• 제목/요약/키워드: mRNA transfection

검색결과 159건 처리시간 0.031초

Adenovirus-mediated Expression of Both Antisense Ornithine Decarboxylase and S-adenosylmethionine Decarboxylase Induces G1 Arrest in HT-29 Cells

  • Gong, Lei;Jiang, Chunying;Zhang, Bing;Hu, Haiyan;Wang, Wei;Liu, Xianxi
    • BMB Reports
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    • 제39권6호
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    • pp.730-736
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    • 2006
  • To evaluated the effect of recombinant adenovirus Ad-ODC-AdoMetDCas which can simultaneously express both antisense ornithine decarboxylase (ODC) and S-adenosylmethionine decarboxylase (AdoMetDC) on cell cycle distribution in colorectal cancer cell and investigated underlying regulatory responses, human colorectal cancer cells HT-29 were cultured in RPMI 1640 medium and infected with Ad-ODC-AdoMetDCas. Cell cycle progression was detected by flow cytometry analysis. The expression levels of cell cycle regulated proteins were measured by Western blot analysis. The mRNA level of cyclin D1 was measured by RT-PCR. And a luciferase reporter plasmid of cyclin D1 promoter was constructed to observe the effect of Ad-ODC-AdoMetDCas on cyclin D1 promoter activity. The results showed that recombinant adenovirus Ad-ODC-AdoMetDCas significantly induced $G_1$ arrest, decreased levels of cyclin D1 protein and mRNA and suppressed the promoter activity. Ad-ODC-AdoMetDCas also inhibited nuclear translocation of $\beta$-catenin. In conclusion, downregulation of ODC and AdoMetDC mediated by Ad-ODC-AdoMetDCas transfection induces $G_1$ arrest in HT-29 cells and the arrest was associated with suppression of cyclin D1 expression and inhibition of $\beta$-catenin nuclear translocation. As a new anticancer reagent, the recombinant adenovirus Ad-ODC-AdoMetDCas holds promising hope for the therapy of colorectal cancers.

The effects of estradiol and its metabolites on the regulation of CYP1A1 expression.

  • Euno, Joung-Ki;Yhong, Sheen-Yhun
    • 한국환경독성학회:학술대회논문집
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    • 한국환경독성학회 2002년도 추계국제학술대회
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    • pp.170-170
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    • 2002
  • College of Pharmacy, Ewha womans University, Seoul, 120-750, Korea 2,3,7,8-Tetrachlorodibenzo-p-dioxin (TCDD) is the most potent halogenated aromatic hydrocarbon congener that induces expression of several genes including CYP1A1. Exposure to TCDD results in many toxic actions such as carcinogenesis, hepatotoxicity, immune suppression, and reproductive and developmental toxicity. Dramatic differences in dioxin toxicity have been observed between the sexes of some animal species, suggesting hormonal modulation of dioxin action. Many studies have been reported and propose several mechanisms of anti-estrogenic effects of TCDD. In contrast, the effect of estrogen on the regulation of CYP1A1 are not clear at present. There are several reports showing conflicting results. It seems that induction/inhibition of CYP1A1 may be dependent on cell-type and concentration. The purpose of this study was to investigate the regulation of TCDD-induced CYP1A1 gene expression by estradiol and its metabolites. We examined whether estradiol and its metabolites altered TCDD-mediated induction of CYP1A1 enzyme activity. 17 ${\beta}$ estradiol and 16 ${\alpha}$ estriol at non cytotoxic concentrations caused a significant concentration dependent decline of TCDD-induced EROD activity To determine whether reduced EROD activity reflected altered CYP1A1 mRNA expression, we measured CYP1A1 mRNA level by RT-PCR. And to examine whether estradiol and its metabolites have effects on TCDD-induced CYP1A1 gene expression at the transcription level, we also peformed transient transfection with an AhR responsive reporter plasmid containing the 5' flanking region of the human CYP1A1 gene to examine whether estradiol and its metabolites have effects on TCDD-induced CYP1A1 gene expression at the transcription level.

