• 제목/요약/키워드: IgG-Fc

검색결과 32건 처리시간 0.018초

자성 미세입자에의 항체 고정화 방법이 면역결합반응에 미치는 영향 (Effect of Antibody Immobilization Method to Magnetic Micro Beads on its Immunobinding Characteristics)

  • 최효진;황상연;장대호;조형민;강정혜;성기훈;주재범;이은규
    • Korean Chemical Engineering Research
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    • 제44권1호
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    • pp.65-72
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    • 2006
  • 자력을 이용한 분리기술의 장점을 이용하여 여러 가지 불순물들이 섞여 있는 현탁 용액으로부터 자성입자를 이용하여 목적 단백질만을 얻어낼 수 있는 기술의 가능성에 대하여 알아보고자 하였다. 자성입자를 이용하는 경우에는 (1) 자성입자 표면에 리간드 고정화, (2) ligand(리간드)와 목적 물질과의 특이적 결합, (3) 자력을 이용한 자성입자의 분리, (4) 목적 물질의 탈착 그리고 (5) 자성입자의 재사용 순서로 진행되어 여러 단계의 공정을 단순화시킬 수 있다. 이러한 자성입자를 이용한 방법은 효율성, 단순성, 까다롭지 않은 조건, 자동화의 용이성, 비용의 저렴함으로 인해 관심이 증대되고 있다. 본 연구에서는 표면이 카르복실기로 처리된 자성입자에 IgG 항체를 고정화시킨 후 IgG를 목적 단백질로 하여 이를 분리해내고자 하였다. 이를 위하여 자성입자 표면에 다른 물질과의 비특이적 결합이 일어나지 않을 조건에 대하여 확인해 보았으며, IgG 항체를 배향성 고정화시켜 자성입자가 목적 단백질과 보다 효과적으로 결합하여 목적 단백질인 IgG만을 선택적으로 분리해 낼 수 있는지에 대하여 알아보았다. 높은 pH를 사용할 경우 비특이적 흡착을 줄일 수 있었으며, IgG 항체 고정화된 자성입자를 사용할 경우 목적 단백질인 IgG와 선택적으로 반응함을 알 수 있었다. IgG 항체의 고정화에서 Fc지역 C-terminus에 인접해 있는 탄수화물 부분을 이용하여 배향성을 준 경우, IgG 항체 내의 아민기와 고정화시키는 비배향성 고정화 방법보다 항원과의 결합능력이 약 2배 높았다.

Identification of Functionally Different Rat IgE in RBL-2H3 Exocytosis

  • Kim, Jin-Sub;Cho, Sungae;Joo, Kyoung-Hwan;Lee, Joon-Sang;Conrad, Daniel H.;Cho, Sung-Weon
    • IMMUNE NETWORK
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    • 제2권4호
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    • pp.195-201
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    • 2002
  • Background: IgE is closely related to the development of allergies. However, the poor relationship between the specific IgE level and the severity of allergic diseases suggests the possibility of functionally different IgE isoforms. With this in mind, rat basophilic leukemia (RBL)-2H3 activation was analyzed with each type of rat IgE for two parameters, exocytosis and IL-4 mRNA production. RBL-2H3 has been well documented in the rat mucosal mast cell line. Methods: RBL-2H3 cells sensitized with each kind of rat IgE was activated by cross-linking FcRI with B5 (monoclonal anti-rat IgE mouse IgG antibodies). The RBL-2H3 exocytosis was measured by analyzing the ${\beta}$-hexosaminidase level, and the level of IL-4 mRNA synthesis was analyzed using semiquantitative RT-PCR. Rat IgE, which was produced by a parasite infection (REP), was prepared using either Paragonimus westermani metacercariae (REP-PW) or Anisakis simplex third stage larvae (REP-AS). A rat IgE prototype of IR162 was prepared by a peritoneal injection of immunocytoma. Results: The level of exocytosis showed a linear relationship with the rat IgE concentration when REP-PW or REP-AS was applied. However, it exhibited a biphasic response with IR162. In addition, the time course of heating at $56^{\circ}C$ illustrated the similarity between REP-PW and REP-AS, which differed from that of IR162. In contrast, the level of IL-4 mRNA synthesis in the RBL-2H3 cells with IR162 was comparable to that of either REP-PW or REP-AS. Conclusion: These results suggest that functionally different rat IgE isoforms exists in RBL-2H3 exocytosis.

