• Title/Summary/Keyword: Vero-E6 cells

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Electron Microscopic Study on the Replcation of Hantaan Virus in Vero-E6 Cells (Vero-E6 세포에서 한탄바이러스의 증식에 관한 전자현미경적 연구)

  • Park, Kyung-Hee;Seong, In-Wha
    • The Journal of Korean Society of Virology
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    • v.29 no.4
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    • pp.201-209
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    • 1999
  • Results of the studies on the morphologic and molecular biologic characteristics of Hantaan virus (HTNV), one of the etiologic agents of Hemorrhagic fever with renal syndrome (HFRS), revealed that HTNV was a member of Family Bunyaviridae and its RNA divided into three segments. And the nucleotide sequences of these segments also were known and the differences in nucleotide sequences of HTNV from other members of genus Hantavirus were clearly evaluated. But the morphorgenesis, pathogenesis of HFRS and the replication time had not been clearly determined. In this study, to estimate the replication time of HTNV in Vero E-6 cells, Vero cells were infected with HTNV 76/118 strain, and cells were harvested from two hours post-infection up to 24 hours at two hours-intervals. Harvested cells were treated with ordinary techniques for electron microscopy and immune-electron microscopy. And then thin sections were observed under transmission electron microscope. HTNV particles were not found in the cytoplasm and in the extracellular space between $2{\sim}8$ hours after inoculation of virus, but virus particles were observed in extracellular space near the cell membrane of Vero-E6 cells 10 hours after infection. In immune electron microscopy, mature HTNV particles in extracellular spaces and immature virus labelled with gold particles in the cytoplasm of Vero E-6 cell 10 hours after infection of HTNV could be seen. This results suggest that the replication time of HTNV might be about 10 hours.

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Attenuated Expression of Interferon-induced Protein Kinase PKR in a Simian Cell Devoid of Type I Interferons

  • Park, Se-Hoon;Choi, Jaydo;Kang, Ju-Il;Choi, Sang-Yun;Hwang, Soon-Bong;Kim, Jungsuh P.;Ahn, Byung-Yoon
    • Molecules and Cells
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    • v.21 no.1
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    • pp.21-28
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    • 2006
  • The interferon-induced, double-stranded RNA (dsRNA)-dependent protein kinase PKR plays a key role in interferon-mediated host defense against viral infection, and is implicated in cellular transformation and apoptosis. We have isolated a cDNA of simian PKR encoding a product with 83% amino acid identity to the human homolog and showed that PKR expression is significantly attenuated in the Vero E6 African green monkey kidney cells devoid of type I interferon genes. A variant form of PKR lacking the exon 12 in the kinase domain is produced in these cells, presumably from an alternatively spliced transcript. Unlike wild type PKR, the variant protein named PKR-${\Delta}E12$ is incapable of auto-phosphorylation and phosphorylation of eIF2-${\alpha}$, indicating that the kinase sub-domains III and IV embedded in exon 12 are indispensable for catalytic function. PKR-${\Delta}E12$ had no dominant negative effect but was weakly phosphorylated in trans by wild type PKR.

Defining the N-Linked Glycosylation Site of Hantaan Virus Envelope Glycoproteins Essential for Cell Fusion

  • Zheng, Feng;Ma, Lixian;Shao, Lihua;Wang, Gang;Chen, Fengzhe;Zhang, Ying;Yang, Song
    • Journal of Microbiology
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    • v.45 no.1
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    • pp.41-47
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    • 2007
  • The Hantaan virus (HTNV) is an enveloped virus that is capable of inducing low pH-dependent cell fusion. We molecularly cloned the viral glycoprotein (GP) and nucleocapsid (NP) cDNA of HTNV and expressed them in Vero E6 cells under the control of a CMV promoter. The viral gene expression was assessed using an indirect immunofluorescence assay and immunoprecipitation. The transfected Vero E6 cells expressing GPs, but not those expressing NP, fused and formed a syncytium following exposure to a low pH. Monoclonal antibodies (MAbs) against envelope GPs inhibited cell fusion, whereas MAbs against NP did not. We also investigated the N-linked glycosylation of HTNV GPs and its role in cell fusion. The envelope GPs of HTNV are modified by N-linked glycosylation at five sites: four sites on G1 (N134, N235, N347, and N399) and one site on G2 (N928). Site-directed mutagenesis was used to construct eight GP gene mutants, including five single N-glycosylation site mutants and three double-site mutants, which were then expressed in Vero E6 cells. The oligosaccharide chain on residue N928 of G2 was found to be crucial for cell fusion after exposure to a low pH. These results suggest that G2 is likely to be the fusion protein of HTNV.

