• Title/Summary/Keyword: Zn-superoxide dismutase

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Transcriptional Activation of CuIZn Superoxide Dismutase And Catalase Genes by Panaxadiol Ginsenosides Extracted From Panax ginseng

  • Chang, Mun-Seog;Yoo, Hae-Yong;Rho, Hyune-Mo
    • Proceedings of the Ginseng society Conference
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    • 1998.06a
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    • pp.63-70
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    • 1998
  • Superoxide dismutase (SOD) and catalase constitute the first coordinated unit of defense against reactive oxygen species. Here, we examined the effect of ginseng saponins on the induction of SOD and catalase gene expression. To explore this possibility, the upstream regulatory promoter region of Cu/Zn superoxide dismutase (SODI) and catalase genes were linked to the chloramphenicol acetyl-transferase (CATI structural gene and introduced into human hepatoma HepG2 cells. Total saponin and panaxatriol did not activate the transcription of SODI and catalase genes but panaxadiol increased the transcription of these genes about 2-3 fold. Among the Panaxadiol ginsenosides, the Rb2 subtraction appeared to is a major induce of SODI and catalase genes. Using the deletion analyses and mobility shift assays, we showed that the 5051 gene was greatly activated by ginsenoside Rba through transcription factor AP2 binding sites and its induction. We also examined the effect of the content ratio of panaxadiol extracted from various compartment of ginseng on the transcription of 5031 gene. Saponin extract that contains 2.6-fold more PD than PT from the fine root Increased the SODI induction about 3-fold. These results suggest that the panaxadiol fraction and its ginsenosides could induce the antioxidant enzymes, which are important for maintaining cell viability by lowering level of oxygen radical generated from intracellular metabolism.

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Effect of Myricetin on mRNA Expression of Different Antioxidant Enzymes in B16F10 Murine Melanoma Cells (B16F10 Murine Melanoma Cell에서 Myricetin이 항산화효소의 m-RNA 발현에 미치는 영향)

  • Yu Ji Sun;Kim An Keun
    • YAKHAK HOEJI
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    • v.49 no.1
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    • pp.86-91
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    • 2005
  • Flavonoids are class of polyphenolic compounds widely distributed in the plant kingdom, which display a variety of biological activities, including antiviral, antithrombotic, antiinflammatory, antihistaminic, antioxidant and free-radica 1 scavenging abilities. The antioxidant enzyme (AOE) system plays an important role in the defense against oxidative stress insults. To determine whether flavonoid, myricetin can exert antioxidative effects not only directly by modulating the AOE system but also scavenging free radical, we investigated the influence of the flavonoid myricetin on cell viability, different antioxidant enzyme activities, ROS level and the expression of different antioxidant emzyme in B16F10 murine melanoma cells. Myricetin in a concentration range from 6.25 to $50\;{\mu}M$ decreased superoxide dismutase (SOD) and glutathione peroxidase (GPx) enzyme activities, but catalase (CAT) activity was increased. In the myricetin-treated group, ROS levels were decreased dose-dependently. Antioxidant enzyme expression was measured by RT-PCR. Myricetin treatment of B16F10 cells increased catalase expression. Expression levels of copper zinc superoxide dismutase (CuZn SOD) were not affected by exposure of myricetin. Manganese superoxide dismutase (Mn SOD) and GPx expression levels decreased slightly after myricetin treatment. In conclusion, the antioxidant capacity of myricetin was due to CAT and free-radical scavenging.

Identification and Characterization of SOD Isoenzymes in Acanthopanax koreanum Plants (섬오갈피나무에서 SOD Isoenzyme의 식별 및 특성규명)

  • 오순자;박영철;김응식;고석찬
    • Korean Journal of Plant Resources
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    • v.12 no.3
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    • pp.234-239
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    • 1999
  • The isoenzyme patterns and activities of superoxide dismutase(SOD) were investigated from leaves of Araliaceae plants. Of the eight isoenzymes, two isoenzymes(SOD 4 and SOD 6) were prevalent to leaves of Araliaceae plants. The patterns of these two isoenzymes were most various in the leaves of Acanthopanax senticosus for. inermis, while their activity was highest in the leaves of A. koreanum. These two isoenzymes were respectively identified as Fe-SOD and CuZn-SOD, based on selective inhibition with KCN or$H_2O_2$. The SOD isoenzyme patterns did not differed among stem barks, root barks and leaves of A. koreanum. However, the activities of Fe-SOD and CuZn-SOD were higher in the root bark and in leaves, respectively. Both of Fe-SOD and CuZn-SOD were stable for 1 hr at 30-4$0^{\circ}C$, while unstable above 5$0^{\circ}C$.