Construction and Production of Concatameric Human TNF Receptor-Immunoglobulin Fusion Proteins

  • Yim, Su-Bin;Chung, Yong-Hoon
    • Journal of Microbiology and Biotechnology
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    • 제14권1호
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    • pp.81-89
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    • 2004
  • Tumor necrosis factor-$\alpha$ (TNF-$\alpha$) and lymphotoxin-$\alpha$ (LT-$\alpha$, TNF-$\beta$) can initiate and perpetuate human diseases such as multiple sclerosis (MS), rheumatoid arthritis (RA), and insulin-dependent diabetes mellitus (IDDM). TNFs can be blocked by the use of soluble TNF receptors. However, since monomeric soluble receptors generally exhibit low affinity or function as agonists, the use of monomeric soluble receptors has been limited in the case of cytokines such as TNF-$\alpha$, TNF-$\alpha$, interleukin (IL)-1, IL-4, IL-6, and IL-13, which have adapted to a multi component receptor system. For these reasons, very high-affinity inhibitors were created for the purpose of a TNFs antagonist to bind the TNFR and trigger cellular signal by using the multistep polymerase chain reaction method. First, recombinant simple TNFR-Ig fusion proteins were constructed from the cDNA sequences encoding the extracellular domain of the human p55 TNFR (CD120a) and the human p75 TNFR (CD120b), which were linked to hinge and constant regions of human $IgG_1$ heavy chain, respectively using complementary primers (CP) encoding the complementary sequences. Then, concatameric TNFR-Ig fusion proteins were constructed using recombinant PCR and a complementary primer base of recombinant simple TNFR-Ig fusion proteins. For high level expression of recombinant fusion proteins, Chinese hamster ovary (CHO) cells were used with a retroviral expression system. The transfected cells produced the simple concatameric TNFR-Ig fusion proteins capable of binding TNF and inactivating it. These soluble versions of simple concantameric TNFR-Ig fusion proteins gave rise to multiple forms such as simple dimers and concatameric homodimers. Simple TNFR-1g fusion proteins were shown to have much more reduced TNF inhibitory activity than concatameric TNFR-Ig fusion proteins. Concatameric TNFR-Ig fusion proteins showed higher affinity than simple TNFR-Ig fusion proteins in a receptor inhibitor binding assay (RIBA). Additionally, concatameric TNFR-Ig fusion proteins were shown to have a progressive effect as a TNF inhibitor compared to the simple TNFR-Ig fusion proteins and conventional TNFR-Fc in cytotoxicity assays, and showed the same results for collagen induced arthritis (CIA) in mice in vivo.

The Soluble Form of the Cellular Prion Protein Enhances Phagocytic Activity and Cytokine Production by Human Monocytes Via Activation of ERK and $NF-{\kappa}B$

  • Jeon, Jae-Won;Park, Bum-Chan;Jung, Joon-Goo;Jang, Young-Soon;Shin, Eui-Cheol;Park, Young Woo
    • IMMUNE NETWORK
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    • 제13권4호
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    • pp.148-156
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    • 2013
  • The $PrP^C$ is expressed in many types of immune cells including monocytes and macrophages, however, its function in immune regulation remains to be elucidated. In the present study, we examined a role for $PrP^C$ in regulation of monocyte function. Specifically, the effect of a soluble form of $PrP^C$ was studied in human monocytes. A recombinant fusion protein of soluble human $PrP^C$ fused with the Fc portion of human IgG1 (designated as soluble $PrP^C$-Fc) bound to the cell surface of monocytes, induced differentiation to macrophage-like cells, and enhanced adherence and phagocytic activity. In addition, soluble $PrP^C$-Fc stimulated monocytes to produce pro-inflammatory cytokines such as $TNF-{\alpha}$, $IL-1{\beta}$, and IL-6. Both ERK and $NF-{\kappa}B$ signaling pathways were activated in soluble $PrP^C$-treated monocytes, and inhibitors of either pathway abrogated monocyte adherence and cytokine production. Taken together, we conclude that soluble $PrP^C$-Fc enhanced adherence, phagocytosis, and cytokine production of monocytes via activation of the ERK and $NF-{\kappa}B$ signaling pathways.

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.