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Complexation of Adiponectin-encoding Plasmid DNA with Rosiglitazone-loaded Cationic Liposomes

  • Davaa, Enkhzaya;Jeong, Ui-Hyeon;Shin, Baek-Ki;Choi, Soon-Gil;Myung, Chang-Seon;Park, Jeong-Sook
    • Journal of Pharmaceutical Investigation
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    • 제40권6호
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    • pp.357-362
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    • 2010
  • To enhance therapeutic effects of insulin-sensitizing adipokine, ADN gene and potent agonists, rosiglitazone for the $PPAR{\gamma}$, cationic liposomes as non-viral vectors were formulated. The particle size and zeta potential of drug loaded and unloaded cationic liposomes were investigated. The complex formation between cationic liposomes and negatively charged plasmid DNA was confirmed and the protection from DNase was observed. In vitro transfection was investigated in HepG2, HeLa, and HEK293 cells by mRNA expression of ADN. Encapsulation efficacy of rosiglitazone-loaded liposomes was determined by UV detection. Particle sizes of cationic liposomes were in the range of 110-170 nm and those of rosiglitazone-loaded cationic liposomes were in the range of 130-180 nm, respectively. Gel retardation of complexes indicated that the complex was formed at weight ratios of cationic lipid to plasmid DNA higher than 20:1. Both complexes protected plasmid DNA from DNase either drug free or drug loading. Encapsulation efficiency of rosiglitazone-loaded emulsion was increased by drug dose. The mRNA expression levels of ADN were dose-dependently increased in cells transfected with plasmid DNA. Therefore, cationic liposomes could be potential co-delivery system for drug and gene.

HepG2 세포에서 지속적인 활성 산소 노출이 ${\gamma}$-Glutamyltranspeptidase 발현과 활성에 미치는 영향 (Effect of Continuous Exposure to Reactive Oxygen Species on ${\gamma}$-Glutamyltranspeptidase Expression and Activity in HepG2 Cells)

  • 김영환;최달웅
    • 한국환경보건학회지
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    • 제30권3호
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    • pp.230-238
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    • 2004
  • The adverse health effects of a number of environment pollutions are related to the formation of free radicals. Induction of antioxidant defensive system in the response to an oxidative attack is an essential element of the cell to survive. CYP2E1 is easily induced by organic solvents and induces continuous formation of reactive oxygen species (ROS). ${\gamma}$-Glutamyltranspeptidase (${\gamma}$GT) plays an important role in glutathione metabolism and xenobiotic detoxification. To evaluate the characteristic of oxidative stress which induces GGT expression and to understand human antioxidant defensive response against oxidative stress induced by CYP2E1, we studied regulation of ${\gamma}$GT enzyme expression in response to various oxidative stresses in human HepG2 cells. The ${\gamma}$GT activity was not modified after exposure of acute oxidative stress inducing agents (ferric nitrilotriacetate, cumene hydroperoxide, ADP-Fe, O-tetradecanoylphorbol-13-acetate, tumor necrosis factor-alpha). To induce continuous exposure of cells to ROS, HepG2 cells were transfected by human CYP2E1 gene transiently. The CYP2E1 activity was verified with chlorzoxazone hydroxylation. Transfection of CYP2E1 showed continuous 60% increase in intracellular ROS and 240 % increase in microsomal ROS. CYP2E1 overexpressing cells showed increased ${\gamma}$GT activity (2.5-fold). The observed enhancement of ${\gamma}$GT activity correlated with a significant increase of ${\gamma}$GT mRNA (2.1-fold). Treatment with antioxidant strongly prevented the increase in ${\gamma}$GT activity. The CYP2E1 overexpression did not modify toxicity index and increased glutathione levels. These results show that continuous exposure of cells to ROS produced by CYP2E1 up-regulates ${\gamma}$GT; This may be one of the adaptive antioxidant responses of cells to oxidative insult. Present study also suggests that the induction of ${\gamma}$GT could be used as a marker of oxidative stress induced by exposure to organic solvents.

