐지를 위해 주로 horseradish peroxidase (HRP) 또는 alkaline phosphatase (AP) 등의 효소를 사용한다. 이때 효소를 주로 화학적으로 항체에 결합시켜 사용하게 되는데 이 과정이 복잡하며 불규칙하게 일어나서 항체 및 효소의 기능을 감소시키게 된다. 또한 대부분의 효소면역분석법에서는 주로 일차 항체의 항원결합을 탐지하기위해 이차 항체를 사용하는데, 즉 이차 항체에 결합한 효소의 기질발색에 의해 일차 항체의 항원결합을 탐지하므로 이차 항체가 요구 되어질 뿐만 아니라 이차 항체의 일차 항체에 대한 반응을 위한 부가적인 배양시간이 필요하다. 더욱 더 중요한 것은 이차 항체만의 비특이적 항원 결합 역시 제거되어져야 한다. 본 연구에서는 대장균의 genomic DNA로부터 PCR을 통해 alkaline phosphatase 유전자(Sadeghi et al., 2008)를 증폭 분리한 다음 이를 TRAIL (tumor necrosis factor ${\alpha}$ related apoptosis induced ligand) receptor인 death receptor 4 (DR4)에 특이적으로 결합하는 hAY4 single-chain Fv (ScFv)에 융합시킨 재조합 ScFv-AP 형태로 대장균에서 발현시켜 정제하였다. 정제된 hAY4 ScFv-AP는 SDS-PAGE에서 단량체(monomer) 분자량인 73.8 kDa을 나타내었다. 그러나 size-exclusion chromatography(SEC)에서는 147.6 kDa을 나타내는 결과를 통해 hAY4 ScFv-AP는 AP의 자연적인 비공유결합에 의해 이량체(dimeric form)형성이 유도되어짐을 확인하였다. 또한 ELISA, Western blot 그리고 immunocytochemistry에서 이차 항체 없이 일차 항체 hAY4 ScFv에 직접 융합된 AP의 기질발색에 의해 ScFv 일차 항체의 특이적 항원결합을 나타내었다. 요약하면 hAY4 ScFv와 대장균의 alkaline phosphatase 유전자를 융합시켜 대장균에서 수용성 형태로 성공적으로 정제하였으며 정제된 ScFv-AP 융합단백질은 ELISA, Western blot 및 immunocytochemistry에서 항원결합력을 나타냈으며 또한 구매에 따른 고비용, 부가적인 배양시간 및 비특이적 결합에 의한 오류 등의 문제점을 갖는 이차 항체를 사용하지 않고 직접적인 항원결합력을 나타내었다.

Affinity Maturation of an Anti-Hepatitis B Virus PreS1 Humanized Antibody by Phage Display

  • Yang, Gi-Hyeok;Yoon, Sun-Ok;Jang, Myung-Hee;Hong, Hyo-Jeong
    • Journal of Microbiology
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    • 제45권6호
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    • pp.528-533
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    • 2007
  • In a previous study we generated an anti-Hepatitis B Virus (HBV) preS1 humanized antibody (HzKR127) that showed in vivo HBV-neutralizing activity in chimpanzees. However, the antigen-binding affinity of the humanized antibody may not be sufficient for clinical use and thus affinity maturation is required for better therapeutic efficacy. In this study, phage display technique was employed to increase the affinity of HzKR127. All six amino acid residues (Glu95-Tyr96-Asp97-Glu98-Ala99-Tyr100) in the heavy (H) chain complementary-determining region 3 (HCDR3) of HzKR127 were randomized and phage-displayed single chain Fv (scFv) library was constructed. After three rounds of panning, 12 different clones exhibiting higher antigen-binding activity than the wild type ScFv were selected and their antigen-binding specificity for the preS1 confirmed. Subsequently, five ScFv clones were converted to whole IgG and subjected to affinity determination. The results showed that two clones (B3 and A19) exhibited an approximately 6 fold higher affinities than that of HzKR127. The affinity-matured humanized antibodies may be useful in anti-HBV immunotherapy.