국내 상업용 간장과 재래식 간장 유래 다당에 의한 대식세포 활성화 (Macrophage Activation by Polysaccharides from Korean's Commercial and Traditional Soy Sauces)

  • 이문수;신광순
    • 한국식품영양학회지
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    • 제26권4호
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    • pp.797-805
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    • 2013
  • 본 연구에서는 일본식으로 제조된 상업용 간장과 우리나라 전통방식으로 제조된 재래식 간장으로부터 다당을 분리하여 RAW 264.7 대식세포주를 이용한 면역 증진활성을 비교하였다. 간장 유래 다당, CSP-0 및 KTSP-0는 RAW 264.7 세포주에 대해 모든 농도에서 세포 독성을 나타내지 않았다. 또한 재래식 간장 유래 다당인 KTSP-0는 상업용 간장 유래 다당 CSP-0보다 대식세포에 의한 NO 및 ROS의 생산을 농도의 존적으로 증가시켰으며, KTSP-0를 $1,000{\mu}g/m{\ell}$ 처리하였을 시 가장 높은 생산능을 나타내었다. 간장 유래 다당의 RAW 264.7 세포로부터 면역반응에 중요한 cytokine인 IL-6와 TNF-${\alpha}$의 cytokine mRNA의 발현량과 해당 단백질의 생산을 각각 real-time PCR과 ELISA로 확인한 결과, CSP-0는 IL-6와 TNF-${\alpha}$ mRNA의 발현 및 생산에 유의적인 영향을 미치지 않았지만, KTSP-0는 농도의존적으로 IL-6와 TNF-${\alpha}$ mRNA 발현 및 생산을 증가시키는 것을 확인하였으며, $1,000{\mu}g/m{\ell}$ 처리 시 최대 활성을 보였다. 한편, 대식세포의 탐식작용에서 중요한 역할을 하는 Fc 수용체의 발현 증가를 RT-PCR로 확인한 결과, CSP-0는 FcR I, II의 발현에 모두 영향을 미치지 않았지만, KTSP-0는 FcR I의 발현을 선택적으로 증가시킴이 확인되어 항원에 결합한 IgG와 강하게 결합하여 탐식작용을 촉진시킬 것으로 예상되었다. 본 연구를 통해 상업용 간장에서 분리한 다당, CSP-0보다 우리나라 전통 재래식 간장에서 분리한 다당, KTSP-0가 대식세포를 활성화하여 높은 면역 증진 효과를 나타내는 것으로 결론 지을 수 있었다.

Effects of Replacing Soybean Meal with Fermented Rapeseed Meal on Performance, Serum Biochemical Variables and Intestinal Morphology of Broilers

  • Xu, F.Z.;Zeng, X.G.;Ding, X.L.
    • Asian-Australasian Journal of Animal Sciences
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    • 제25권12호
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    • pp.1734-1741
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    • 2012
  • This trial was performed to study the effects of replacing soybean meal (SBM) with fermented rapeseed meal (RSM) on growth performance, serum biochemistry variable and intestinal morphology of broilers. A total of 640 d-old Arbor Acres broiler chicks were randomly allocated to 4 dietary treatments, 4 pens per treatment and 40 birds per pen for a 6-wk feeding trial. In the four treatment groups, fermented RSM replaced soybean meal at 0, 5, 10, and 15%, respectively. On 21 d and 42 d, two birds from each pen were randomly selected and slaughtered. Blood samples and sections of duodenum, jejunum, and ileum were collected for measurement of serum biochemical variables and intestinal morphology, respectively. Results showed that body weight gain (BWG) and feed conversion (FC) were significantly (p<0.01) poorer for birds fed the 15% fermented RSM diet than those fed with 0, 5 and 10% fermented RSM diets during all periods. Compared with 0 and 5% fermented RSM groups, IgG content in the serum of birds in 10 and 15% fermented RSM groups was improved (p<0.01) urea nitrogen content of serum was reduced (p<0.01) during both growing and finishing periods. However, IgM, phosphorus and calcium levels increased (p<0.05) only during the growing period. Increased (p<0.05) villus height was observed in the duodenum and jejunum of broilers fed the diet with 10% fermented RSM. In addition, villus height to crypt depth ratio in the jejunum was significantly higher (p<0.01) for birds fed the diet with 10% fermented RSM than for those fed diets with 0, 5 and 15% fermented RSM. The present results suggest that RSM fermented with Lactobacillus fermentum and Bacillus subtilis is a promising alternative protein source and that it could be safely used replace up to 10% SBM in broiler diets.

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.

