• 제목/요약/키워드: B-1 cell

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TGF-$\beta$3는 마우스 IgA, IgG2b 항체의 선택적 유도작용 (TGF-$\beta$3 Selectively Induces Mouse IgA and IgG2b isotype)

  • 이은경;박석래;전계택;김평현;이세원;최의열
    • 미생물학회지
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    • 제35권2호
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    • pp.164-168
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    • 1999
  • TGF-$\beta$1은 LPS 로 자극시킨 마우스의 spleen B cell 의 IgA와 IgG2b의 항체 합성을 선택적으로 증가시킨다고 알려져있다. 본 연구에서는 TGF-$\beta$1과 80%의 아미노산을 공유하는 TGF-$\beta$3가 마우스 spleen B cell 과 mesenteric lymph node B cell의 항체 합성에 미치는 영향을 IL-5와 함께 조사하였다. LPS로 활성화된 spleen B cell 에 TGF-$\beta$3만을 처리한 조건에서 IgA 항체합성이 약간 증가하였고, IL-5와 함께 넣어 준 배양조건에서는 IgA 항체가 현격히 증가하였다 IgG2b 합성의 증가는 TGF-$\beta$3 자극만으로도 가능하였고 IgA 와는 달리 IL-5 의 첨가 효과는 관찰되지 않았다. 한편, TGF-$\beta$3는 IgM 과 IgG1 항체 합성을 감소시켰고, IL-5와 함께 존재한 경우에도 의미있는 합성 증가는 볼 수 없었다. ELISPOT assay로 IgA 합성 세포수의 변화를 조사해본 결과, TGF-$\beta$3 단독으로도 IgA 합성세포수를 증가시켰으며, 이때 IL-5가 존재하였을 때 세포수가 조금 더 증가하였다. 이상의 결과는 TGF-$\beta$3가 약간의 차이는 있지만 TGF-$\beta$1과 유사하게 항체합성 패턴에 영향을 미침을 보여준다. 마지막으로, TGF-$\beta$3과 IL-5에 대한 MLN B cell 의 IgA와 IgG2b 항체합성 패턴은 spleen B cell 과 비슷하였다. 그러나 MLN B cell 의 IgG1 항체 합성은 spleen B cell과는 달리 TGF-$\beta$3에 의해 증가하였다. 본 실험의 결과는 전반적으로 TGF-$\beta$3가 TGF-$\beta$1과 비슷한 정도로 마우스 B cell의 항체합성에 영향을 미침을 보여준다. 그렇지만, 생체 내에서TGF-$\beta$3의 발현조절이 TGF-$\beta$1과 다를 것으로 예상됨으로 과연 TGF-$\beta$3가 B cell 분화에서 중요한 조절인자로 작용할지는 좀 더 연구되어야 할 것이다.

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Btg-1 Induction by Oxidative Stress

  • Cho, Il-Je;Lee, Song-Jin;Kim, Sang-Geon
    • 대한약학회:학술대회논문집
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    • 대한약학회 2003년도 Proceedings of the Convention of the Pharmaceutical Society of Korea Vol.1
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    • pp.151.1-151.1
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    • 2003
  • B cell translocation gene-1 (Btg-1), originally discovered from chromosomal translocation in chronic B-cell lymphocytic leukemia. belongs to the APRO family. Btg-1 exhibit antiproliferative function. being expressed during the $G_{0}/G_{1}$ transition phase of cell cycle. Btg-1 is fully expressed in quiescent and differentiated cells. while the protein expression decreases as the cell progresses through the cell cycle. (omitted)

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온청음(溫淸飮)이 인체 간암세포의 세포주기 G1 Arrest에 미치는 영향 (G1 Arrest of the Cell Cycle by Onchungeum in Human Hepatocarcinoma Cells)

  • 구인모;신흥묵
    • 동의생리병리학회지
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    • 제22권4호
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    • pp.821-828
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    • 2008
  • Onchungeum, a herbal formula, which has been used for treatment of anemia due to bleeding, discharging blood and skin disease. In the present study, it was examined the effects of extract of Onchungeum (OCE) on the growth of human hepatocarcinoma cell lines Hep3B (p53 null type) and HepG2 (p53 wild type) in order to investigate the anti-proliferative mechanism by OCE. Treatment of Hep3B and HepG2 cells to OCE resulted in the growth inhibition in a dose-dependent manner, however Hep3B cell line exhibited a relatively strong anti-proliferative activity to OEC. Flow cytometric analysis revealed that OCE treatment in Hep3B cells caused G1 phase arrest of the cell cycle, which was associated with various morphological changes in a dose-dependent fashion. RT-PCR and immunoblotting data revealed that treatment of OCE caused the down-regulation of cyclin D1 expression, however the levels of cyclin E expression were not changed by OCE. The G1 arrest of the cell cycle was also associated with the induction of Cdk inhibitor p27 by OCE. Because the p53 gene is null in Hep3B cells, it is most likely that the induction of p21 is mediated through a p53-independent pathway. Moreover, p27 detected in anti-Cdk4 and anti-Cdk2 immunoprecipitates from the OCE-treated cells, suggesting that OCE-induced p27 protein blocks Cdk kinase activities by directing binding to the cyclin/Cdk complexes. Furthermore, OCE treatment potently suppresses the phosphorylation of retinoblastoma proteins and the levels of the transcription factor E2F-1 expression. Taken together, these results indicated that the growth inhibitory effect of OCE in Hep3B hepatoma cells was associated with the induction of G1 arrest of the cell cycle through regulation of several major growth regulatory gene products.