Ginsenoside Rb1 Inhibits Doxorubicin-Triggered H9C2 Cell Apoptosis via Aryl Hydrocarbon Receptor

  • Zhang, Yaxin;Wang, Yuguang;Ma, Zengchun;Liang, Qiande;Tang, Xianglin;Tan, Hongling;Xiao, Chengrong;Gao, Yue
    • Biomolecules & Therapeutics
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    • 제25권2호
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    • pp.202-212
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    • 2017
  • Doxorubicin (DOX) is a highly effective chemotherapeutic agent; however, the dose-dependent cardiotoxicity associated with DOX significantly limits its clinical application. In the present study, we investigated whether Rb1 could prevent DOX-induced apoptosis in H9C2 cells via aryl hydrocarbon receptor (AhR). H9C2 cells were treated with various concentrations ($-{\mu}M$) of Rb1. AhR, CYP1A protein and mRNA expression were quantified with Western blot and real-time PCR analyses. We also evaluated the expression levels of caspase-3 to assess the anti-apoptotic effects of Rb1. Our results showed that Rb1 attenuated DOX-induced cardiomyocytes injury and apoptosis and reduced caspase-3 and caspase-8, but not caspase-9 activity in DOX-treated H9C2 cells. Meanwhile, pre-treatment with Rb1 decreased the expression of caspase-3 and PARP in the protein levels, with no effects on cytochrome c, Bax, and Bcl-2 in DOX-stimulated cells. Rb1 markedly decreased the CYP1A1 and CYP1A2 expression induced by DOX. Furthermore, transfection with AhR siRNA or pre-treatment with AhR antagonist CH-223191 significantly inhibited the ability of Rb1 to decrease the induction of CYP1A, as well as caspase-3 protein levels following stimulation with DOX. In conclusion, these findings indicate that AhR plays an important role in the protection of Ginsenoside Rb1 against DOX-triggered apoptosis of H9C2 cells.

일본뇌염바이러스의 Mutant M 단백질에 반응하는 다클론항체의 생산: 극성 아미노산 잔기의 바이러스 생산과정에서의 역할 (Production of the Polyclonal Antibody That Recognizes the Mutant M Protein of Japanese Encephalitis Virus: Role of Its Charged Residues in Virus Production)

  • 김정민;윤상임;송병학;김진경;이영민
    • 미생물학회지
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    • 제46권2호
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    • pp.140-147
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    • 2010
  • 일본뇌염바이러스(Japanese encephalitis virus)는 모기 매개성 플라비바이러스에 속하며, 주로 동남아시아 지역에서 유행성 바이러스성 뇌염을 일으킨다. 일본뇌염바이러스는 외피를 가진 작은 바이러스로서, 양성가닥 RNA 게놈을 가지고 있다. 감염성을 띤 바이러스 입자는 capsid (C), membrane (M; prM 전구체로부터 생성), 및 envelope (E)과 같은 3개의 구조단백질로 이루어져 있다. 본 연구에서는 일본뇌염바이러스 생산과 정에 M 단백질의 N-말단부위에 위치한 극성 아미노산 잔기의 역할을 분석하였다. 일본뇌염바이러스의 infectious cDNA를 활용하여, M 단백질의 $E^9$$K^{15}K^{16}E^{17}$ 잔기를 알라닌으로 치환시킨 2개의 mutant cDNA (Mm1과 Mm2)를 각각 제작하였다. 각각의 cDNA로부터 합성된 mutant RNA를 세포에 트랜스펙션시킴으로써, 비록 세포 내에 축적된 3개의 구조단백질양은 변화가 없으나, 이들 세포로부터 생산된 바이러스의 양은 Mm2 RNA의 경우 ~1,000배 감소됨을 관찰하였다. 흥미롭게도, Mm2 RNA로부터 발현된 mutant M 단백질은 wild-type M 단백질을 인지하는 항혈청에는 반응하지 않았으나, mutant M 단백질을 항원으로 제작된 항혈청에는 반응하는 것을 알 수 있었다. 본 실험결과는 일본뇌염바이러스 M 단백질을 구성하는 3개의 극성 아미노산 잔기($K^{15}K^{16}E^{17}$)가 바이러스의 생산과정에 관여한다는 것을 암시한다. 앞으로, wild-type 또는 mutant M 단백질(Mm2)을 인식하는 2개의 항혈청은 이 단백질의 기능연구에 유용한 재료로 사용될 것으로 기대된다.

