• 제목/요약/키워드: Cytochrome P450 2E1 enzyme

검색결과 47건 처리시간 0.022초

CYP2E1*5B, CYP2E1*6, CYP2E1*7B, CYP2E1*2, and CYP2E1*3 Allele Frequencies in Iranian Populations

  • Shahriary, Ghazaleh Mohammadzadeh;Galehdari, Hamid;Jalali, Amir;Zanganeh, Fatemeh;Alavi, Seyed Mohammad Reza;Aghanoori, Mohammad Reza
    • Asian Pacific Journal of Cancer Prevention
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    • 제13권12호
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    • pp.6505-6510
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    • 2012
  • Background: CYP2E1 encodes an enzyme which is mainly involved in bioactivation of potential carcinogens such as N-nitrosamines. Polymorphisms in the gene have been reported to be associated with cancer. The aim of this study was to evaluate genotype distributions and allele frequencies of five CYP2E1 polymorphisms in Iran Materials and Methods: Two hundred healthy individuals of an Iranian population from the southwest were included in this study. PCR-restriction fragment length polymorphism and Tetra-ARMS PCR methods were applied for CYP2E1 genotyping. Results: The allele frequencies for $^*5B$, $^*6$, $^*7B$, $^*2$, and $^*3$ were calculated to be 1.5%, 16%, 28.5%, 0%, and 2.75% respectively. Results of this study showed that no significant differences in genotype and allele frequencies of five single nucleotide polymorphisms with respect to the gender and tribes. The chi-square test showed that the genotype frequencies of $CYP2E1^*5B$ were similar to Caucasians, but the distribution of $CYP2E1^*6$ genotypes was similar to Asians. The frequencies of $CYP2E1^*2$ (0%) and $CYP2E1^*3$ (2.75%) alleles were within the range for Caucasians and Orientals. In the case of $CYP2E1^*7B$, the data werelimited. Accordingly, the results were only compared with Europeans and the comparison showed significant differences. Conclusions: In conclusion, ethnic and geographic differences may explain discrepancies in the prevalence of CYP2E1 polymorphisms.

Anti-inflammatory Effects in LPS-treated RAW 264.7 Cells and the Influences on Drug Metabolizing Enzyme Activities by the Traditional Herbal Formulas, Yongdamsagan-Tang and Paljung-san

  • Ha, Hyekyung;Jin, Seong Eun;Seo, Chang-Seob;Shin, Hyeun-kyoo
    • 대한한의학회지
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    • 제42권4호
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    • pp.10-24
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    • 2021
  • Objectives: Yongdamsagan-tang (YST) and Paljung-san (PJS) in traditional medicine and finasteride in modern medicine are used to treat benign prostatic hyperplasia (BPH). In recent, the use of combination herbal remedies with conventional drugs has been increasing. Therefore, we investigated the anti-inflammatory effects of these drugs to treat BPH and the influence of herbal formulas on finasteride metabolism. Methods: The inhibitory effects of the herbal formulas and finasteride on the production of inflammatory mediators and cytokines were determined in lipopolysaccharide (LPS)-treated RAW 264.7 cells. Additionally, the influence of herbal formulas on activities of human drug metabolizing enzymes (DMEs) was assessed using human microsomal enzymes. Results: We observed that YST, PJS and finasteride inhibited the production of nitric oxide (NO), prostaglandin E2 (PGE2) and interleukin-6 (IL-6) in RAW 264.7 cells. The half maximal inhibitory concentration (IC50) of YST on PGE2 production was calculated to be below 25 ㎍/mL. YST inhibited the activity of uridine diphosphate-glucuronosyltransterase (UGT) 1A4 with an IC50 value of 49.35 ㎍/mL. The activities of cytochrome P450 (CYP) 1A2, CYP2B6, CYP2C19, CYP3A4, and UGT1A1 were inhibited by PJS (IC50 < 100 ㎍/mL, each). Although PJS and YST inhibited the activities of CYP3A4 and UGT1A4, respectively, these formulas may not influence the metabolism of finasteride because the IC50 values of herbal formulas on DMEs are too high to affect metabolism. Conclusions: Our results suggest that the combination of finasteride and YST or PJS might not influence their drug metabolism and that the drugs may have synergistic effects against BPH.

