• 제목/요약/키워드: Glutathione-S-transferase M1

검색결과 155건 처리시간 0.036초

Bergenin 및 Acetylbergenin의 사염화탄소 유발 간독성에 대한 치료효과I (Therapeutic Effects of Bergenin and Acetylbergenin on Carbon Tetrachloride-Induced Hepatotoxicity in Rats)

  • 임화경;김학성;최종원
    • Biomolecules & Therapeutics
    • /
    • 제8권4호
    • /
    • pp.293-298
    • /
    • 2000
  • Bergenin is a C-glucoside of 4-O-methyl gallic acid that has been isolated from the cortex of Mallotus japonicus (Euphorbiaceae). Acetylbergenin was synthesized by acetylation from bergenin to increase lipophilic and physiological activities. The therapeutic effects of bergenin and acetylbergenin were evaluated against carbon tetrachloride ($CCl_4$)-induced hepatotoxicity in rats. Bergenin and acetylbergenin were administered orally once daily for successive 5 days, after the intraperitoneal injection of a mixture 0.5 m1/kg of $CCl_4$ in olive oil (1:1). The substantially elevated serum enzymatic activities of alanine/aspartate aminotransferase, sorbitol dehydrogenase and ${\gamma}$-glutamyltransferase induced by $CCl_4$ were restored towards normalization by posttreatment with bergenin and acetylbergenin. Bergenin and acetylbergenin also significantly prevented the elevation of hepatic malondialdehyde formation and depletion of glutathione content induced by $CCl_4$ in a dose dependent fashion. In addition, the decreased activities of glutathione S-transferase and glutathione reductase were restored towards normalization. These results suggest that therapeutic effects of bergenin and acetylbergenin may be related complex mechanisms that involve prevention of lipid peroxidation and preservation of hepatic GSH. The results of this study clearly indicate that bergenin and acetylbergenin have potent hepatothrapeutic action against $CCl_4$-induced hepatotoxicity in rats. In addition, acetylbergenin 50 mgHg showed almost the same levels of hepatoprotective activity as those of bergenin 100 mgAg, indicating the fact that lipophilic acetylbergenin is more effective in the hepatoprotective action against $CCl_4$ than bergenin.

  • PDF

Cloning of Chicken Microsomal Glutathione S-transferase 1 Gene (MGST1) and Identification of Its Different Splice Variants

  • Wang, X.-T.;Zhang, H.;Zhao, C.-J.;Li, J.-Y.;Xu, G.-Y.;Lian, L.-S.;Wu, C.-X.;Deng, Xuemei
    • Asian-Australasian Journal of Animal Sciences
    • /
    • 제22권2호
    • /
    • pp.155-161
    • /
    • 2009
  • Mammal microsomal glutathione transferase 1 (MGST1) can conjugate many toxic or carcinogenic substances and depress oxidative stress. In this study, Chicken MGST1 and its variants were cloned for the first time and were composed of 956 or 944 nucleotides. The 12 nt deletion in the exon 2 did not alter the GT-AG rule and the ORFs for the two MGST1 variants were the same, which both comprised 465 nucletides and encoded a peptide with 155 amino acids. It was found that the two different splice variants identified using RT-PCR expressed in all three organs investigated of Dwarf Brown Chicken, namely liver, spleen and shell gland. Moreover, the expression level of MGST1 mRNA in the liver of Dwarf Brown chickens was the highest (p<0.01), and there were no significant differences between the spleen and the shell gland. These results provide a base for studying the biological function of Chicken MGST1.

Role of PI3-kinase and MAP Kinases in the ARE-mediated Glutathione S-Transferase Induction by Phytochemicals: Comparison with the Oxidative Stress Caused by Decreased Glutathione