신경세포에서 sirtuin 1이 수상돌기 성장과 가시형성에 미치는 영향 및 기전에 관한 연구 (A Study on the Effects of Sirtuin 1 on Dendritic Outgrowth and Spine Formation and Mechanism in Neuronal Cells)

  • 서미경;김혜경;백송영;이정구;엄상화;박성우;석대현
    • 생명과학회지
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    • 제31권9호
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    • pp.806-817
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    • 2021
  • 우울증 발생 기전에 신경가소성의 손상이 관여한다. Sirtuin 1은 신경가소성의 조절에 중요한 역할을 담당하고 있다. 또한 mTORC1 신호전달의 활성화가 신경가소성을 향상시키는 것으로 알려져 있다. 본 연구는 sirtuin 1이 mTORC1 신호전달을 통해 수상돌기 성장과 가시형성에 미치는지 영향을 조사하였다. 덱사메타손이 처치된 신경세포와 정상 배양 신경세포에 resveratrol (sirtuin 1 활성제)과 sirtinol (sirtuin 1 억제제)을 각각 처치하였다. Western blot 분석법을 사용하여, sirtuin 1 발현 및 ERK1/2, mTORC1, p70S6K의 인산화 양을 분석하였고, 면역형광측정법으로 수상돌기의 길이와 가시밀도를 분석하였다. Resveratrol은 덱사메타손 환경에서 농도 의존적으로 sirtuin 1의 발현을 증가시켰으며, ERK1/2 (sirtuin 1의 하위 타겟), mTORC1, 그리고 p70S6K (mTORC1의 하위 타겟)의 인산화를 유의하게 증가시켰다. 또한 resveratrol은 수상돌기 성장과 가시밀도를 증가시켰다. 반면, sirtinol은 정상 배양액에서 sirtuin 1의 발현을 유의하게 감소시켰으며, ERK1/2, mTORC1, p70S6K의 인산화 양을 농도 의존적으로 유의하게 감소시켰다. 또한 sitinol은 수상돌기 성장과 가시밀도를 유의하게 감소시켰다. 신경세포에 sirtuin 1의 siRNA를 transfection시켜 sirtuin 1을 knockdown 시켰을 때, ERK1/2 및 mTORC1의 인산화 양이 감소하였을 뿐만 아니라, 수상돌기 성장과 가시밀도도 감소하였다. 본 연구는 sirtuin 1이 ERK1/2-mTORC1 신호전달을 통해서 수상돌기 성장과 가시밀도를 변화시켜 신경가소성을 조절한다는 것을 보여주었다.

마우스 Hepa-1c1c7 세포주에서 B형 간염 바이러스에 의한 tumor necrosis factor-a의 발현 유도 (Hepatitis B Virus-Induced TNF-a Expression in Hepa-lc1c7 Mouse Hepatoma Cell Line)

  • 예성수;장원희;양영일;이연재;김미성;석대현;박영홍;백계형
    • 생명과학회지
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    • 제15권1호
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    • pp.38-44
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    • 2005
  • B형 간염 바이러스(HBV)에 의한 감염은 인류의 보건에 대단히 중요한 문제이며, 따라서 HBV에 대한 많은 연구가 수행되어져 왔다. 그러나 HBV 연구에 있어서의 주된 장애요인은 그 감염이 사람과 일부 영장류에 국한된다는 점이다. 본 연구에서는 마우스 간암 세포주인 Hepa-1c1c7 세포를 이용하여 HBV의 감염성 및 그에 따른 염증성 사이토카인인 TNF-a의 발현의 변화를 측정하였다. HBV의 표면항원(HBsAg)분비는 microparticle enzyme immunoassay를 사용하여 측정하였고, TNF-a mRNA 발현 측정에는 quantitative competitive RT-PCR 방법을 사용하였다. HBV 발현 벡터를 Hepa-1clc7 세포에 도입시켰을 경우뿐만 아니라 HBV 비리온을 갖고 있는 혈청을 사용하여 Hepa-lc1c7 세포를 감염시켰을 때에도 HBV mRNA 발현 및 HBsAg 분비가 측정되었다. 또한 두 상황 모두에서 TNF-a mRNA발현이 증가됨을 알 수 있었다. 이러한 결과는 사람과 영장류에 특이적인 HBV가 마우스 간암 세포주인 Hepa-lclc7 세포도 감염시킬 수 있다는 가능성을 제시한다. 또한 마우스 기원의 Hepa-lclc7 세포에서도 HBV의 유전자 발현에 필요한 여러 인자들이 존재하며, TNF-a와 같은 사이토카인 유전자 발현을 조절하는 세포 내 기전에 HBV가 영향을 미친다고 할 수 있다. 따라서 마우스 간암 세포주인 Hepa-lclc7 세포는 HBV 연구를 위한 시험 관내 모델로서 사용되어질 수 있을 것으로 보인다.