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.

시험관내에서 홍화의 물 추출물이 T 및 B 림프구의 활성에 미치는 영향 (Effect of Water Extract of Carthamus tinctorious L. on In Vitro Activity of T and B Lymphocytes)

  • 최윤화;도정수;남상윤
    • 생약학회지
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    • 제35권4호통권139호
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    • pp.330-337
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    • 2004
  • Based on the traditional application of Carthamus tinctorious L. (CF) as a component of Korean medicinal decoctions, in the present study, we investigated in vitro an immunomodulatory activity of water extract of CF(WECF). Water extract of CF significantly increased the in vitro proliferative responses of spleen cells (SPC). However, addition of WECF during anti-CD3 activation resulted in a significant decrease in SPC proliferation. Flow cytometric analysis showed that WECF addition chanced T and B cell frequencies in anti-CD3-activated spleen cell populations. Using purified cells, it was revealed that WECF is mitogenic to B cells but rather inhibitory to T cell Proliferation. Upon anti-CD3 stimulation, high concentration (1 mg/ml) of WECF significantly inhibited T cell proliferation until day 2 of stimulation. At day 3, anti-CD3-activated cells exposed to WECF recovered their proliferation to the level comparable to control. Although B cell proliferation was also inhibited in proliferation at day 1, it recovered sooner and then was rather augmented by WECF at day 3. These data indicate that WECF down-regulates lymphocyte proliferation at early phase of activation but T cells are more vulnerable than B cells to WECF, However, CD4+ and CD8+ T cells did not differ in WECF-mediated immunotoxicity. Data of propidium iodide (PI) staining showed that WECF accelerates activated T cell, but not B cell, apoptosis and WECF concurrently inhibited cytokine production of activated T cells. Taken together, WECF exhibits B cell mitogenic activity and differential toxicity more pronounced to T cells, suggesting a possible in vivo application of WECF for specific control of T cells without alteration of B cell activity.

TrkB Promotes Breast Cancer Metastasis via Suppression of Runx3 and Keap1 Expression

  • Kim, Min Soo;Lee, Won Sung;Jin, Wook
    • Molecules and Cells
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    • 제39권3호
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    • pp.258-265
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    • 2016
  • In metastatic breast cancer, the acquisition of malignant traits has been associated with the increased rate of cell growth and division, mobility, resistance to chemotherapy, and invasiveness. While screening for the key regulators of cancer metastasis, we observed that neurotrophin receptor TrkB is frequently overexpressed in breast cancer patients and breast cancer cell lines. Additionally, we demonstrate that TrkB expression and clinical breast tumor pathological phenotypes show significant correlation. Moreover, TrkB expression was significantly upregulated in basal-like, claudin-low, and metaplastic breast cancers from a published microarray database and in patients with triple-negative breast cancer, which is associated with a higher risk of invasive recurrence. Interestingly, we identified a new TrkB-regulated functional network that is important for the tumorigenicity and metastasis of breast cancer. We demonstrated that TrkB plays a key role in regulation of the tumor suppressors Runx3 and Keap1. A markedly increased expression of Runx3 and Keap1 was observed upon knockdown of TrkB, treatment with a TrkB inhibitor, and in TrkB kinase dead mutants. Additionally, the inhibition of PI3K/AKT activation significantly induced Runx3 and Keap1 expression. Furthermore, we showed that TrkB enhances metastatic potential and induces proliferation. These observations suggest that TrkB plays a key role in tumorigenicity and metastasis of breast cancer cells through suppression of Runx3 or Keap1 and that it is a promising target for future intervention strategies for preventing tumor metastasis and cancer chemoprevention.

Regulatory T Cells in B Cell Follicles

  • Chang, Jae-Hoon;Chung, Yeonseok
    • IMMUNE NETWORK
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    • 제14권5호
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    • pp.227-236
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    • 2014
  • Understanding germinal center reactions is crucial not only for the design of effective vaccines against infectious agents and malignant cells but also for the development of therapeutic intervention for the treatment of antibody-mediated immune disorders. Recent advances in this field have revealed specialized subsets of T cells necessary for the control of B cell responses in the follicle. These cells include follicular regulatory T cells and Qa-1-restricted cluster of differentiation $(CD)8^+$ regulatory T cells. In this review, we discuss the current knowledge related to the role of regulatory T cells in the B cell follicle.

