• 제목/요약/키워드: Microsomal epoxide hydrolase

검색결과 23건 처리시간 0.027초

Low Microsomal Epoxide Hydrolase Expression is Associated with Bladder Carcinogenesis and Recurrence

  • Zhang, Zhe;Yu, Xiu-Yue;Zhang, Guo-Jun;Guo, Kun-Feng;Kong, Chui-Ze
    • Asian Pacific Journal of Cancer Prevention
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    • 제13권2호
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    • pp.521-525
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    • 2012
  • Microsomal epoxide hydrolase (mEH) plays a significant role in the metabolism of numerous xenobiotics and is associated with several forms of cancer. Here, we investigated the role of mEH expression in bladder carcinogenesis, subsequent progression and recurrence. The expression of mEH was analyzed by Western blot in 50 bladder urothelial carcinoma and 20 normal epithelial tissues. There was a significantly higher mEH expression in the normal epithelium (P<0.05) and mEH expression was lower in high stage than in low stage tumors (P<0.05). Further, immunohistochmistry in 106 bladder urothelial carcinoma demonstrated mEH expression to be negatively correlated with histological grade, pT stage and recurrence (P<0.05). These findings suggest the important role of mEH in bladder carcinogenesis, cancer development and recurrence, providing support for efforts to develop mEH-based gene therapy.

해양 어류 Mugil cephalus 유래의 에폭사이드 가수분해효소를 이용한 라세믹 styrene oxide의 입체선택적 분할 반응 (Enantioselective Kinetic Resolution of Racemic Styrene Oxide using Recombinant Marine Fish Epoxide Hydrolase of Mugil cephalus)

  • 최성희;김희숙;이은열
    • 공업화학
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    • 제19권5호
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    • pp.491-496
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    • 2008
  • 해양 어류인 Mugil cephalus로부터 에폭사이드 가수분해효소(epoxide hydrolase, EH) 유전자를 PCR을 이용하여 클로닝하고, pColdI 및 pET-21b(+) 발현벡터에 삽입시켜 재조합 Escherichia coli 생촉매를 개발하여 각각에 대하여 가수분해 활성을 비교하였다. 재조합 E. coli 생촉매 $10mg\;dcw\;mL^{-1}$을 사용하여 20 mM 라세믹 styrene oxide를 입체선택적 가수분해를 한 결과, (R)-styrene oxide 기질에 대해서 입체선택성을 보였다. pET-21b(+)를 발현벡터로 사용하여 M. cephalus의 EH 유전자를 저온 발현시킨 재조합 E. coli 생촉매를 사용하여, 약 40 min 반응을 통해 광학순도 99% ee (enantiomeric excess) 이상인 (S)-styrene oxide를 최종 수율 24.5% (이론수율 50%)로 제조할 수 있었다.

간의 Bromobenzene 대사계에 미치는 Scoparone의 효과(I) (The Effect of Scoparone on the Hepatic Bromobenzene Metabolizing Enzyme System in Rats)

  • 김은주;이정규;최종원
    • 생약학회지
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    • 제23권2호
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    • pp.81-88
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    • 1992
  • The effects of scoparone, one of coumarin derivative on the hepatic bromobenzene metabolizing enzyme system was estimated in rats. Scoparone pretreatment revealed dose-dependently the recovery of decrease in epoxide hydrolase activity due to the bromobenzene(310 mg/kg, i.p.) treatment. And also scoparone and scopoletin (each 5mg/kg, p.o.) pretreatments showed two times increase in the $V_{max}$ values compared to those of bromobenzene-treated group which were calculated from tripartite reciprocal plots. The mode of protective effect of scoparone against bromobenzene induced toxicity is considered to be due to the induction of microsomal enzyme activity by scopoletin, the intermediate metabolite of scoparone. The changes in cytochrome P-450 activity, aminopyrine N-demethylation, aniline hydroxylation and glutathione S-transferation in scoparone-treated group were not significantly different from those of the control group.