  • Kim, Sang-Geon;Kang, Keon-Wook
    • Toxicological Research
    • /
    • 제17권
    • /
    • pp.251-256
    • /
    • 2001
  • The expression of phase II detoxifying enzymes is affected by a variety of compounds and the induction of the enzymes plays an essential role in chemoprevention. A variety of phytochemicals such as sulfur-containing chemoprotective agents (SCC) may trigger cellular signals and activate phase II gene expression through ARE activation. see induces glutathione S-transferases. Studies were conducted to investigate the role of mitogen-activated protein (MAP) kinase and phosphatidylinositol 3-kinase (PI3-kinase) in the induction of GST (e.g. rGSTA2) by sec. We also studied the MAP kinase pathway responsible for the GST expression by see and compared that with the pathway activated by oxidative stress as a result of sulfur amino acids deprivation (SAAD). see inhibited phosphorylation of ERK1/2 although the effect of see on JNK and p38 MAP kinase was minimal. Wortmannin and LY294002. PI3-kinase inhibitors. abolished the increases in rGSTA2 mRNA and protein levels by SCC. Deprivation of cystine and methionine caused oxidative stress in H4IIE cells. as evidenced by a decrease in the reduced glutathione and an increase in prooxidant production. Electrophoretic mobility shift assay revealed that the ARE complex consisting of Nrf-1/2 and Maf proteins was activated 12~48 h. The rGSTA2 mRNA and protein levels were increased by SAAD. Activation of ARE and induction of rGSTA2 were both completely inhibited by PI3-kinase inhibitors. Inhibition of p38 MAP kinase by SB203580 prevented the ARE-mediated rGSTA2 induction. The results of this study showed that PI3-kinase might play an essential role in the ARE-mediated rGSTA2 induction by see or SAAD and that the dual MAP kinase pathways were responsible for the enzyme induction.

  • PDF

Differential Expression of Xenobiotic-Matabolizing Enzymes by Benzylisothiazole in Association with Hepatotoxicity: Effects on Rat Hepatic Epoxide Hydrolase, Glutathione S-Transferases and Cytochrome P450s

  • Cho, Min- Kyung;Kim, Sang-Geon
    • Toxicological Research
    • /
    • 제14권3호
    • /
    • pp.293-300
    • /
    • 1998
  • Previous studies have shown that the heterocycles including thiazoles are efficacious in inducing phase phase II metabolizing enzyme as well as certain cytochrome P450s and that the inductin of these matabolizing enzymes by the heterocyclic agents is highly associated with their hepatotoxicity. In the present study, the effects of benzylisothiazole (BIT), which has a isothiazole moiety, on the expression of microsomal epoxide hydrolase (mEH), major glutathione S-transerases and cytochrome P450s were studied in the rat liver in association with its hepatotoxicity. Treatment of rats with BIT(1.17 mmol/kg, 1~3d) resulted in substantial increases in the mEH. rGSTA2, rGSTA2, rGSTM1 and rGSTM2 mRNA levels, whereas rGSTA3 and rGSTA5 mRNA levels were increased to much lesser extents. A time-course study showed that the mRNA levels of mEH and rGSTs were greater at 24hr after treatment than those after 3 days of consecutive treatment. Relative changes in mEH and rGST mRNA levels were consistent with those in the proteins, as assessed by Western immunoblot analysis. Hepatic cytochrom P450 levels were monitored after BIT treatment under the assumption that metabolic activation of BIT may affect expression of the enzymes in conjunction with hepatotoxicity. Immunoblot analysis revealed that cytochrome P450 2B1/2 were 3-to 4-fold induced in rats teatd with BIT(1.17 mmol/kg/day.3days), whereas P450 1A2, 2C11 and 3A1/2 levels were decreased to 20~30% of those in unteatd rats. P450 2E1 was only slightly decreased by BIT. Thus, the levels of several cytochrome P450s were suppressed by BIT treatment. Rats treated with BIT at the dose of 1.17mmol/kg for 3 days exhibited extensive multifocal nodular necrosis with moderate to extensive diffuse liver cell degeneration. No notable toxicity was observed in the kidney. These results showed that BIT induces mEH and rGSTs in the liver with increases in the mRNA levels, whereas the agent significantly decreased major cytochrome P450s. The changes in the detoxifying enzymes might be associated with the necrotic liver after consecutive treatment.

  • PDF

Mutation of Cysteine-115 to Alanine in Nicotiana glutinosa Ornithine Decarboxylase Reduces Enzyme Activity

  • Lee, Yong-Sun;Cho, Young-Dong
    • BMB Reports
    • /
    • 제34권5호
    • /
    • pp.472-477
    • /
    • 2001
  • Ornithine decarboxylase (ODC, EC 4.1.1.17) is the first and key enzyme in eukaryotic polyamine biosynthesis. The cDNA encoding ornithine decarboxylase from Nicotiana glutinosa was cloned ($GeBank^{TM}$ AF 323910) and expressed in E. coli. Site directed mutagenesis were performed on several highly conserved cysteine residues. Among the mutants, C115A showed significant changes in the kinetic properties. The $K_m$ value of the C115A mutant was $1790\;{\mu}M$, which was 3-fold higher than that of the wild-type ODC. There was a dramatic decrease in the $k_{cat}$, values of the C115A mutant, compared to that of the wild-type ODC, which had a $k_{cat}$ value of $77.75\;s^{-1}$. C115A caused a shift in the optimal pH from 8.0 to 8.4. Considering these results, we suggest that cys-115 is involved in the catalytic activity of N. glutinosa ODC.