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Effect of Colored Potato Flakes Against Acetaminophen-induced Liver Damage in Rats

  • Ohba, Kiyoshi;Watanabe, Shoko;Han, Kyu-Ho;Hashimoto, Naoto;Noda, Takahiro;Shimada, Ken-Ichiro;Tanaka, Hisashi;Sekikawa, Mitsuo;Fukushima, Michihiro
    • Food Science and Biotechnology
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    • v.16 no.3
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    • pp.463-469
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    • 2007
  • We examined the hepatoprotective effects of colored potato flakes on acetaminophen (AAP)-induced liver damage in rats. F344/DuCrj (8 week-old) rats were fed a cholesterol-free diet with 54.9486 g of ${\alpha}$-corn starch/100g diet and were orally treated with 25% colored flakes of Kitamurasaki (KM: light purple), Northern Ruby (NR: red), and Shadow Queen (SQ: medium purple) potatoes co-administered with AAP (0.5 g/100 g diet) for 4 weeks. The hepatic thiobarbituric acid-reactive substances (TBARS) values in the KM, NR, and SQ groups were significantly lower (p<0.05) than those in the control groups with and without AAP. Furthermore, the hepatic catalase, Mn-superoxide dismutase (SOD), and Cu/Zn-SOD mRNA levels in the KM, NR, and SQ groups were higher than those in the control groups with and without AAP. The present findings suggest that colored potato flakes are useful as a prophylactic agent against oxidative liver damage.

Dose-Response Relationship between Catalase and Superoxide Dismutase Activity in Testes of Acutely Intoxicated Rats by Cadmium (급성 카드뮴중독시 랏트의 고환조직내 Catalase 및 Superoxide Dismutase 활성도와의 양-반응관계)

  • Park, Bo-Young;Park, Jung-Duck;Chung, Kyou-Chull
    • Journal of Preventive Medicine and Public Health
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    • v.21 no.2 s.24
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    • pp.295-306
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    • 1988
  • Dose-response relationship among blood cadmium concentrations, catalase and superoxide dismutase activities were studied with acutely intoxicated rats by cadmium. The Sprague-Dawley male rats to which single dose of $1{\sim}32mg/kg\;CdCl_2$ were administered into peritoneal cavity were sacrificed by decapitation at $3{\sim}36$ hours after the administration. Cadmium concentrations in blood increased significantly with dose of $CdCl_2$ administered and reached peak level at 3 hours later. Catalase activities in rats' testes were not correlated with esposure time elapsed after the administration in rats to which $1{\sim}2mg/kg\;of\;CdCl_2$ were administered, but they showed linear relationship with time in groups to which $4{\sim}32mg/kg\;of\;CdCl_2$ were administered. Cu, Zn-SOD activities in testes of acutely intoxicated rats by cadmium were not altered either by dosage or by time elapsed after the administration. Mn-SOD activities in the testes were also not influenced by dosage of $1{\sim}2mg/kg\;CdCl_2$, but remarkably inactivated by dosage of $4{\sim}32mg/kg\;CdCl_2$ with time elapsed after the administration. Neither catalase, Cu, Zn-SOD nor Mn-SOD activities of testes were correlated with blood cadmium concentrations in acutely intoxicated rats by cadmium.

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Effects of Fermented Mulberry Leaves (Morus alba L.) on Oxidative Modification of Antioxidnat Enzymes (항산화 효소의 산화적 변형에 뽕잎 발효물이 미치는 영향)

  • Kang, Jung Hoon
    • Journal of the Korean Applied Science and Technology
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    • v.36 no.3
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    • pp.985-994
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    • 2019
  • Muberry (Morus alba L.) leaves fermented with Hericium erinaceum mycelium (MA-HE) were assessed for the protection against oxidative modification of antioxidant enzymes, Cu,Zn-superoxide dismutase(SOD) and ceruloplasmin(CP). MA-HE were shown to significantly inhibited oxidative modifications and inactivations of Cu,Zn-SOD and CP induced by peroxyl radical. Antioxidant activity of MA-HE evaluated using peroxyl radical scavenging assays. MA-HE showed 44.03% of peroxyl radical scavenging activity at $100{\mu}g/mL$. Thus, MA-HE protect the antioxidant enzymes from oxidative damage by the scavenging peroxyl radicals. The results suggested that MA-HE was effectively removed reactive oxygen species in cells, thereby protecting cytotoxicity caused by oxidative stress.