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Induction of Microsomal Epoxide Hydrolase, rGSTA2, rGSTA3/5, and rGSTM1 by Disulfiram, but not by Diethyldithiocarbamate, a Reduced Form of Disulfiram

  • Kim, Sang-Geon;Kim, Hye-Jung
    • Toxicological Research
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    • 제13권4호
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    • pp.339-347
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    • 1997
  • Disulfiram (DSF) and diethyldithiocarbamate (DDC), a reduced form of DSF, protect the liver against toxicant-induced injury through inhibition of cytochrome P450 2E1. The effect of DSF and DDC on the levels of major hepatic microsomal epoxide hydrolase (mEH) and glutathione S-transferase (GST) expression was comparatively studied, given the view that these enzymes are involved in terminal detoxification events for high energy intermediates of xenobiotics. Treatment of rats with a single dose of DSF (20-200 mg/kg, po) resulted in 2- to 15-fold increases in the mEH mRNA level at 24 hr with the ED$_{50}$ value being noted as 60 mg/kg. The mEH mRNA level was elevated ~15-fold at 24 hr after treatment at the dose of 100 mg/kg, whereas the hepatic mRNA level was rather decreased from the maximum at the dose of 200 mg/kg, indicating that DSF might cause cytotoxicity at the dose. In contrast to the effect of DSF, DDC only minimally elevated the mEH mRNA level at the doses employed. DSF moderately increased the major GST mRNA levels in the liver as a function of dose, resulting in rGSTA2, rGSTA3/5 or rGSTM1 mRNA levels being elevated 3- to 4-fold at 24 hr post-treatment, whereas the rGSTM2 mRNA level was not altered. DDC, however, failed to stimulate the mRNA levels for major GST subunits, indicating that the reduced form of DSF was ineffective in stimulating the GST the expression. The effect of other organosulfides including aldrithiol, 2, 2'-dithiobis(benzothiazole) (DTB), tetramethylthiouram disulfide (TMTD) and allyl disulfide (ADS) on the hepatic mEH and GST mRNA expression was assessed in rats in order to further confirm the increase in the gene expression by other disulfides. Treatment of rats with aldrithiol (100 mg/kg, po) resulted in a 16-fold increase in the mEH mRNA level at 24 hr post-treatment. DTB, TMTD and ADS also caused 5-, 9- and 12-fold increases in the rnRNA level, respectively, as compared to control. Thus, all of the disulfides examined were active in stimulating the mEH gene in the liver. The organosulfides significantly increased the rGSTA2, rGSTA3, rGSTA5 and rGSTM1 mRNA levels at 24 hr after administration. In particular, aldrithiol was very efficient in stimulating the rGSTA and rGSTM genes among the disulfides examined. These results provide evidence that DSF and other sulfides effectively stimulate the mEH and major GST gene expression at early times in the liver and that DDC, a reduced form of DSF, was ineffective in stimulating the expression of the genes, supporting the conclusion that reduced form(s) of organosulfur compound(s) might be less effective in inducing the mEH and GST genes through the antioxidant responsive element(s).

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Protein kinase A 억제제인 KT5720이 글루카곤 매개성 항산화 효소의 발현감소에 미치는 영향 (Effects of the Protein Kinase A Inhibitor KT5720 on Glucagon-Mediated Decrease in Expression of Antioxidant Enzymes)

  • 오수진;조재훈;박창식;김상겸;김봉희
    • Environmental Analysis Health and Toxicology
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    • 제21권3호
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    • pp.245-253
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    • 2006
  • We reported previously that glucagon decreased alpha- and pi-class glutathione S-transferases (GSTs) and microsomal epoxide hydrolase (mEN) protein levels in primary cultured rat hepatocytes. The present study examines the effects of Protein kinase A (PKA) inhibitor, KT5720, on the glucagon-mediated decrease in expression of GSTs and mEN. To assess cell viability. lactate dehydrogenase release and MTT activity were examined in hepatocytes treated KT5720. Cell viability was significantly decreased in a concentration dependent manner after incubation with KT5720 at the concentrations of 1 $\mu$M or above for 24 h, which was inhibited by the cytochrome P450 inhibitor SKF-525A. In contrast, another PKA inhibitor H89 (up to 25 $\mu$M) was not toxic to hepatocytes. The glucagon-mediated decrease in expression of alpha- and pi-class GSTs and mEH was completely inhibited by 25 $\mu$M H89 and attenuated by 0.1 $\mu$M KT5720. This study demonstrates that KT5720 may cause cytotoxicity in rat hepatocytes through cytochrome P450-dependent bioactivation. The present study implicates PKA in mediating the inhibitory effect of glucagon on expression of alpha- and pi- class GSTs and mEH.