돼지 $\beta$-Casein 유전자의 3' 말단 부위의 cis-Acting Element가 유선 상피 세포내의 발현에 미치는 영향 (Effects of the cis-Acting Element in the 3' End of Porcine $\beta$-Casein Gene on the Expression in Mammary Epithelial Cells)

  • 이휘철;김병주;변승준;이승훈;김민지;정희경;이현기;조수진;장원경;박진기;이풍연
    • Reproductive and Developmental Biology
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    • 제32권3호
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    • pp.153-158
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    • 2008
  • 형질 전환 동물 생산에는 조직 및 시기 특이적 발현 조절이 가능하다는 장점 때문에 유즙 내로 외부 유전자를 발현시키는 시스템이 널리 이용되고 있다. 유전자 발현 즉, 단백질 생산은 프로모터의 강도뿐만 아니라 mRNA의 안정성에 의해서도 조절된다. 특히, polyadenylation에 의한 poly A의 길이는 in vivo와 올 in vitro에서 mRNA 안정성 및 목적 유전자의 번역효율에 영향을 준다. 본 연구에서는 이러한 mRNA 안정성이 목적 유전자의 발현에 미치는 영향을 알아보기 위해 3'-UTR 염기 서열을 분석하였다. 이 3'-untranslated region(UTR) 내의 poly A signal을 기준으로 putative cytoplasmic polyadenylation element(CPE) 부위와 downstream elements(DSE: U-rich, G-rich, GU-rich)의 염기 서열을 분석하고, 각각의 element를 기준으로 15 종의 luciferase reporter vector를 제작하여, 생쥐 유선 세포주(HC11)와 돼지 유선 세포주(PMGC)에 각각 transfection시킨 후 48시간 동안 배양하고 luciferase 발현량을 분석하였다. PMGC의 경우, luciferase의 발현은 exon 9의 CPE 2,3 및 DSE 1을 포함한 #6 construct에서 유의적으로 높은 발현량을 보였으며, exon 9의 CPE 2, 3과 DSE를 모두 포함하고 있는 #11 construct에서도 유의적으로 높은 발현량을 보였다. 이러한 결과는 형질 전환 돼지 생산에 있어 #6 및 11 construct의 사용은 목적의 유전자를 효과적으로 발현시키는데 기여할 것으로 사료된다.

Differential expression of αB-crystallin causes maturation-dependent susceptibility of oligodendrocytes to oxidative stress

  • Kim, Ji Young;Lee, Eun Young;Sohn, Hyun Joon;Kim, Si Wook;Kim, Chan Hyung;Ahn, Hee Yul;Kim, Dong Woon;Cho, Sa Sun;Seo, Je Hoon
    • BMB Reports
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    • 제46권10호
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    • pp.501-506
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    • 2013
  • Oligodendrocyte precursor cells (OPCs) are most susceptible to oxidative stress in the brain. However, the cause of differences in susceptibility to oxidative stress between OPCs and mature oligodendrocytes (mOLs) remains unclear. Recently, we identified in vivo that ${\alpha}B$-crystallin (aBC) is expressed in mOLs but not in OPCs. Therefore, we examined in the present study whether aBC expression could affect cell survival under oxidative stress induced by hydrogen peroxide using primary cultures of OPCs and mOLs from neonatal rat brains. Expression of aBC was greater in mOLs than in OPCs, and the survival rate of mOLs was significantly higher than that of OPCs under oxidative stress. Suppression of aBC by siRNA transfection resulted in a decrease in the survival rate of mOLs under oxidative stress. These data suggest that higher susceptibility of OPCs than mOLs to oxidative stress is due, at least in part, to low levels of aBC expression.