In Vitro Antineoplastic Effects of Chitosan Hydrolysates on Various Tumor Cell Lines (키토산 가수분해물의 In Vitro 항종양성)

  • Park, Heon-Kuk
    • The Korean Journal of Food And Nutrition
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    • v.22 no.4
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    • pp.639-643
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    • 2009
  • In this study, the antineoplastic effects of chitosan hydrolysates were assessed. The chitosan hydrolysates showed no cytotoxicity in in vitro trials using the normal cell line, Vero E6(Africa green monkey kidney cells). The $IC_{50}$ value of the chitosan hydrolysates on Vero E6 was 1,107.95 ${\mu}g/m{\ell}$. The hydrolysates exhibited in vitro antineoplastic activity in five human tumor (lung carcinoma, bladder carcinoma, colon carcinoma, stomach carcinoma, breast carcinoma) cell lines. The $IC_{50}$ values of the hydrolysates on A549, J82, SNU-C4, SNU-1, and ZR75-1 cells were 421.06, 417.99, 445.54, 380.65 and 460.49 ${\mu}g/m{\ell}$, respectively.

Generation and characterization of a monoclonal antibody against MERS-CoV targeting the spike protein using a synthetic peptide epitope-CpG-DNA-liposome complex

  • Park, Byoung Kwon;Maharjan, Sony;Lee, Su In;Kim, Jinsoo;Bae, Joon-Yong;Park, Man-Seong;Kwon, Hyung-Joo
    • BMB Reports
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    • v.52 no.6
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    • pp.397-402
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    • 2019
  • Middle East respiratory syndrome coronavirus (MERS-CoV) uses the spike (S) glycoprotein to recognize and enter target cells. In this study, we selected two epitope peptide sequences within the receptor binding domain (RBD) of the MERS-CoV S protein. We used a complex consisting of the epitope peptide of the MERS-CoV S protein and CpG-DNA encapsulated in liposome complex to immunize mice, and produced the monoclonal antibodies 506-2G10G5 and 492-1G10E4E2. The western blotting data showed that both monoclonal antibodies detected the S protein and immunoprecipitated the native form of the S protein. Indirect immunofluorescence and confocal analysis suggested strong reactivity of the antibodies towards the S protein of MERS-CoV virus infected Vero cells. Furthermore, the 506-2G10G5 monoclonal antibody significantly reduced plaque formation in MERS-CoV infected Vero cells compared to normal mouse IgG and 492-1G10E4E2. Thus, we successfully produced a monoclonal antibody directed against the RBD domain of the S protein which could be used in the development of diagnostics and therapeutic applications in the future.

Cytotoxicity Assessment of Shellfishes from Domestic Fish Market (국내에서 시판중인 조개류의 세포독성 평가)

  • Kim, Young-Sang;Jayawardena, Thilina U.;An, Lu Yu;Je, Jun-Geon;Nagahawatta, D.P.;Liyanage, N.M.;Jeon, You-Jin
    • Journal of Marine Bioscience and Biotechnology
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    • v.12 no.2
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    • pp.108-114
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    • 2020
  • A variety of shellfish species sold for human consumption are available for purchase in the domestic fish market. The microalgae families inhabit the ocean, where planktons supply the main nutritional resource for the growth of shellfish. Some phytoplanktons produce toxic compounds that are accumulated in shellfish and ultimately cause toxicity in humans. This article reports the cytotoxicity of commercially available shellfish species. Accordingly, hot water extract (HWE) and an aqueous fraction of 50% methanol extract (MEE-AF) showed no significant cytotoxicity on the two cell lines (i.e., HL-60 and Vero cell lines), but 50% methanol extract (MEE) in 3, 6 samples showed 50% cytotoxic effects on HL-60 cells, and 1, 4 samples showed 40%, 20% cytotoxic effects on Vero cells, respectively. In addition, their consequential dichloromethane fractions (MEE-DF) exhibited significant toxicities at the highest concentration (1,000 ㎍/ml) on HL-60 and Vero cells. Since the shellfish samples showed cytotoxicity in the dichloromethane fraction, it is possible that the dichloromethane fraction contains marine toxins. Further research will be needed to identify the toxic components from each sample.