자성 흰쥐의 파라치온 급성독성 및 대사에 미치는 페노바르비탈 및 SKF-525-A의 영향 (EFFECT OF PHENOBARBITAL AND / OR SKF 525-A ON THE METABOLISM AND ACUTE TOXICITY OF PARATHION IN ADULT FEMALE PATS)

  • 최재화;임혜경;김영철
    • Toxicological Research
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    • 제6권1호
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    • pp.51-59
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    • 1990
  • Effects of altering hepatic mixed-function oxidase (MFO) enzyme activities on the metabolism and acute toxicity of parathio were investigated in adult female rats. In vitro hepatic metabolism of parathion to paraoxon was increased by phenobarbital pretreatment (50 mg/kg/day, ip, for 4 consecutive days) and SKF 525-A (50 mg/kg, ip, 1 hr prior to sacrifice) decreased paraoxon formation indicating that phenobarbital induces that form(s) of cytochrome P-450 catalyzing conversion of parathion to paraoxon. Degradation of paraoxon to p-nitrophenol was increased by phenobarbital pretreatment, but not affected by SKF 525-A suggesting that MFO activities play only a minor role in the detoxification of the active metabolite of this insecticide. The phenobarbital-induced increase in paraoxon formation was partially antagonized by SKF 525-A. Significant activity for both parathion activation and paraoxon degradation was also observed in the lung preparation, however, this extrahepatic parathion and paraoxon metabolizing activity was not induced by phenobarbital or inhibited by SKF 525-A pretreatment. Phenobarbital pretreatment increased paraoxon level in livers of rats when measured 3 hr following parathion injection (2 mg/kg, ip). SKF 525-A did not alter parathion or paraoxon levels in brain, blood and liver. Phenobarbital pretreatment decreased the toxicity of parathion (4mg/kg, ip) or paraoxon (1.5 mg/kg, ip) as determined by decreases in lethality and inhibition of brain and lung acetylcholinesterases. An additional SKF 525-A treatment failed to decrease the protective effects of phenobarbital against parathion or paraoxon toxicity. These results suggest that some unknown factors other than hepatic MFO induction are involved in the protective action of phenobarbital against parathion and paraoxon toxicity.

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AtCYP78A7 과발현 환경스트레스 내성 형질전환 벼의 단백질 진단 키트 개발 (Development of a Kit for Diagnosing AtCYP78A7 Protein in Abiotic-tolerant Transgenic Rice Overexpressing AtCYP78A7)

  • 남경희;박정호;백인순;김호방;김창기
    • 생명과학회지
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    • 제28권7호
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    • pp.835-840
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    • 2018
  • 본 연구는 시토크롬 P450 단백질을 암호화하는 애기장대 유래의 AtCYP78A7을 과발현하는 형질전환 식물체로부터 AtCYP78A7 단백질을 특이적으로 인식하는 단일큰론 항체의 제조와 그 항체를 AtCYP78A7 단백질과 접촉시켜 항원-항체 복합체 형성을 검출함으로써 AtCYP78A7 단백질을 효소면역학적(ELISA) 방법으로 검출하는 진단 키트를 개발하기 위하여 수행하였다. 재조합한 GST-AtCYP78A7 단백질을 항원으로 사용하여 단일클론 항체를 분비하는 융합세포주를 제조한 후 비오틴화 및 페어링 테스트를 통해 포획항체와 검출항체를 선정하였으며, GST-AtCYP78A7 정제 단백질을 기준으로 일품벼, 화영벼, AtCYP78A7 과발현 벼(10B-5, 18A-4)의 용해물을 검출항원으로 사용하여 product test를 진행하였다. 그 결과 AtCYP78A7 단백질에 특이적으로 결합하는 4개의 단클론 항체(mAb 6A7, mAb 4C2, mAb 11H6, mAb 7E8)를 생산하였고, 포획항체 mAb 4C2와 검출항체 mAb 7E8-biotin의 조합으로 ELISA 키트를 개발하였다. 개발된 ELISA 키트를 이용한 벼 시료의 분석 결과 AtCYP78A7 과발현 벼는 전체 단백질 대비 AtCYP78A7 단백질의 비율이 0.1% 이상인 양성으로, 일품벼와 화영벼는 0.1% 미만인 음성으로 나타나 키트를 이용한 AtCYP78A7 단백질의 검출이 가능하였으며, 따라서 본 키트는 향후 AtCYP78A7를 과발현하는 형질전환 작물을 대상으로 하는 환경 모니터링 또는 인체 위해성 평가에 유용하게 활용될 수 있을 것으로 사료된다.

