• 제목/요약/키워드: peroxiredoxin3

검색결과 43건 처리시간 0.026초

Molecular Analysis of Promoter and Intergenic Region Attenuator of the Vibrio vulnificus prx1ahpF Operon

  • Lee, Hyun Sung;Lim, Jong Gyu;Han, Kook;Lee, Younghoon;Choi, Sang Ho
    • Journal of Microbiology and Biotechnology
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    • 제25권8호
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    • pp.1380-1389
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    • 2015
  • Prx1, an AhpF-dependent 2-Cys peroxiredoxin (Prx), was previously identified in Vibrio vulnificus, a facultative aerobic pathogen. In the present study, transcription of the V. vulnificus prx1ahpF genes, which are adjacently located on the chromosome, was evaluated by analyzing the promoter and intergenic region of the two genes. Northern blot analyses revealed that transcription of prx1ahpF results in two transcripts, the prx1 and prx1ahpF transcripts. Primer extension analysis and a point mutational analysis of the promoter region showed that the two transcripts are generated from a single promoter. In addition, the 3' end of the prx1 transcript at the prx1ahpF intergenic region was determined by a 3'RACE assay. These results suggested that the prx1ahpF genes are transcribed as an operon, and the prx1 transcript was produced by transcriptional termination in the intergenic region. RNA secondary structure prediction of the prx1ahpF intergenic region singled out a stem-loop structure without poly(U) tract, and a deletion analysis of the intergenic region showed that the atypical stem-loop structure acts as the transcriptional attenuator to result in the prx1 and prx1ahpF transcripts. The combined results demonstrate that the differential expression of prx1 and ahpF is accomplished by the cis-acting transcriptional attenuator located between the two genes and thereby leads to the production of a high level of Prx1 and a low level of AhpF.

Proteomics를 이용한 마우스 조직에서의 방사선 감수성 조절 단백질의 탐색 (Proteomics of Protein Expression Profiling in Tissues with Different Radiosensitivity)

  • 안정희;김지영;성진실
    • Radiation Oncology Journal
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    • 제22권4호
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    • pp.298-306
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    • 2004
  • 목적:. 방사선 감수성이 다른 마우스 조직에서 apoptosis 유도 수준을 확인하고 방사선 감수성에 관여 된 인자를 Proteomics를 통해서 확인한다. 대상 및 방법: C3H/HeJ 마우스에 10 Gy 방사선을 조사하고 8시간 후 비장과 간을 채취하여 apoptosis 유도 수준을 비교 분석하였다. 조직에서 단백질을 추출하여 2-dimension electrophoresis (2-DE)를 실시하였다. 2-DE에서 방사선에 의해 발현의 변화를 보이는 gel의 spot를 trypsin 처리하여 MALDI-TOF 측정한 후 Swiss-prot database를 통하여 단백질 을 동정하였다. 결과: Apoptosls index는 방사선 조사 후 비장 조직에서 $35.3{\pm}1.7{\%}$, 간조직은 $0.6{\pm}0.2{\%}$로 비장에 비해 간 조직이 낮게 나타났다. Proteomoics 결과에서 방사선 내성 조직인 간은 ROS대사에 관여되는 단백질인 glutathione Stransferase Pi, carbonic anhydrase, NADH dehydrogenase, peroxiredoxin VI, riken cDNA 등이 방사선 조사 후 증가되었고 apoptosis 관련된 단백질인 cytochrome c는 간과 비장 조직에서 확인되었다. 그러나 방사선 민감 조직인 비장에서는 방사선 조사 후 산화적 Stress에 관련된 단백질, apoptosis 관련 단백질, 신호 전달에 관련된 단백질, 면역반응, cell cycle, Ca 신호 전달, 대사 cycle에 관련된 단백질 등이 방사선에 관련하여 발현의 변화를 보여 주었다. 결론 : Apoptosis유도 수준이 다른 조직에서 apoptosis에 관련된 단백질과 redox에 관련된 단백질은 방사성 감수성 조절에 관련된 것으로 보인다.