  • PDF

작약 약침액이 tert-butyl hydroperoxide 로 유도된 흰쥐 배양 간세포의 지질과산화반응 및 항산화효소 활성에 미치는 영향 (Effects of Paeoniae Radix Aqua-Acupuncture Solution on Tert-Butyl Hydroperoxide Induced Lipid Peroxidation and Antioxidative Enzymes in Cultured Rat Liver Cells)

  • 문진영
    • Journal of Acupuncture Research
    • /
    • 제17권3호
    • /
    • pp.176-187
    • /
    • 2000
  • Objectives : This study was purposed to investigate the antioxidative effects of Paeoniae radix aqua-acupuncture solution(PR) on culture liver cell system, lipid peroxidation and antioxidative enzyme activities in tert-butyl hydroperoxide(t-BHP) treatmented conditions. Methods : Cultured normal rat liver cell(Ac2F) were prepared and incubated with or without PR(at 2% volume in culture medium). After 16~18hr, cells placed in DMEM medium without serum, and then incubated with 1mM t-BHP for 2hr. Viable cells were detected by MTT assay, and the levels of lipid peroxide(LPO) were measured by TBA method. And catalase activity was measured as the decrease in hydrogen peroxide absorbance at 240nm on spectrophotometer using 30mM hydrogen peroxide. Superoxide dismutase(SOD) were assayed by recording the inhibition of nitro blue tetrazolium reduction with xanthine and xanthine oxidase. Glutathione peroxidase(GPX) activity was determined by the modified coupled assay developed by Paglia and Lawrence. The reaction was started by addition of 2.2mM hydrogen peroxide as substrate. The change in absorbance at 340nm was measured for 1min on spectrophotometer. Glutathione-S-transferase(GST) activity was assayed with CDNB as substrate and enzyme activity of GST towards the glutathione conjugation of CDNB. Results : Cell killing was significantly enhanced by addition of t-BHP compared to those of untreated group. PR pretreated cell resisted the toxic effects of t-BHP. LPO levels of t-BHP treatment group were significantly higher than other groups. This increased level was significandy reduced by PR pretreatment. The t-BHP treatment resulted in a decrease of catalase, GPX and GST activities. By contrast, PR pretreatment markedly increased compare to those of untreated groups. Conclusions : T-BHP which can produce intracellular free radical was used for inducer of the peroxidation of cellular lipids. PR protected the cell death induced by t-BHP and significantly increased cell viabiliry in the normal rat liver cell, and showed effective inhibition of lipid peroxidation, and elevations of catalase, GPX and GST activities. These results suggested that PR might play a protective role in lipid peroxidation by free radicals.

  • PDF

Glutathione S-transferase T1, M1 and P1 Genetic Polymorphisms and Susceptibility to Colorectal Cancer in Turkey

