• 제목/요약/키워드: peroxiredoxin I

검색결과 21건 처리시간 0.027초

Over-expressed Peroxiredoxin I Protects against Oxidative Damage in Mouse Embryonic Fibroblasts Lacking Peroxiredoxin II

  • Kim, Seong-Gon;Kim, Jae-Young;Ryoo, Zae-Young;Lee, Sang-Gyu
    • Biomolecules & Therapeutics
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    • 제19권4호
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    • pp.451-459
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    • 2011
  • Peroxiredoxins (Prxs) have a critical role in protecting cells against oxidative damage generated by reactive oxygen species (ROS). PrxI and PrxII are more than 90% homologous in their amino acid sequences, and both proteins reduce $H_2O_2$. In this study, an over-expression plasmid carrying PrxI was transfected into $PrxII^{-/-}$ mouse embryonic fibroblasts (MEFs) to investigate potential compensatory relationships between PrxI and PrxII. ROS levels induced by oxidative stress were increased in $PrxII^{-/-}$ MEFs as compared to wild-type MEFs. Moreover, exposure of $PrxII^{-/-}$ MEFs to $H_2O_2$ caused a reduction in cell viability of about 10%, and the proportion of cell death was increased compared to mock-treated $PrxII^{-/-}$ MEFs. However, transient over-expression of PrxI in $PrxII^{-/-}$ MEFs conferred increased resistance against the oxidative damage, as evidenced by increased cell viability and reduced intracellular ROS levels under $H_2O_2$ stress conditions. The findings suggest that over-expressed PrxI can partly compensate for the loss of PrxII function in PrxII-deficient MEFs.

급성 부동 스트레스 후 척수 회색질에서 Peroxiredoxin I 및 III의 발현 변화 (Characterization of Peroxiredoxins in the Gray matter in the spinal cord after Acute Immobilization Stress)

  • 백남현;곽승수;이동석;이영호
    • Journal of Trauma and Injury
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    • 제19권2호
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    • pp.105-112
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    • 2006
  • Purpose: Many stresses produce reactive oxygen species and bring about mechanism of antioxidant reaction. Cytokine and a neurotransmitter through the cell membrane, as well as signal transduction through the cell membrane, are used for various pathological condition of the brain, such as neurodegenerative disease. There are several antioxidant enzymes in cells (superoxcide dismutase, glutathion peroxidasae, peroxiredoxin catalase, etc.) Methods: This study used single- or double-label immunohistochemical techniques to analyze mouse spinal neuron cells expressing Prx I and Prx III after acute mobilization stress. Results: Prx I was observed in dendritic cell of the gray matter of the spinal cord, and Prx III was observed in the cytoplasm of the GM of the spinal cord. Conclusion: The results of this study will help to explain differences of expression in the distributions of the peroxiredoxin enzymes of the spinal cord.

Peroxiredoxin I deficiency attenuates phagocytic capacity of macrophage in clearance of the red blood cells damaged by oxidative stress

  • Han, Ying-Hao;Kwon, Tae-Ho;Kim, Sun-Uk;Ha, Hye-Lin;Lee, Tae-Hoon;Kim, Jin-Man;Jo, Eun-Kyeong;Kim, Bo-Yeon;Yoon, Do-Young;Yu, Dae-Yeul
    • BMB Reports
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    • 제45권10호
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    • pp.560-564
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    • 2012
  • The role of peroxiredoxin (Prx) I as an erythrocyte antioxidant defense in red blood cells (RBCs) is controversial. Here we investigated the function of Prx I by using Prx $I^{-/-}$ and Prx I/$II^{-/-}$ mice. Prx $I^{-/-}$ mice exhibited a normal blood profile. However, Prx I/$II^{-/-}$ mice showed more significantly increased Heinz body formation as compared with Prx $II^{-/-}$ mice. The clearance rate of Heinz body-containing RBCs in Prx $I^{-/-}$ mice decreased significantly through the treatment of aniline hydrochloride (AH) compared with wild-type mice. Prx I deficiency decreased the phagocytic capacity of macrophage in clearing Heinz body-containing RBCs. Our data demonstrate that Prx I deficiency did not cause hemolytic anemia, but showed that further increased hemolytic anemia symptoms in Prx $II^{-/-}$ mice by attenuating phagocytic capacity of macrophage in oxidative stress damaged RBCs, suggesting a novel role of Prx I in phagocytosis of macrophage.