Relationship between Gb3 Expression and Cytotoxicity of Shiga-like Toxin I (Shiga-like Toxin I의 세포독성과 수용체 Gb3 발현과의 관계)

  • Lim, Suk-Hwan;Kim, Gi-Young;Kim, Hyung-Chun;Kim, Young-Hee;Son, Yong-Hae;Oh, Yang-Hyo;Park, Yeong-Min
    • Clinical and Experimental Pediatrics
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    • v.46 no.2
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    • pp.143-153
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    • 2003
  • Purpose : Infection with Shiga-like toxin (SLT)-producing Escherichia coli, an emerging human pathogen found particularly in young children under 5 years of age, causes a spectrum of illnesses with high morbidity and mortality, ranging from diarrhea to hemorrhagic colitis and hemolytic uremic syndrome. Host mediators play an important role in the pathogenesis of SLT-I toxicity. The experiments described here were designed to investigate the effect of SLT-I on TNF-${\alpha}$ production and to understand the effect of TNF-${\alpha}$ on GB3 expression. We also further examine the relationship between the Gb3 level and the differential susceptibility of cells to the cytotoxic action of SLT-I. Methods : The effect of purified SLT-1 from E. coli O157 : H7 (ATCC 43890) on tumor necrosis factor-${\alpha}$ (TNF-${\alpha}$) production in Raw264.7 cells was investigated. Many mediators regulate endothelial cell membrane expression of the glycolipid globotriaosyleramide (Gb3), which serves as the toxin receptor, suggesting that the host response to the toxin or other bacterial products may contribute to pathogenesis by regulating target cell sensitivity to the toxins. Therefore, the relationships between Gb3 expression and cytotoxicity against SLT-I on three types of cells were evaluated. Results : Detectable levels of TNF-${\alpha}$ were produced as early as six hours after induction and continued to increase during 48 hours by SLT-I. It was also found that Vero cells and dendritic cells (DC2.4 cells) expressed high levels of Gb3, 83% and 68%, respectively, and that Raw264.7 cells had a low level of Gb3 (29%) and appeared refractory to cytotoxicity against SLT-I. Vero cells and DC2.4 cells expressing high levels of Gb3 were highly susceptible to SLT-I. Furthermore, macrophages showed a resistance to SLT-I cytotoxicity, despite the fact that Gb3 expression was enhanced. Conclusion : These results strongly suggest that the expression of Gb3 is necessary but not sufficient to confer sensitivity of macrophages to SLT-I and further underpin the important role of SLT-I and its Gb3 receptors in the pathogenesis of E. coli O157 infection.

Regulation of Gb3 Expression on Dendritic Cells (수지상세포에 있어서 베로독소 수용체의 발현조절)

  • Lim, Suk-Hwan;Kim, Gi-Young;Kim, Hyung-Chun;Kim, Young-Hee;Son, Yong-Hae;Oh, Yang-Hyo;Park, Yeong-Min
    • Journal of Life Science
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    • v.17 no.4 s.84
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    • pp.482-492
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    • 2007
  • Infection with Shiga-like toxin (SLT)-producing Escherichia coli causes a spectrum of illnesses with high morbidity and mortality. Host mediators play an important role in the pathogenesis of SLT-I toxicity. We here investigated the effect of SLT-I on tumor necrosis $factor-{\alpha}\;(TNF-{\alpha})$ production, effect of $TNF-{\alpha}$ on glycolipid globotriaosyleramide (Gb3) expression, and relationship between Gb3 level and differential susceptibility of cells to SLT-I. In this study, we observed that detectable levels of $TNF-{\alpha}$ are produced 6 hrs after induction and continued to increase during 48 hrs by SLT-I. It was also found that Vero cells and dendritic cells expressed high levels of Gb3, 83% and 68%, respectively, and that macrophages had a low level of Gb3 (29%) and showed refractory to cytotoxicity against SLT-I. Vero cells and dendritic cells expressing high levels of Gb3 were highly susceptible to SLT-I. furthermore, macrophages showed a resistance to SLT-I cytotoxicity, despite the fact that Gb3 expression was enhanced. These results suggest that the expression of Gb3 is necessary, but not sufficient to confer sensitivity of macrophages to SLT-I and further underpin the important role of SLT-I and its receptor, Gb3, in the pathogenesis of E. coli O157 infection.