  • Gorukmez, Ozlem;Yakut, Tahsin;Gorukmez, Orhan;Sag, Sebnem Ozemri;Topak, Ali;Sahinturk, Serdar;Kanat, Ozkan
    • Asian Pacific Journal of Cancer Prevention
    • /
    • 제17권8호
    • /
    • pp.3855-3859
    • /
    • 2016
  • Colorectal cancer (CRC) is reproted to be the third most common cancer worldwide and the fourth most common cause of cancer related deaths. CRC is considered to be a multifactorial disease whose risk varies due to the complex interaction between individual genetic basis and disposure to multiple endogenous factors. Glutathione S-transferases are pro-carcinogenic in CRC and are required for the conjugation between chemotherapeutics and broad spectrum xenobiotics. One hundred and eleven patients with CRC and 128 control subjects without any cancer history were enrolled in this study. Multiplex PCR was applied to determine polymorphisms for the GSTT1 and M1 genes, and PCR-RFLP was applied for the GSTP1 (Ile105Val) gene polymorphism. Values p<0.05 were defined as statistically significant. We detected a significant high correlation between predisposition for CRC and presence of the Ile/Ile genotype of the GSTP1 (IIe105Val) gene polymorphism, but we did not find a significant relationship between predisposition for CRC and GSTT1 and M1 deletion polymorphisms. In addition, we did not determine a relationship between GSTT1, M1 and P1 gene polymorphisms and any clinicopathological features of CRC. GSTT1 null/GSTM1 positive and GSTT1 null/GSTM1 positive/GSTP1 Ile/Ile genotypes were significantly higher in the patient group. Our results revealed that there is no relationship among CRC, its clinicopathologic features, and GSTT1 M1 gene polymorphisms. However, there was a significant correlation between CRC and the GSTP1 Ile/Ile genotype. Further studies with larger patient groups are required to delineate the relationships between GST gene polymorphisms and the clinicopathologic features of CRC in Turkey.

Protection of LLC-PK1 Cells Against Hydrogen Peroxide­Induced Cell Death by Modulation of Ceramide Level

  • Yoo Jae Myung;Lee Youn Sun;Choi Heon Kyo;Lee Yong Moon;Hong Jin Tae;Yun Yeo Pyo;Oh Seik Wan;Yoo Hwan Soo
    • Archives of Pharmacal Research
    • /
    • 제28권3호
    • /
    • pp.311-318
    • /
    • 2005
  • Oxidative stress has been reported to elevate ceramide level during cell death. The purpose of the present study was to modulate cell death in relation to cellular glutathione (GSH) level and GST (glutathione S-transferase) expression by regulating the sphingolipid metabolism. LLC­PK1 cells were treated with H$_2$O$_2$ in the absence of serum to induce cell death. Subsequent to exposure to H$_2$O$_2$, LLC-PK1 cells were treated with desipramine, sphingomyelinase inhibitor, and N-acetylcysteine (NAC), GSH substrate. Based on comparative visual observation with H202-treated control cells, it was observed that 0.5 $\mu$M of desipramine and 25 $\mu$M of NAC exhibited about 90 and $95\%$ of cytoprotection, respectively, against H$_2$O$_2$-induced cell death. Desipramine and NAC lowered the release of LDH activity by 36 and $3\%$ respectively, when compared to $71\%$ in H$_2$O$_2$-exposed cells. Cellular glutathione level in 500 $\mu$M H202-treated cells was reduced to 890 pmol as compared to control level of 1198 pmol per mg protein. GST P1-1 expression was decreased in H$_2$O$_2$-treated cells compared to healthy normal cells. In conclusion, it has been inferred that H$_2$O$_2$-induced cell death is closely related to cellular GSH level and GST P1-1 expression in LLC-PK1 cells and occurs via ceramide elevation by sphingomyelinase activation.

알코올성 산화적 손상에 대한 발효울금의 간세포 보호 효과 (In Vitro Hepatoprotective Effects of Fermented Curcuma longa L. by Aspergillus oryzae against Alcohol-Induced Oxidative Stress)