Peroxiredoxin I participates in the protection of reactive oxygen species-mediated cellular senescence

  • Park, Young-Ho;Kim, Hyun-Sun;Lee, Jong-Hee;Cho, Seon-A;Kim, Jin-Man;Oh, Goo Taeg;Kang, Sang Won;Kim, Sun-Uk;Yu, Dae-Yeul
    • BMB Reports
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    • 제50권10호
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    • pp.528-533
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    • 2017
  • Peroxiredoxin I (Prx I) plays an important role as a reactive oxygen species (ROS) scavenger in protecting and maintaining cellular homeostasis; however, the underlying mechanisms are not well understood. Here, we identified a critical role of Prx I in protecting cells against ROS-mediated cellular senescence by suppression of $p16^{INK4a}$ expression. Compared to wild-type mouse embryonic fibroblasts (WT-MEFs), Prx $I^{-/-}$ MEFs exhibited senescence-associated phenotypes. Moreover, the aged Prx $I^{-/-}$ mice showed an increased number of cells with senescence associated-${\beta}$-galactosidase (SA-${\beta}$-gal) activity in a variety of tissues. Increased ROS levels and SA-${\beta}$-gal activity, and reduction of chemical antioxidant in Prx $I^{-/-}$ MEF further supported an essential role of Prx I peroxidase activity in cellular senescence that is mediated by oxidative stress. The up-regulation of $p16^{INK4a}$ expression in Prx $I^{-/-}$ and suppression by overexpression of Prx I indicate that Prx I possibly modulate cellular senescence through $ROS/p16^{INK4a}$ pathway.

고산소에 노출된 신생 백서와 성숙 백서에 있어서Peroxiredoxin I과 II의 발현 (Expression of Peroxiredoxin I and II in Neonatal and Adult Rat Lung Exposed to Hyperoxia)

  • 이창률;김형중;안철민;김성규
    • Tuberculosis and Respiratory Diseases
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    • 제53권1호
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    • pp.36-45
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    • 2002
  • 배 경 :포유동물은 고산소 노출되면 이에 적응하기 위해 성숙 폐장의 항산화 효소의 활성도가 증가하는 것으로 알려져 있다. 신생 폐장에서는 이들의 활성도가 뚜렷이 증가하고 이는 고산소 노출에 내성을 보이는 중요한 기전으로 알려져 있다. Peroxiredoxin은 세포내 항산화 효소로 세포내 많은 양이 존재하고 다양한 세포에 분포하고 있다. 그중 Prx I 및 II는 세포질에 존재하는 주된 동종 효소이다.본 연구는 고산소를 투여하여 성숙 백서의 폐장에서 Prx I과 Prx II mRNA 및 단백의 발현을 평가하여 신생 백서의 폐장에서의 발현과 비교하고자 하였다. 방 법 :성숙 백서와 임신 백서로부터 분만하여 얻은 신생 백서를 무작위로 고산소를 시간별로 투여후에 폐조직과 기관지폐포세척액을 얻었다. Prx I 및 Prx II mRNA는 Northernblot 방법으로 구하였으며 Actin mRNA을 내부 기준으로 하여 상대 발현을 평가하였다. Prx I 및 Prx II 단백은 Westernblot 방법으로 구하였으며 Actin 단백을 내부 기준으로 하여 상대 발현을 평가하였다. 결 과 : 성숙 백서에서 고산소 노출 후 24 시간에 Prx I mRNA 발현이 약간의 증가가 유도되었으며 신생 백서에서 고산소 노출 후 24 시간에 Prx I mRNA 발현이 현저한 증가가 유도되었다. 그러나 Prx II mRNA는 고산소 노출 내내 발현이 변화가 없었다. 성숙 및 신생 백서에서 고산소 노출 내내 Prx I 및 Prx II 단백의 발현이 변화가 없었으며 성숙 백서에서 고산소 노출 내내 기관지폐포세척액내 Prx I 및 Prx II 단백의 양의 변화가 없었다. 결 론 : 성숙 및 신생 백서에서 고산소 노출에 의해 Prx I 및 II의 발현이 전사 과정 에서 서로 다르게 조절된다. 성숙 백서보다 신생 백서에서 고산소 노출에 의한 Prx I mRNA의 뚜렷한 발현 증가는 신생 백서가 고산소에 내성을 보이는 하나의 기전으로 생각된다.

패혈증 동물 모델에서 Peroxiredoxin 및 Thioredoxin의 발현 변화 (Altered Expression of Peroxiredoxin and Thioredoxin in Septic Animal Model)

