• Title/Summary/Keyword: iap gene

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Production of Monoclonal Antibody for Listeria spp. p60 Protein Based on iap Gene (Listeria spp. p60 단백질에 대한 단일클론항체의 생산)

  • 임희영;오연경;김종수;이영순;임윤규;윤병수
    • Journal of Food Hygiene and Safety
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    • v.18 no.1
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    • pp.25-29
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    • 2003
  • The p60 protein of Listeria spp. is a Listeria-Genus-specific, major extra-cellular protein, which is used as an indicator protein for the detection of these bacteria from contaminated foods. In this study, p60 protein were recombinantly produced in E. coli and were purified using amylose resin based column chromatography. Purified recombinant-p6O was used to generate monoclonal antibody against native p60. Antibody from hybridoma cell line, 1H4, specificically reacted with native p60 protein isolated from pathogenic Listeria spp. such as L. monocytogenes, L. ivanovii, L. welshimeri II, but did not or relatively weakly reacted with non-pathogenic Listeia species, L. innocua or other bacterial proteins. Antibody from 1H4 was produced using ascites fluid method and it may be useful to develop the Listeria-detection kits based on immunological method.

Ginsenoside Rg3, a promising agent for NSCLC patients in the pandemic: a large-scale data mining and systemic biological analysis

  • Zhenjie Zhuang;Qianying Chen;Xiaoying Zhong;Huiqi Chen;Runjia Yu;Ying Tang
    • Journal of Ginseng Research
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    • v.47 no.2
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    • pp.291-301
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    • 2023
  • Introduction: Non-small cell lung cancer (NSCLC) patients are particularly vulnerable to the Coronavirus Disease-2019 (COVID-19). Currently, no anti-NSCLC/COVID-19 treatment options are available. As ginsenoside Rg3 is beneficial to NSCLC patients and has been identified as an entry inhibitor of the virus, this study aims to explore underlying pharmacological mechanisms of ginsenoside Rg3 for the treatment of NSCLC patients with COVID-19. Methods: Based on a large-scale data mining and systemic biological analysis, this study investigated target genes, biological processes, pharmacological mechanisms, and underlying immune implications of ginsenoside Rg3 for NSCLC patients with COVID-19. Results: An important gene set containing 26 target genes was built. Target genes with significant prognostic value were identified, including baculoviral IAP repeat containing 5 (BIRC5), carbonic anhydrase 9 (CA9), endothelin receptor type B (EDNRB), glucagon receptor (GCGR), interleukin 2 (IL2), peptidyl arginine deiminase 4 (PADI4), and solute carrier organic anion transporter family member 1B1 (SLCO1B1). The expression of target genes was significantly correlated with the infiltration level of macrophages, eosinophils, natural killer cells, and T lymphocytes. Ginsenoside Rg3 may benefit NSCLC patients with COVID-19 by regulating signaling pathways primarily involved in anti-inflammation, immunomodulation, cell cycle, cell fate, carcinogenesis, and hemodynamics. Conclusions: This study provided a comprehensive strategy for drug discovery in NSCLC and COVID-19 based on systemic biology approaches. Ginsenoside Rg3 may be a prospective drug for NSCLC patients with COVID-19. Future studies are needed to determine the value of ginsenoside Rg3 for NSCLC patients with COVID-19.

Cyanate Induces Apoptosis of Rat Glioma Cell Line (시안산에 의한 신경아교종세포의 자멸사)

  • Choi, Hye-Jung;Lee, Sang-Hee
    • Journal of Life Science
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    • v.27 no.3
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    • pp.267-274
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    • 2017
  • The patient with end-stage renal disease show several nervous complications. The factors contributing to the nervous complications are still incompletely characterized. Cyanate, known as one of the uremic toxins, is derived spontaneously from urea. To investigate the mechanism of cyanate-induced effect on C6 glioma cells, the glioma cells were treated with 0, 1, 5, 10, 20 and 40 mM cyanate. There was a dose-dependent decrease in cell viability and the decreased number of cell was observed in glioma cells by treatment with cyanate. Western blot showed the down- regulation of procaspase-3, which means up-regulation of caspase-3, and the up-regulation of caspase-8, but the down-regulation by cyanate. In addition, cDNA microarray showed 934 down-regulated genes and 165 up-regulated genes on 1,099 genes in cyanate treated group. Treatment with cyanate led to 16 down-regulated genes and 6 up-regulated genes on apoptosis category, and especially heat shock 70 kD protein 1A gene on the category of apoptosis was significantly up-regulated. These results suggest that cyanate can induce apoptosis through caspase-8 and caspase-3 in glioma cells and decrease of gene expression including apoptosis category in glioma cells. These effects of cyanate may play a role in the nervous complications of patient with end-stage renal disease.

Antitumor Activity of Methylene Chloride Fraction from Angelica Keiskei Through Induction of Apoptosis in Human Prostate Carcinoma DU145 Cells (전립선 암세포주 DU145의 세포고사 유도를 통한 신선초 (Angelica keiskei) 메틸렌 클로라이드 추출물의 항암효과)

  • Kang, Yoon-Mook;Kim, Sung-Moo;Kim, Hyun-Jung;Park, Kyung-Ran;Shim, Bum-Sang;Kim, Sung-Hoon;Choi, Seung-Hoon;Ahn, Kyoo-Seok;Ahn, Kwang-Seok
    • Journal of Korean Traditional Oncology
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    • v.15 no.1
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    • pp.19-27
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    • 2010
  • The roots and leaves of Angelica keiskei (AK) have been used for the treatment of various diseases including coronary heartdisease, hypertension, and cancer in the Korean folk medicine. However, the mechanism by which methylenechloride fraction (MF) from AK exerts anti-tumorigenic activity in human prostate cancer cells has not been fully understood. In the present study, we report the MF exerted the highest cytotoxicity against prostate cancer DU145 cells compared with other fractions. Especially, MF caused the accumulation of sub-G1 DNA contents of cell cycle and increased annexin V-positive apoptotic bodies and DNA fragmentation. MF down-regulated several proliferative (Cyclin D1) and anti-apoptotic (Bcl-xl, Bcl-2, IAP-1/2, and survivin)gene products in these cells. Hence, MF induced apoptosis through the caspase-3 activation in DU145 cells. We further confirmed that caspase-3 plays an importance role in MF-induced apoptosis in DU145 cells by using caspase-3 inhibitor. Additionally, we observed that MF potentiated Dox-induced apoptosis in DU145 cells. Taken together, our data demonstrate the evidence that MF induces apoptosis depend on caspase-3 activation of and overcomes resistance to chemotherapy in human prostate cancer cells.

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