The role of peroxidases in the pathogenesis of atherosclerosis

  • Park, Jong-Gil;Oh, Goo-Taeg
    • BMB Reports
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    • 제44권8호
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    • pp.497-505
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    • 2011
  • Reactive oxygen species (ROS), which include superoxide anions and peroxides, induce oxidative stress, contributing to the initiation and progression of cardiovascular diseases involving atherosclerosis. The endogenous and exogenous factors hypercholesterolemia, hyperglycemia, hypertension, and shear stress induce various enzyme systems such as nicotinamide adenine dinucleotide (phosphate) oxidase, xanthine oxidase, and lipoxygenase in vascular and immune cells, which generate ROS. Besides inducing oxidative stress, ROS mediate signaling pathways involved in monocyte adhesion and infiltration, platelet activation, and smooth muscle cell migration. A number of antioxidant enzymes (e.g., superoxide dismutases, catalase, glutathione peroxidases, and peroxiredoxins) regulate ROS in vascular and immune cells. Atherosclerosis results from a local imbalance between ROS production and these antioxidant enzymes. In this review, we will discuss 1) oxidative stress and atherosclerosis, 2) ROS-dependent atherogenic signaling in endothelial cells, macrophages, and vascular smooth muscle cells, 3) roles of peroxidases in atherosclerosis, and 4) antioxidant drugs and therapeutic perspectives.

Molecular identification and expression analysis of a natural killer enhancing factor-A from black rockfish Sebastes schlegelii

  • Lee, Jeong-Ho;Kim, Joo-Won;Park, Chan-Il
    • 한국어병학회지
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    • 제22권3호
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    • pp.343-352
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    • 2009
  • Natural-killer-cell-enhancing factor (NKEF) belongs to the newly defined peroxiredoxin (Prx) family. It was originally isolated from human erythroid cells. The black rockfish NKEF cDNA was identified through the expressed sequence tag (EST) analysis of PBLs libraries. The full-length NKEF cDNA was 1433 bp long and contained an open reading frame (ORF) of 594 bp that encoded 198 amino-acid residues. The 5' UTR had a length of 39 bp, and the 3’UTR 800 bp. The deduced amino-acid sequence of the black rockfish had a density 93.4, 92.9, 87.8, 85.8, 84.8, 83.8, 80.3, 79.7, 77.2, and 75.2% that of the pufferfish, olive flounder, channel catfish, zebrafish, chicken, common carp, Myotis lucifugus, cattle, human PrxI, rat PrxI, human NKEF-A, and Xenopus tropicalis, respectively. The NKEF gene was expressed in all the tissues of the black rockfish. The RT-PCR indicated that the NKEF transcripts were predominantly in the spleen and gill, less dominantly in the PBLs, head kidney, trunk kidney, and liver, and least in the intestine and muscles. This is the first report on the existence of the NKEF-A gene in black rockfish.

Identification of Differentially Expressed Genes by TCDD in Human Bronchial Cells: Toxicogenomic Markers for Dioxin Exposure

  • Park, Chung-Mu;Jin, Kyong-Suk;Lee, Yong-Woo
    • 대한의생명과학회지
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    • 제18권1호
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    • pp.1-9
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    • 2012
  • Differentially expressed genes by 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) were identified in order to evaluate them as dioxin-sensitive markers and crucial signaling molecules to understand dioxin-induced toxic mechanisms in human bronchial cells. Gene expression profiling was analyzed by cDNA microarray and ten genes were selected for further study. They were cytochrome P450, family 1, subfamily B, polypeptide 1 (CYP1B1), S100 calcium binding protein A8 (calgranulin A), S100 calcium binding protein A9 (calgranulin B), aldehyde dehydrogenase 1 family, member A3 (ALDH6) and peroxiredoxin 5 (PRDX5) in up-regulated group. Among them, CYP1B1 was used as a hallmark for dioxin and sharply increased by TCDD exposure. Down-regulated genes were IK cytokine, interferon-induced protein with tetratricopeptide repeats 1 (IFIT1), nuclease sensitive element binding protein 1 (NSEP1), protein tyrosine phosphatase type VI A, member 1 (PTP4A1), ras oncogene family 32 (RAB32). Although up-regulated 4 genes in microarray were coincided with northern hybridization, down-regulated 5 genes showed U-shaped expression pattern which is sharply decreased at lower doses and gradually increased at higher doses. These results introduce some of TCDD-responsive genes can be sensitive markers against TCDD exposure and used as signaling cues to understand toxicity initiated by TCDD inhalation in pulmonary tissues.