  • 성혜미;이유현;전우진
    • 한국식품영양과학회지
    • /
    • 제45권6호
    • /
    • pp.812-818
    • /
    • 2016
  • 본 연구는 발효울금 추출물에서 알코올로 유발된 산화적 스트레스에 대한 간세포 손상에 대한 보호 효과를 평가하기 위해 발효울금을 열수 추출, 냉수 추출, 80% 에탄올 추출 및 메탄올 추출하여 HepG2/2E1 세포에서 알코올과 추출물을 함께 처리 후 세포생존율을 평가하고 세포생존율이 가장 높은 냉수 추출물에서 reactive oxygen species(ROS) 함량, 항산화 지표와 malondialdehyde(MDA) 함량을 측정하였다. 알코올에 대한 간 보호 효과에서는 알코올만 처리한 군의 세포생존율이 72.8%로 감소하였으나 발효울금 냉수 추출물을 함께 처리 시에 세포생존율이 86.1%로 유의적으로 증가하며 간 보호 효과를 확인하였다. 또한, 발효울금 냉수 추출물에서 세포 내 ROS 생성 억제능은 에탄올만 처리한 군에서 무처리군에 비해 유의적으로 ROS 생성이 증가하였으나 발효울금 냉수 추출물 $100{\mu}g/mL$, $250{\mu}g/mL$, $500{\mu}g/mL$ 농도 처리군 모두 알코올만 처리한 군과 비교 시 유의적인 차이를 보이며 ROS level을 감소시켰다. 항산화 지표에서 효소적 항산화인 catalase, glutathione-S-transferase, superoxide dismutase, glutathione peroxidase 및 glutathione reductase는 알코올만 처리한 군에서 무처리군보다 감소하였으나 발효울금 냉수 추출물 $500{\mu}g/mL$ 농도 처리군에서는 알코올만 처리한 군에 비해 유의적인 차이를 보이며 항산화 효소의 감소를 억제하였다. GSH 함량은 에탄올만 처리한 군에서 무처리군보다 유의적으로 함량이 감소하였으나 발효울금 냉수 추출물 $250{\mu}g/mL$, $500{\mu}g/mL$ 농도 처리군 모두 에탄올만 처리한 군에 비해 GSH 함량의 감소를 억제하였다. MDA 함량은 알코올만 처리한 군에서 무처리군에 비해 유의적으로 증가하였으나 발효울금 냉수 추출물 고농도 처리군($500{\mu}g/mL$)에서는 알코올만 처리한 군에 비해 유의적인 차이를 보이며 MDA 함량을 감소시켰다. 이상의 결과로부터 발효울금 추출물 중 냉수 추출물에서 알코올성 간 손상에 대한 간 보호 효과가 높게 나타나는 것을 확인하였다. 결과적으로 본 연구를 통해 발효울금을 냉수 추출하는 것은 발효울금의 알코올성 간 손상에 대한 간 보호 효과를 증대시키고 ROS 생성을 억제, 항산화 효소와 GSH 함량의 감소 억제 및 MDA 함량의 증가 억제 효과를 높이는 것으로 확인되었다. 이에 발효울금을 냉수로 처리하여 추출하는 것이 간 보호 효과를 증대시킬 수 있는 효과적인 방법이며, 이러한 방법을 통해 얻은 발효울금 냉수 추출물은 알코올로 유발된 산화적 스트레스에 대한 간세포 손상에 대한 보호 효과가 있는 기능성 소재로 활용될 수 있을 것으로 생각한다.

Contribution of Arginine 13 to the Catalytic Activity of Human Class Pi Glutathione Transferase P1-1

  • Kong, Ji-Na;Jo, Dong-Hyeon;Do, Hyun-Dong;Lee, Jin-Ju;Kong, Kwang-Hoon
    • Bulletin of the Korean Chemical Society
    • /
    • 제31권9호
    • /
    • pp.2497-2502
    • /
    • 2010
  • Arg13 is a conserved active-site residue in all known Pi class glutathione S-transferases (GSTs) and in most Alpha class GSTs. To evaluate its contribution to substrate binding and catalysis of this residue, three mutants (R13A, R13K, and R13L) were expressed in Escherichia coli and purified by GSH affinity chromatography. The substitutions of Arg13 significantly affected GSH-conjugation activity, while scarcely affecting glutathione peroxidase or steroid isomerase activities. Mutation of Arg13 into Ala largely reduced the GSH-conjugation activity by approximately 85 - 95%, whereas substitutions by Lys and Leu barely affected activity. These results suggest that, in the GSH-conjugation activity of hGST P1-1, the contribution of Arg13 toward catalytic activity is highly dependent on substrate specificities and the size of the side chain at position 13. From the kinetic parameters, introduction of larger side chains at position 13 results in stronger affinity (Leu > Lys, Arg > Ala) towards GSH. The substitutions of Arg13 with alanine and leucine significantly affected $k_{cat}$, whereas substitution with Lys was similar to that of the wild type, indicating the significance of a positively charged residue at position 13. From the plots of log ($k_{cat}/{K_m}^{CDNB}$) against pH, the $pK_a$ values of the thiol group of GSH bound in R13A, R13K, and R13L were estimated to be 1.8, 1.4, and 1.8 pK units higher than the $pK_a$ value of the wild-type enzyme, demonstrating the contribution of the Arg13 guanidinium group to the electrostatic field in the active site. From these results, we suggest that contribution of Arg13 in substrate binding is highly dependent on the nature of the electrophilic substrates, while in the catalytic mechanism, it stabilizes the GSH thiolate through hydrogen bonding.