1,2-Benzothiazine계열 새로운 항염진통제에 대한 약리작용 및 대사효소발현 유형의 연구 (Studies on Synthetic 1,2-Benzothiazine Anti-inflammatory Agents: Pharmacological Effect and the Expression of Xenobiotic-metabolizing Enzymes)

  • 김상건;조주연;권순경;이은방
    • 약학회지
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    • 제44권4호
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    • pp.300-307
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    • 2000
  • Expression of xenobiotic-metabolizing enzymes can be altered by xenobiotics, which represents changes in the production of reactive metabolic intermediates as well as toxicities in tissues. Metabolic intermediates derived from xenobiotics are considered to produce the reactive oxygen species including drug free radicals and hydroxyl free radicals, which would be ultimately responsible for drug-induced toxicities. The effects of 1,2-benzothiazine anti-inflammatory agents on the expression of xenobiotic-metabolizing enzymes including major cytochrome P450s, microsomal epoxide hydrolase (mEH) and glutathione S-transferase (GST) were studied in the liver with the aim of providing the part of information on potential production of reactive metabolites and hepatotoxicity by the agents. The synthetic compounds 24, 36 and 39 exhibited anti-inflammatory effects in rats as assessed by the Randall-Selitto method. The anti-inflammatory effect was detected as early as at 30 min after gavaging the agents with the ED5O being noted at 80 mg/kg, which was comparable to that of ibuprofen. Treatment of rats with each compound (100 mg/kg, 3d) resulted in no significant induction in the immunochemically-detectable cytochromes P45O 1A1/2, P450 2B1/2, P45O 2 Cl1 and P45O 2El. Changes in the mEN expression were also minimal, as evidenced by both Western blot and Northern blot analyses. Hepatic GST expression was slightly increased by the agents: GST Ya protein and mRNA expression was ~1.5-fold increased after treatment with compounds 24 and 39, whereas GST Yb1/2 and Yc1/2 mRNA levels were elevated 2- to 3-fold. In summary the effects of the synthetic 1,2-benzothiazines on the expression of major P45O, mEH and G57 were not significant, providing evidence that metabolic activation of the agents, potential drug interaction and hepatotoxicity would be minimal.

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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
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    • 제14권3호
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    • pp.293-300
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    • 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.

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chemopreventive Effects of 2-(Allylthio) pyrazine

  • Kim, Nak-Doo;Kim, Sang-Geon
    • Archives of Pharmacal Research
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    • 제22권2호
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    • pp.99-107
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    • 1999
  • A series of organosulfur compounds were synthesized with the aim of developing chemopreventive compounds active against hepatotoxicity and chemical carcinogesis. 2-(Allylthio) prazine (2-AP) was effective in inhibiting cytochrome P450 2E1-mediated catalytic activities and protein expression, and in inducing microsomal epoxide hydrolase and major glutathione S-transferases. 2-AP reduced the hepatotoxicity caused by toxicant sand elevated cellular GSH content. Development of skin tumors, pulmonary adenoma and aberrant crypt foci in colon by various chemical carcinogens was inhibited by 2-AP pretreatment. Anticarcinogenic effects of 2-AP at the stage of initiation of tumors were also observed in the aflatoxin B1 ($AFB_1$)-induced three-step medium-term hepatocarcinogenesis model. Reduction of $AFB_1$-DNA adduct by 2-AP appeared to result from the decreased formation of $AFB_1$-8,9-epoxide via suppression of cytochrome P450, while induction of GST 2-AP increases the excretion of glutathione-conjugated $AFB_1$ . 2-AP was a radioprotective agent effective against the lethal dose of total body irradiation and reduced radiation-induced injury in association with the elevation of detoxifying gene expression. 2-AP produces reactive oxygen species in vivo, which is not mediated with the thiol-dependent production of oxidants and that NF-KB activation is not involved in the induction of the detoxifying enzymes. the mechanism of chemoprotection by 2-AP may involve inhibition of the P450-mediated metabolic activation of chemical carcinogens and enhancement of electrophilic detoxification through induction of phase II detoxification enzymes which would facilitate the clearance of activated metabolites through conjugation reaction.