CD72 is a Negative Regulator of B Cell Responses to Nuclear Lupus Self-antigens and Development of Systemic Lupus Erythematosus

  • Takeshi Tsubata
    • IMMUNE NETWORK
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    • 제19권1호
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    • pp.1.1-1.13
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    • 2019
  • Systemic lupus erythematosus (SLE) is the prototypic systemic autoimmune disease characterized by production of autoantibodies to various nuclear antigens and overexpression of genes regulated by IFN-I called IFN signature. Genetic studies on SLE patients and mutational analyses of mouse models demonstrate crucial roles of nucleic acid (NA) sensors in development of SLE. Although NA sensors are involved in induction of antimicrobial immune responses by recognizing microbial NAs, recognition of self NAs by NA sensors induces production of autoantibodies to NAs in B cells and production of IFN-I in plasmacytoid dendritic cells. Among various NA sensors, the endosomal RNA sensor TLR7 plays an essential role in development of SLE at least in mouse models. CD72 is an inhibitory B cell co-receptor containing an immunoreceptor tyrosine-based inhibition motif (ITIM) in the cytoplasmic region and a C-type lectin like-domain (CTLD) in the extracellular region. CD72 is known to regulate development of SLE because CD72 polymorphisms associate with SLE in both human and mice and CD72-/- mice develop relatively severe lupus-like disease. CD72 specifically recognizes the RNA-containing endogenous TLR7 ligand Sm/RNP by its extracellular CTLD, and inhibits B cell responses to Sm/RNP by ITIM-mediated signal inhibition. These findings indicate that CD72 inhibits development of SLE by suppressing TLR7-dependent B cell response to self NAs. CD72 is thus involved in discrimination of self-NAs from microbial NAs by specifically suppressing autoimmune responses to self-NAs.

Increased Expression of FosB through Reactive Oxygen Species Accumulation Functions as Pro-Apoptotic Protein in Piperlongumine Treated MCF7 Breast Cancer Cells

  • Park, Jin-Ah;Na, Han-Heom;Jin, Hyeon-Ok;Kim, Keun-Cheol
    • Molecules and Cells
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    • 제42권12호
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    • pp.884-892
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    • 2019
  • Piperlongumine (PL), a natural alkaloid compound isolated from long pepper (Piper longum), can selectively kill cancer cells, but not normal cells, by accumulation of reactive oxygen species (ROS). The objective of this study was to investigate functional roles of expression of SETDB1 and FosB during PL treatment in MCF7 breast cancer cells. PL downregulates SETDB1 expression, and decreased SETDB1 expression enhanced caspase 9 dependent-PARP cleavage during PL-induced cell death. PL treatment generated ROS. ROS inhibitor NAC (N-acetyl cysteine) recovered SETDB1 expression decreased by PL. Decreased SETDB1 expression induced transcriptional activity of FosB during PL treatment. PARP cleavage and positive annexin V level were increased during PL treatment with FosB overexpression whereas PARP cleavage and positive annexin V level were decreased during PL treatment with siFosB transfection, implying that FosB might be a pro-apoptotic protein for induction of cell death in PL-treated MCF7 breast cancer cells. PL induced cell death in A549 lung cancer cells, but molecular changes involved in the induction of these cell deaths might be different. These results suggest that SETDB1 mediated FosB expression may induce cell death in PL-treated MCF7 breast cancer cells.

상동성 유전자재조합을 이용한 단백질분해효소 비생산 바실러스균주의 구축 (Construction of Pretense-defective Mutant of Bacillus subtilis by Homologous DNA Recombination)

  • Lee, Jin-Tae;An, Bong-Jeun
    • 한국식품저장유통학회지
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    • 제7권4호
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    • pp.414-417
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    • 2000
  • 단백질분해효소를 생산하지 않는 균주 B. subtilis MT-2의 염색체 DNA를 추출한 다음, B. subtilis AC819 균주에 상동성 유전자재조합을 이용하여 competent cell 형질전환을 시켰다. 얻어진 형질전환체를 B. subtilis HL-1이라고 명명하였으며, 그 표현형은 histidine 요구성, streptomycin 내성, tetracyclin 내성을 나타내면서 단백질 분해효소를 생산하지 않았다. 플라스미드 pUB110 을 이용한 B. subtilis HL-1의 protoplst 형질전환율은 B. subtilis MT-2의 형질전환율보다 높았다. 따라서 새로운 B. subtilis HL-1균주는 단백질분해효소의 형질전환과 내열성 protease 유전자클로닝에서 숙주로 사용하는데 유용하다.

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