RIP3-Dependent Accumulation of Mitochondrial Superoxide Anions in TNF-α-Induced Necroptosis

  • Lee, Jiyoung;Lee, Sunmi;Min, Seongchun;Kang, Sang Won
    • Molecules and Cells
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    • 제45권4호
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    • pp.193-201
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    • 2022
  • Excessive production of reactive oxygen species (ROS) is a key phenomenon in tumor necrosis factor (TNF)-α-induced cell death. However, the role of ROS in necroptosis remains mostly elusive. In this study, we show that TNF-α induces the mitochondrial accumulation of superoxide anions, not H2O2, in cancer cells undergoing necroptosis. TNF-α-induced mitochondrial superoxide anions production is strictly RIP3 expression-dependent. Unexpectedly, TNF-α stimulates NADPH oxidase (NOX), not mitochondrial energy metabolism, to activate superoxide production in the RIP3-positive cancer cells. In parallel, mitochondrial superoxide-metabolizing enzymes, such as manganese-superoxide dismutase (SOD2) and peroxiredoxin III, are not involved in the superoxide accumulation. Mitochondrial-targeted superoxide scavengers and a NOX inhibitor eliminate the accumulated superoxide without affecting TNF-α-induced necroptosis. Therefore, our study provides the first evidence that mitochondrial superoxide accumulation is a consequence of necroptosis.

Oxidative stress and the antioxidant enzyme system in the developing brain

  • Shim, So-Yeon;Kim, Han-Suk
    • Clinical and Experimental Pediatrics
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    • 제56권3호
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    • pp.107-111
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    • 2013
  • Preterm infants are vulnerable to the oxidative stress due to the production of large amounts of free radicals, antioxidant system insufficiency, and immature oligodendroglial cells. Reactive oxygen species (ROS) play a pivotal role in the development of periventricular leukomalacia. The three most common ROS are superoxide ($O2^{\cdot-}$), hydroxyl radical ($OH^{\cdot}$), and hydrogen peroxide ($H_2O_2$). Under normal physiological conditions, a balance is maintained between the production of ROS and the capacity of the antioxidant enzyme system. However, if this balance breaks down, ROS can exert toxic effects. Superoxide dismutase, glutathione peroxidase, and catalase are considered the classical antioxidant enzymes. A recently discovered antioxidant enzyme family, peroxiredoxin (Prdx), is also an important scavenger of free radicals. Prdx1 expression is induced at birth, whereas Prdx2 is constitutively expressed, and Prdx6 expression is consistent with the classical antioxidant enzymes. Several antioxidant substances have been studied as potential therapeutic agents; however, further preclinical and clinical studies are required before allowing clinical application.

Differential responses of peroxidases in sweetpotato suspension-cultured cells to cadmium treatment

  • Ju Hwan Kim;Ki Jung Nam;Kang-Lok Lee;Yun-Hee Kim
    • Journal of Plant Biotechnology
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    • 제50권
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    • pp.76-81
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    • 2023
  • As cultured plant cells can grow in high oxidative stress conditions, they form an excellent system to study antioxidant mechanisms and the mass production of antioxidants. Oxidative stress is a major cause of damage in plants exposed to various types of environmental stress, including heavy metals, such as cadmium (Cd). Heavy metal accumulation can interfere with many cell functions and plant growth. To evaluate the contribution of oxidative stress to Cd-induced toxicity, cultured sweetpotato (Ipomoea batatas) cells were treated with increasing concentrations of Cd (0, 10, 25, and 50 μM) and cultured further. Cell growth was significantly inhibited by 25 and 50 μM of Cd, and the total protein content increased with 50 μM of Cd. Additionally, the activity of peroxidase (POD) and ascorbate peroxidase (APX), antioxidant enzymes that remove hydrogen peroxide (a reactive oxygen species), increased in the cells after treatment with 50 μM of Cd. The expression analysis of POD, APX, and peroxiredoxin (PRX) isolated from sweetpotato cultured cells in a previous study revealed the differential expression of POD in response to Cd. In this study, the expression levels of several acidic POD (swpa2, swpa3, and swpa4) and basal POD (swpb1, swpb2, and swpb3) genes were increased in Cd-treated cultured cells. These results indicate that Cd-mediated oxidative stress is closely linked to improved POD-mediated antioxidant defense capacity in sweetpotato suspension-cultured cells.