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만성폐쇄성폐질환 발생에 Epoxide hydrolase와 GSTM1유전자 다형성의 의의 (Genetic Polymorphism of Epoxide Hydrolase and GSTM1 in Chronic Obstructive Pulmonary Disease)

  • 박상선;김은정;손창영;위정욱;박경화;조계중;주진영;김규식;김유일;임성철;김영철;박경옥;나국주
    • Tuberculosis and Respiratory Diseases
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    • 제55권1호
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    • pp.88-97
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    • 2003
  • 연구배경 : 90% 정도의 만성폐쇄성 폐질환(COPD) 환자들이 흡연력이 있으나 흡연자의 15~20%에서만 COPD가 발생하는 것은 유전자 감수성 등 다양한 다른 인자들의 영향이 있음을 암시한다. 담배 연기 속에 포함된 epoxide를 가수 분해하는 효소인 microsomal epoxide hydrolase(mEPHX)의 효소 활성은 두 개의 유전자 다형성 양상에 따라 서로 다르므로 이 다형성의 양상에 따라, 그리고 활성화된 유독 물질을 대사시키는 glutathione Stransferase의 M1 subunit 유전자 (GSTM1)의 homozygous deletion 여부에 따라 COPD의 발생 위험도 다를 것으로 예측된다. 대상 및 방법 : 전남 대학교 병원 호흡기 내과에 내원한 58예의 COPD군과 이와 연령이 비슷한 폐결핵 환자 59례 및 정상인들 20례로 구성된 대조군(79예)의 말초혈액 백혈구로부터 추출한 DNA를 이용하여 mEPHX 유전자의 다형성과 GSTM1 유전자의 결손 여부 그리고 임상 양상과의 관계를 관찰하였다. mEPHX 유전자의 exon 3과 exon 4를 각각 두 쌍의 primer를 이용하여 증폭하여 제한 효소 절단 양상으로 유전자 다형성 위치의 염기를 확인하였고 일부에서는 염기 서열을 직접 확인 하였다. 또한 GSTM1 유전자의 exon 4와 exon 5 부위를 PCR 증폭하여 homozygous deletion 여부를 혈액응고인자 V를 양성대조로 이용하여 확인하였다. 결 과 : COPD와 대조군 양군 간에 연령 ($63.7{\pm}10.9$ vs $60.4{\pm}8.1$세)은 차이를 보이지 않았고 흡연자는 COPD군(33/40, 82.5%)이 대조군(38/71, 53.5%)에 비하여 많았다(p<0.01). GSTM1은 73예가 결손되어 53.3%의 결손율을 보였는데 COPD군(32/58, 55.2%)과 대조군(41/79, 51.9%) 사이에 유의한 차이는 없었다. mEPHX는 29예(21.2%)가 slow, 73예(53.3%)가 normal, 32예(23.4%)가 fast enzyme activity를 보이는 유전자형이었는데, slow enzyme activity를 보이는 유전자형의 빈도가 COPD군(7/57, 12.3%)에서 대조군(22/77, 28.6%)보다 유의하게 낮았다(p<0.05). COPD 발생의 비교 위험도는 mEPHX의 낮은 효소 활성을 보이는 유전자형이 0.32 (95% 신뢰구간 0.14-0.75, p<0.01)를 보였으나, 흡연자들만을 이용하여 비교하였을 때는 mEPHX의 유전자형에 따른 COPD의 빈도는 차이가 없었다. 결 론 : 소수의 집단을 대상으로 한 본 연구에서 GSTM1 결손이나 mEPHX의 유전자형은 COPD 발생의 유의한 위험인자는 아니었다.