Abiraterone Acetate Attenuates SARS-CoV-2 Replication by Interfering with the Structural Nucleocapsid Protein

  • Kim, Jinsoo;Hwang, Seok Young;Kim, Dongbum;Kim, Minyoung;Baek, Kyeongbin;Kang, Mijeong;An, Seungchan;Gong, Junpyo;Park, Sangkyu;Kandeel, Mahmoud;Lee, Younghee;Noh, Minsoo;Kwon, Hyung-Joo
    • Biomolecules & Therapeutics
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    • v.30 no.5
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    • pp.427-434
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    • 2022
  • The drug repurposing strategy has been applied to the development of emergency COVID-19 therapeutic medicines. Current drug repurposing approaches have been directed against RNA polymerases and viral proteases. Recently, we found that the inhibition of the interaction between the SARS-CoV-2 structural nucleocapsid (N) and spike (S) proteins decreased viral replication. In this study, drug repurposing candidates were screened by in silico molecular docking simulation with the SARS-CoV-2 structural N protein. In the ChEMBL database, 1994 FDA-approved drugs were selected for the in silico virtual screening against the N terminal domain (NTD) of the SARS-CoV-2 N protein. The tyrosine 109 residue in the NTD of the N protein was used as the center of the ligand binding grid for the docking simulation. In plaque forming assays performed with SARS-CoV-2 infected Vero E6 cells, atovaquone, abiraterone acetate, and digoxin exhibited a tendency to reduce the size of the viral plagues without affecting the plaque numbers. Abiraterone acetate significantly decreased the accumulation of viral particles in the cell culture supernatants in a concentration-dependent manner. In addition, abiraterone acetate significantly decreased the production of N protein and S protein in the SARS-CoV-2-infected Vero E6 cells. In conclusion, abiraterone acetate has therapeutic potential to inhibit the viral replication of SARS-CoV-2.

Development of a multiplex-PCR for the rapid detection of Escherichia coli O157:H7 from raw beef (쇠고기중 Escherichia coli O157:H7 신속검출을 위한 multiplex - PCR 기법 개발)

  • Jung, Suk-chan;Jung, Byeong-yeal;Yoon, Jang-won;Cho, Yun-sang;Kim, Jong-yeom;Park, Yong-ho
    • Korean Journal of Veterinary Research
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    • v.38 no.1
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    • pp.173-181
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    • 1998
  • Esherichia coli O157 : H7의 slt I, slt II, uid A 및 eaeA 4종 유전자를 동시에 검출하기 위한 multiplex PCR 기법을 확립하고 쇠고기중 직접 E coli O157 : H7 검출시험을 실시하였다. 4 set의 primers를 이용한 multiplex PCR 기법으로 31종의 장내세균에 대한 특이성을 조사한 결과 E coli O157 : H7 에서 1,087bp (eae A), 584bp (slt II), 348bp (slt I) 또는 252bp (uid A)크기의 DNA를 동시에 특이적으로 검출할 수 있었다. E coli O157 : H7 15주는 모두 uid A 및 eae A 유전자가 동시에 검출되었고, 다른 장내세균에서는 검출되지 않았다. slt I 또는 slt II 유전자를 가지고 있는 E coli 표준균주 24종을 이용하여 multiplex PCR 기법과 Vero cell cytotoxicity assay을 비교검사한 결과 베로톡신 산생능과 PCR법의 결과는 일치하였다. mutiplex PCR 기법의 쇠고기중 검출한계는 modified EC(mEC)에서 증균없이는 E coli O157 : H7균 $10^4cells/g$ 이상에서 검출이 가능하였으나 mEC에 1차 증균후 modified TSB 증균하였을 경우에는 10cells/g이하까지도 검출이 가능하였다. 개발된 multiplex PCR 기법을 쇠고기 40종에 직접 적용한 결과 E coli O157 : H7은 검출되지 않았으나 slt I 및 slt II유전자를 가지고 있는 E coli 4종이 검출되었으며, 이들의 혈청형은 O6, O112, O115 및 O139 였다. 이 연구에서 개발된 multiplex PCR은 쇠고기중 E coli O157 : H7을 신속하고 특이적으로 검출하는데 사용할 수 있을 것으로 사료된다.

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