Isolation and Characterization of Single-Chain Fv Against Ductal Cells

  • Lee Myung-Hoon;Ryu Hye-Myung;Kim Sun-Zoo;Park Ji-Young;Uhm Ji-Hyun;Park Tae-In
    • 대한의생명과학회지
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    • 제10권3호
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    • pp.211-217
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    • 2004
  • For discrimination of ductal and ascinar cells, we isolated a single-chain variable domain fragment (scFv) antibody against ductal cells of salivary gland using phage display technique. From the spleen of a mouse immunized with ductal cell lysate, total RNA was prepared and used as a template for cDNA synthesis of antibody genes. The scFv genes were constructed with variable domain genes of heavy and light chain and were introduced into pCANTAB5E to construct phage scFv library. The phage particles specific for acinar cells were screened by subtraction using immunotubes coated with acinar and ductal cell lysate and enzyme-linked immunoabsorbance assay (ELISA). The characteristics of the scFv were determined by immunohistochemistry (IHC) and the result indicated that the isolated scFv has the specificity against ductal cells of salivary glands and tubules of kidney. And the scFv has an unique binding activity specific for Hashimoto's thyroiditis. The nucleotide sequence of isolated scFv gene was determined and revealed that V/sub H/ belongs to the mouse H-chain family subgroup IB and V/sub L/ to the mouse L-chain family subgroup III.

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분자 비컨을 이용한 살아 있는 세포에서 단일클론항체 경쇄와 중쇄 mRNA 검출에 의한 세포주 선별방법 (Live Cell Detection of Monoclonal Antibody Light and Heavy Chain mRNAs using Molecular Beacons)

  • 정승아;이원종
    • KSBB Journal
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    • 제31권1호
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    • pp.33-39
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    • 2016
  • Developing the method for the selection of animal cell line producing therapeutic monoclonal antibody (mAb) is invaluable as its market is rapidly growing. Although the quality of produced mAb is as important as quantity, however there is no method developed for the selective screening of cell lines on the basis of both quantity and quality. From recent reports, the ratio of light and heavy chain mRNAs of mAb in the cell is a key parameter for the indication of product quality. Therefore, it is obvious that developing the novel method that can detect both light and heavy chain mRNAs in single live cell will provide unprecedented opportunities in bio-industry. Here, we have constructed oligonucleotide probes, molecular beacons for the detection of light or heavy chain mRNAs, respectively, in the live cells producing mAbs. Both beacons showed increased fluorescent intensity after transient transfection of plasmid expressing mAbs analyzed by fluorometer. Flow cytometric analysis clearly demonstrated that both molecular beacons can simultaneously detect the expression of light and heavy chain mRNAs of mAb in the same cell. The technique described in the thesis provides the new direction and concept for developing the method for the smart selection of cell lines producing recombinant proteins including therapeutic mAbs.

Development of a Single Chain Antibody Using a Phage Display Cloning Method for the Detection of 2,4-Dinitrotoluene

  • Na, Jung-Hyun;Joo, Man-Seok;Lee, Won-Kyu;Shim, Hyunbo;Lim, Si-Hyung;Jung, Sang Taek;Yu, Yeon Gyu
    • Bulletin of the Korean Chemical Society
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    • 제34권2호
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    • pp.460-464
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    • 2013
  • Single-chain variable fragments of antibodies (scFv) specific to 2,4-dinitrotoluene (DNT) were isolated from a phage library displaying synthetic human scFv fragments with 6 diversified complementary determining regions (CDRs). A DNT derivative that contained an extended amine group was synthesized and conjugated to the NHS-group that was linked to magnetic beads. Phages specific to the immobilized DNT derivatives were isolated from the library after 4 rounds of sequential binding and elution processes. The displayed scFv fragments from the isolated phages showed consensus CDR sequences. One DNT-specific scFv was expressed in E. coli and purified using Ni-affinity chromatography. The purified DNT-specific scFv binds specifically to the immobilized DNT-derivative with $K_D$ value of $6.0{\times}10^{-7}$ M. The scFv and DNT interaction was not disrupted by the addition of 4-nitrotoluene or benzoic acid. These data demonstrate that the screened scFv from the phage displayed library could be used for selective and sensitive detection of explosives such as TNT.