Destabilization of TNF-α mRNA by Rapamycin

  • Park, Jong-Woo;Jeon, Ye-Ji;Lee, Jae-Cheol;Ahn, So-Ra;Ha, Shin-Won;Bang, So-Young;Park, Eun-Kyung;Yi, Sang-Ah;Lee, Min-Gyu;Han, Jeung-Whan
    • Biomolecules & Therapeutics
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    • 제20권1호
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    • pp.43-49
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    • 2012
  • Stimulation of mast cells through the high affinity IgE receptor (Fc${\varepsilon}$RI) induces degranulation, lipid mediator release, and cytokine secretion leading to allergic reactions. Although various signaling pathways have been characterized to be involved in the Fc${\varepsilon}$RI-mediated responses, little is known about the precious mechanism for the expression of tumor necrosis factor-${\alpha}$ (TNF-${\alpha}$) in mast cells. Here, we report that rapamycin, a specific inhibitor of mammalian target of rapamycin (mTOR), reduces the expression of TNF-${\alpha}$ in rat basophilic leukemia (RBL-2H3) cells. IgE or specific antigen stimulation of RBL-2H3 cells increases the expression of TNF-${\alpha}$ and activates various signaling molecules including S6K1, Akt and p38 MAPK. Rapamycin specifically inhibits antigeninduced TNF-${\alpha}$ mRNA level, while other kinase inhibitors have no effect on TNF-${\alpha}$ mRNA level. These data indicate that mTOR signaling pathway is the main regulation mechanism for antigen-induced TNF-${\alpha}$ expression. TNF-${\alpha}$ mRNA stability analysis using reporter construct containing TNF-${\alpha}$ adenylate/uridylate-rich elements (AREs) shows that rapamycin destabilizes TNF-${\alpha}$ mRNA via regulating the AU-rich element of TNF-${\alpha}$ mRNA. The antigen-induced activation of S6K1 is inhibited by specific kinase inhibitors including mTOR, PI3K, PKC and $Ca^{2+}$chelator inhibitor, while TNF-${\alpha}$ mRNA level is reduced only by rapamycin treatment. These data suggest that the effects of rapamycin on the expression of TNF-${\alpha}$ mRNA are not mediated by S6K1 but regulated by mTOR. Taken together, our results reveal that mTOR signaling pathway is a novel regulation mechanism for antigen-induced TNF-${\alpha}$ expression in RBL-2H3 cells.

Immune-triggering effect of the foodborne parasite Kudoa septempunctata through the C-type lectin Mincle in HT29 cells

  • Shin, Ji-Hun;Yang, Jung-Pyo;Seo, Seung-Hwan;Kim, Sang-Gyun;Kim, Eun-Min;Ham, Do-Won;Shin, Eun-Hee
    • BMB Reports
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    • 제53권9호
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    • pp.478-483
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    • 2020
  • Kudoa septempunctata is a myxozoan parasite that causes food poisoning in individuals consuming olive flounder. The present study aimed to investigate the currently insufficiently elucidated early molecular mechanisms of inflammatory responses in the intestine owing to parasite ingestion. After Kudoa spores were isolated from olive flounder, HT29 cells were exposed to spores identified to be alive using SYTO-9 and propidium iodide staining or to antigens of Kudoa spores (KsAg). IL-1β, IL-8, TNF-α and NFKB1 expression and NF-κB activation were assessed using real-time PCR, cytokine array and western blotting. The immunofluorescence of FITC-conjugated lectins, results of ligand binding assays using Mincle-Fc and IgG-Fc, CLEC4E expressions in response to KsAg stimulation, and Mincle-dependent NF-κB activation were assessed to clarify the early immune-triggering mechanism. Inflammatory cytokines (IL-1β, GM-CSF and TNF-α), chemokines (IL-8, CCL2, CCL5 and CXCL1) and NF-κB activation (pNF-κB/NF-κB) in HT29 cells increased following stimulation by KsAg. The immunofluorescence results of spores and lectins (concanavalin A and wheat germ agglutinin) suggested the importance of Mincle in molecular recognition between Kudoa spores and intestinal cells. Practically, data for Mincle-Fc and KsAg binding affinity, CLEC4E mRNA expression, Mincle immunofluorescence staining and hMincle-dependent NF-κB activation demonstrated the involvement of Mincle in the early immune-triggering mechanism. The present study newly elucidated that the molecular recognition and immune-triggering mechanism of K. septempunctata are associated with Mincle on human intestinal epithelial cells.