The effects of the standardized extracts of Ginkgo biloba on steroidogenesis pathways and aromatase activity in H295R human adrenocortical carcinoma cells

  • Kim, Mijie;Park, Yong Joo;Ahn, Huiyeon;Moon, Byeonghak;Chung, Kyu Hyuck;Oh, Seung Min
    • Environmental Analysis Health and Toxicology
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    • 제31권
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    • pp.10.1-10.8
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    • 2016
  • Objectives Aromatase inhibitors that block estrogen synthesis are a proven first-line hormonal therapy for postmenopausal breast cancer. Although it is known that standardized extract of Ginkgo biloba (EGb761) induces anti-carcinogenic effects like the aromatase inhibitors, the effects of EGb761 on steroidogenesis have not been studied yet. Therefore, the effects of EGb761 on steroidogenesis and aromatase activity was studied using a H295R cell model, which was a good in vitro model to predict effects on human adrenal steroidogenesis. Methods Cortisol, aldosterone, testosterone, and $17{\beta}$-estradiol were evaluated in the H295R cells by competitive enzyme-linked immunospecific assay after exposure to EGb761. Real-time polymerase chain reaction were performed to evaluate effects on critical genes in steroid hormone production, specifically cytochrome P450 (CYP11/ 17/19/21) and the hydroxysteroid dehydrogenases ($3{\beta}$-HSD2 and $17{\beta}$-HSD1/4). Finally, aromatase activities were measured with a tritiated water-release assay and by western blotting analysis. Results H295R cells exposed to EGb761 (10 and $100{\mu}g/mL$) showed a significant decrease in $17{\beta}$-estradiol and testosterone, but no change in aldosterone or cortisol. Genes (CYP19 and $17{\beta}$-HSD1) related to the estrogen steroidogenesis were significantly decreased by EGb761. EGb761 treatment of H295R cells resulted in a significant decrease of aromatase activity as measured by the direct and indirect assays. The coding sequence/Exon PII of CYP19 gene transcript and protein level of CYP19 were significantly decreased by EGb761. Conclusions These results suggest that EGb761 could regulate steroidogenesis-related genes such as CYP19 and $17{\beta}$-HSD1, and lead to a decrease in $17{\beta}$-estradiol and testosterone. The present study provides good information on potential therapeutic effects of EGb761 on estrogen dependent breast cancer.

표고버섯균사체의 사염화탄소 및 알콜로 처리된 흰쥐 간기능 보호 효과 (Mycelial Culture of Lentinus edodes Alleviates Rat Liver Toxicity Induced by Carbon Tetrachloride and Ethanol)

  • 하영래;김영숙;안채린;권정민;박철우;하영권;김정옥
    • 생명과학회지
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    • 제20권1호
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    • pp.133-141
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    • 2010
  • LED의 간 보호 기능을 연구하기 위하여 $CCl_4$ 및 ethanol로 SD rat에 간독성을 유발한 다음, LED를 처리하였다. LED의 간 기능 보호효과는 간장치료제인 Silymarin과 비교하였다. $CCl_4$로 간 독성을 유발한 경우, LED는간의 항산화효소인 SOD, catalase, GSH peroxidase 효소활성의 항진을 유도하였고, 산화물인 TBARS의 함량을 감소시켰다. 또한 간 손상의 지표인 혈장의 GOT, GPT 및 LDH의 활성을 감소시켰다. Ethanol로 간 독성을 유발한 경우 LED는 간의 SOD, catalase, GSH preoxidase 효소활성 및 GSH 함량을 항진시켰고, 총 cholesterol, triglyceride 및 TBARS의 함량을 감소시켰다. 또한 ethanol 대사에 관여하는 ADH 효소 활성을 증진시켰고, ROS 생성에 관여하는 CYP2E1 효소의 발현을 감소시킴으로써, 혈장의 GOT, GPT 및 LDH 효소활성이 감소되었다. 또한 LED는 DPPH 및 mouse liver mitochondrial system에서 항산화효과를 보였다. 이러한 결과로 미루어 볼 때 LED는 in vitro와 in vivo에서 항산화효과에 의한 간 기능 보호효과를 갖는 것으로 추정된다.