Methods for rapid identification of a functional single-chain variable fragment using alkaline phosphatase fusion

  • Lee, Kyung-Woo;Hur, Byung-Ung;Song, Suk-Yoon;Choi, Hyo-Jung;Shin, Sang-Hoon;Cha, Sang-Hoon
    • BMB Reports
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    • 제42권11호
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    • pp.731-736
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    • 2009
  • The generation of functional recombinant antibodies from hybridomas is necessary for antibody engineering. However, this is not easily accomplished due to high levels of aberrant heavy and light chain mRNAs, which require a highly selective technology that has proven complicated and difficult to operate. Herein, we attempt to use an alkaline phosphate (AP)-fused form of single-chain variable fragment (scFv) for the simple identification of a hybridoma-derived, functional recombinant antibody. As a representative example, we cloned the scFv gene from a hybridoma-producing mouse IgG against branched-chain keto acid dehydrogenase complex-E2 (BCKD-E2) into an expression vector containing an in-frame phoA gene. Functional recombinant antibodies were easily identified by conventional enzyme-linked immunosorbent assay (ELISA) by employing scFv-AP fusion protein, which also readily serves as a valuable immuno-detective reagent.

B형 간염 바이러스의 X단백질에 대한 특이항체의 세포 내 발현 (Expression of Intracellular Single Chain Antibody Specific to Hepatitis B Virus X Protein)

  • 진영희;김형일;박선
    • IMMUNE NETWORK
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    • 제3권1호
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    • pp.23-28
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    • 2003
  • Background: Intracellular antibody specific to hepatitis B virus X protein (HBx) might be useful for studying the role of HBx in hepatocellular carcinogenesis and HBV replication. Methods: With variable region genes for H7 monoclonal anti-HBx Ab, we constructed a vector for bacterial expression of single chain Ab (scFv) and a vector for eukaryotic cell expression of it. The expression of H7 scFv and its binding activity against HBx was examined by immunoblotting and immunofluorescence microscopy. Results: H7 scFv expressed in bacterial cells retained reactivity to HBx. We demonstrated its intracytoplasmic expression in CosM6 eukaryotic cells. Conclusion: This is the first study showing the expression of intracellular anti-HBx Ab in eukaryotic cells. H7 scFv may be a good tool to study the function of HBx in HBV infection.

Successful Application of the Dual-Vector System II in Creating a Reliable Phage-Displayed Combinatorial Fab Library

  • Song, Suk-yoon;Hur, Byung-ung;Lee, Kyung-woo;Choi, Hyo-jung;Kim, Sung-soo;Kang, Goo;Cha, Sang-hoon
    • Molecules and Cells
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    • 제27권3호
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    • pp.313-319
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    • 2009
  • The dual-vector system-II (DVS-II), which allows efficient display of Fab antibodies on phage, has been reported previously, but its practical applicability in a phage-displayed antibody library has not been verified. To resolve this issue, we created two small combinatorial human Fab antibody libraries using the DVS-II, and isolation of target-specific antibodies was attempted. Biopanning of one antibody library, termed DVFAB-1L library, which has a $1.3{\times}10^7$ combinatorial antibody complexity, against fluorescein-BSA resulted in successful isolation of human Fab clones specific for the antigen despite the presence of only a single light chain in the library. By using the unique feature of the DVS-II, an antibody library of a larger size, named DVFAB-131L, which has a $1.5{\times}10^9$ combinatorial antibody complexity, was also generated in a rapid manner by combining $1.3{\times}10^7$ heavy chains and 131 light chains and more diverse anti-fluorescein-BSA Fab antibody clones were successfully obtained. Our results demonstrate that the DVS-II can be applied readily in creating phage-displayed antibody libraries with much less effort, and target-specific antibody clones can be isolated reliably via light chain promiscuity of antibody molecules.