Jl 배아주세포를 이용한 효율적인 생식선 이행 카이미라의 생산 (Factors Affecting the Productivity of Germ-line Chimeras from Jl Embryonic Stem Cells)

  • 김선욱;구본실;정상균;이태훈;유성란;남윤이;김정림;현병화;신희섭;이경광;상병찬;유대열
    • 한국가축번식학회지
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    • 제25권1호
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    • pp.71-77
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    • 2001
  • 본 실험은 phospholipase C (PLC)-$\beta$-3 및 peroxiredoxin (Prx) II 유전자가 적중 ($\Delta$)된 J1 마우스 배아주 (embryonic stem) 세포로부터 생식선이행 카이미라 마우스생산을 위한 제반조건 및 배아주세포의 배양조건을 확립하기 위하여 수행되었다. 80% 이상의 정상핵형을 보이는 유전자 적중된 4개의 클론 ($\Delta$Pu II C3, $\Delta$Pu II C3, C10 및 15)으로부터 카이미라를 생산하였을 때 형태적으로 분화정도가 높은 클론 ($\Delta$PLC$\beta$-3 C3)의 이용은 카이미라의 생산율 (21.1%)과는 무관하게 카이미리즘 (< 20%)이 낮았고, 수컷 카이미라의 생산 빈도 (7/15, 46%)도 낮아지는 것으로 나타났다. 그러나 형태적으로 안정된 3개의 클론 ($\Delta$Prx II C3, C10 및 15)은 80% 이상의 높은 카이미리즘을 지닌 마우스 (9/13, 69.2%)를 생산하였고, 수컷 카이미라의 생산율 (l1/13, 84.6%)도 증대된 것으로 나타났다. 따라서 80% 이상의 정상핵형을 지닌 배아주 세포를 형태적으로 안정하게 유지하는 것이 카이미리즘이 높은 마우스를 생산하는데 결정적 요인으로 작용할 수 있는 것으로 확인되었다. 미세주입용 배반포를 효율적으로 생산하기 위해 5~10주령 사이의 C57BL/6J 암컷마우스를 교배 한 결과, 10주령 마우스가 미세주입가능한 3.5일령 배반포를 가장 많이 생산 (2.94개/마리)하였다. 또한 미세주입된 배반포를 이식하기 위해 ICR 및 ICR$\times$C57BL/6J F1 (IBF1)위임신 대리모를 사용하였을 때, IBF1이 복당 산자수 (2.8 vs. 5.6)가 많았고 카이미라 생산율 (0 vs. 35.3%)도 매우 높았다. 따라서 공여마우스의 주령 및 대리모의 선택이 카이미라 생산효율 향상에 중요한 요인으로 부각되었다. 결과적으로 핵형이 안정된 ES 세포를 동정하는 것은 물론 클로닝 과정중에 형태적으로 분화가 없도록 ES세포를 배양하는 것이 카이미리즘이 높은 마우스를 생산하고 아울러 생식선 이행 빈도를 증가시키는데 결정적인 역할을 하는 것으로 확인되었다.

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Proteomic Analysis of a Rat Cerebral Ischemic Injury Model after Human Cerebral Endothelial Cell Transplantation

  • Choi, Tae-Min;Yun, Misun;Lee, Jung-Kil;Park, Jong-Tae;Park, Man-Seok;Kim, Hyung-Seok
    • Journal of Korean Neurosurgical Society
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    • 제59권6호
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    • pp.544-550
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    • 2016
  • Objective : Cerebral endothelial cells have unique biological features and are fascinating candidate cells for stroke therapy. Methods : In order to understand the molecular mechanisms of human cerebral endothelial cell (hCMEC/D3) transplantation in a rat stroke model, we performed proteomic analysis using 2-dimensional electrophoresis and matrix-assisted laser desorption/ionization time-of-flight mass spectrometry. Protein expression was confirmed by quantitative real-time PCR and Western blot. Results : Several protein spots were identified by gel electrophoresis in the sham, cerebral ischemia (CI), and CI with hCMEC/D3 treatment cerebral ischemia with cell transplantation (CT) groups, and we identified 14 differentially expressed proteins in the CT group. Proteins involved in mitochondrial dysfunction (paraplegin matrix AAA peptidase subunit, SPG7), neuroinflammation (peroxiredoxin 6, PRDX6), and neuronal death (zinc finger protein 90, ZFP90) were markedly reduced in the CT group compared with the CI group. The expression of chloride intracellular channel 4 proteins involved in post-ischemic vasculogenesis was significantly decreased in the CI group but comparable to sham in the CT group. Conclusion : These results contribute to our understanding of the early phase processes that follow cerebral endothelial cell treatment in CI. Moreover, some of the identified proteins may present promising new targets for stroke therapy.