Evolutionary Explanation for Beauveria bassiana Being a Potent Biological Control Agent Against Agricultural Pests

  • Han, Jae-Gu
    • 한국균학회소식:학술대회논문집
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    • 한국균학회 2014년도 춘계학술대회 및 임시총회
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    • pp.27-28
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    • 2014
  • Beauveria bassiana (Cordycipitaceae, Hypocreales, Ascomycota) is an anamorphic fungus having a potential to be used as a biological control agent because it parasitizes a wide range of arthropod hosts including termites, aphids, beetles and many other insects. A number of bioactive secondary metabolites (SMs) have been isolated from B. bassiana and functionally verified. Among them, beauvericin and bassianolide are cyclic depsipeptides with antibiotic and insecticidal effects belonging to the enniatin family. Non-ribosomal peptide synthetases (NRPSs) play a crucial role in the synthesis of these secondary metabolites. NRPSs are modularly organized multienzyme complexes in which each module is responsible for the elongation of proteinogenic and non-protein amino acids, as well as carboxyl and hydroxyacids. A minimum of three domains are necessary for one NRPS elongation module: an adenylation (A) domain for substrate recognition and activation; a tholation (T) domain that tethers the growing peptide chain and the incoming aminoacyl unit; and a condensation (C) domain to catalyze peptide bond formation. Some of the optional domains include epimerization (E), heterocyclization (Cy) and oxidation (Ox) domains, which may modify the enzyme-bound precursors or intermediates. In the present study, we analyzed genomes of B. bassiana and its allied species in Hypocreales to verify the distribution of NRPS-encoding genes involving biosynthesis of beauvericin and bassianolide, and to unveil the evolutionary processes of the gene clusters. Initially, we retrieved completely or partially assembled genomic sequences of fungal species belonging to Hypocreales from public databases. SM biosynthesizing genes were predicted from the selected genomes using antiSMASH program. Adenylation (A) domains were extracted from the predicted NRPS, NRPS-like and NRPS-PKS hybrid genes, and used them to construct a phylogenetic tree. Based on the preliminary results of SM biosynthetic gene prediction in B. bassiana, we analyzed the conserved gene orders of beauvericin and bassianolide biosynthetic gene clusters among the hypocrealean fungi. Reciprocal best blast hit (RBH) approach was performed to identify the regions orthologous to the biosynthetic gene cluster in the selected fungal genomes. A clear recombination pattern was recognized in the inferred A-domain tree in which A-domains in the 1st and 2nd modules of beauvericin and bassianolide synthetases were grouped in CYCLO and EAS clades, respectively, suggesting that two modules of each synthetase have evolved independently. In addition, inferred topologies were congruent with the species phylogeny of Cordycipitaceae, indicating that the gene fusion event have occurred before the species divergence. Beauvericin and bassianolide synthetases turned out to possess identical domain organization as C-A-T-C-A-NM-T-T-C. We also predicted precursors of beauvericin and bassianolide synthetases based on the extracted signature residues in A-domain core motifs. The result showed that the A-domains in the 1st module of both synthetases select D-2-hydroxyisovalerate (D-Hiv), while A-domains in the 2nd modules specifically activate L-phenylalanine (Phe) in beauvericin synthetase and leucine (Leu) in bassianolide synthetase. antiSMASH ver. 2.0 predicted 15 genes in the beauvericin biosynthetic gene cluster of the B. bassiana genome dispersed across a total length of approximately 50kb. The beauvericin biosynthetic gene cluster contains beauvericin synthetase as well as kivr gene encoding NADPH-dependent ketoisovalerate reductase which is necessary to convert 2-ketoisovalarate to D-Hiv and a gene encoding a putative Gal4-like transcriptional regulator. Our syntenic comparison showed that species in Cordycipitaceae have almost conserved beauvericin biosynthetic gene cluster although the gene order and direction were sometimes variable. It is intriguing that there is no region orthologous to beauvericin synthetase gene in Cordyceps militaris genome. It is likely that beauvericin synthetase was present in common ancestor of Cordycipitaceae but selective gene loss has occurred in several species including C. militaris. Putative bassianolide biosynthetic gene cluster consisted of 16 genes including bassianolide synthetase, cytochrome P450 monooxygenase, and putative Gal4-like transcriptional regulator genes. Our synteny analysis found that only B. bassiana possessed a bassianolide synthetase gene among the studied fungi. This result is consistent with the groupings in A-domain tree in which bassianolide synthetase gene found in B. bassiana was not grouped with NRPS genes predicted in other species. We hypothesized that bassianolide biosynthesizing cluster genes in B. bassiana are possibly acquired by horizontal gene transfer (HGT) from distantly related fungi. The present study showed that B. bassiana is the only species capable of producing both beauvericin and bassianolide. This property led to B. bassiana infect multiple hosts and to be a potential biological control agent against agricultural pests.

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