  • 김형중;채호준;안철민;김성규;이원영
    • Tuberculosis and Respiratory Diseases
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    • 제47권4호
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    • pp.451-459
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    • 1999
  • 배 경 : 패혈증에서 과도한 활성산소종의 생성은 급성 폐손상의 병리 기전에 중요한 역할을 한다. Catalase 및 MnSOD 등의 항산화 단백은 패혈증 환자의 혈청내 증가하며 급성호흡곤란증후군의 발생 예측 인자 및 패혈증의 예후 인자로 알려져 있다. Peroxiredoxin(Prx) 는 최근 독특하고 중요한 세포내 항산화 단백으로 알려져 있다. 본 연구는 대식세포인 mouse monocyte-macrophages(RAW 264.7) 세포에 산화 스트레스 및 내독소 처리후 Prx I 및 Prx II의 발현 평가하고 패혈증 동물 모델에서 복강세척액 및 기관지폐포세척액내 Prx I, Prx II 및 Trx의 양을 측정하였다. 방 법 : Prx I, Prx II 및 Trx에 대한 특이 항체를 이용하여 immunoblot 분석으로 호중구, 대식세포 및 적혈구에 이들의 분포를 평가하였다. Mouse monocyte-macrophages 세포에 $5\;{\mu}M$ menadione 및 1 mg/ml lipopolysaccharide(LPS) 을 처치하여 Prx I 및 Prx II의 발현을 평가하였으며 6 mg/Kg LPS를 복강내 투여하여 유발한 복강내 패혈증 동물의 복강세척액내 Prx I, Prx II 및 Trx의 양을 측정하였으며 복강내 패혈증 동물 및 5 mg/Kg LPS를 정맥내 투여하여 유발한 정맥내 패혈증 동물에서 기관지폐포세척액내 Prx I, Prx II 및 Trx을 측정하였으며 폐장의 염증 정도와 비교하였다. 결 과 : Prx I 및 Prx II의 분포는 호중구, 폐포대식세포 및 적혈구에서 서로 다른 양상을 보였다. Mouse monocyte-macrophages 세포에 $5\;{\mu}M$ menadione 및 $1\;{\mu}g/ml$ lipopolysaccharide을 처치하였을 때 Prx I 발현은 증가하였으나 Prx II 발현은 변화하지 않았다. 복강내 패혈증 동물에서 복강세척액내 Prx I, Prx II 및 Trx의 양은 증가하였으나 복강내 패혈증 및 정맥내 패혈증 동물에서 기관지폐포세척액내 폐장 염증 정도와 관계없이 Prx I, Prx II 및 Trx의 양은 증가하지 않았다. 결 론 : 세포내 항산화 단백으로서 mouse monocyte-macrophages 세포에서 Prx I의 발현은 산화 스트레스 및 내독소 처치후 증가한다. Prx I, Prx II 및 Trx양은 패혈증 동물 모델에서 국소 염증 부위에서 증가하나 손상된 폐장에서는 증가하지 않는다.

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Molecular cloning and characterization of peroxiredoxin from Toxoplasma gondii

  • Son, Eui-Sun;Song, Kyoung-Ju;Shin, Jong-Chul;Nam, Ho-Woo
    • Parasites, Hosts and Diseases
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    • 제39권2호
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    • pp.133-141
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    • 2001
  • A cDNA of 1.1 kb comprising the gene encoding the peroxiredoxin of Toxo-plasma gondii(TgPrx) has been cloned. The open reading frame of 591 Up was translated into a protein of 196 amino acids with a molecular mass of 25 kDa. Conserved 2 cysteine domains of Phe-Val-Cys-Pro and Glu-Val-Cys-Pro indicated TgPrx belonged to 2-Cys Prx families. TgPrx showed the highest homology with that of Arabidopsis thaliana by 53.9% followed by Entamoeba histolytica with 39.5% by the amino acid sequence alignment. Polyclonal antibody against recombinant TgPrx detected 25 kDa band in T. gondii without binding to host cell proteins TgPrx was located in the cytoplasm of T. gondii extracellularly or intracellularly by immunofluorescence assay. The expression of TgPrx was increased as early as 30 min after the treatment with artemisinin in the intracellular stage, while no changes in those of host Prx I and TgSOD. This result implies that TgPrx may function as an antioxidant protecting the cell from the attack of reactive oxygen intermediates. It is also suggested that TgPrx is a possible target of chemotherapy.

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The Effects of Peroxiredoxin III on Human HeLa Cell Proliferation

  • Choi, Soonyoung;Kang, Sangwon
    • IMMUNE NETWORK
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    • 제3권4호
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    • pp.276-280
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    • 2003
  • Background: Peroxidases (Prx) of the peroxiredoxin family reduce hydrogen peroxide and alkyl hydroperoxides to water and alcohol respectively. Hydrogen peroxide is implicated as an intracellular messenger in various cellular responses such as proliferation and differentiation. And Prx I activity is regulated by Cdc-2 mediated phosphorylation. This work was undertaken to investigate the proliferation role of peroxiredoxin III as a member of Prx family in Prx III overexpressed HeLa cell line. Methods: To provide further evidence of proliferation, we selected Prx III stably expressed HeLa Tet-off cell lines. Cell proliferation was examined by using proliferation reagent WST-1 in the presence or absence of doxycycline. Prx III, 2-cys Prx enzymes exist as homodimer. The activation of Prx III heterodimer with induced and endogenous Prx III was examined by immunoprecipitation. Results: Immunoprecipitation analysis of the induced and endogenous Prx III with anti-myc showed that the induced wild type (WT) and dominant negative (DN) Prx III from HeLa Prx III Tet-off stable cell heterodimerized with endogenous Prx III each other. And the expression level of induced Prx III was examined after addition of doxycycline. By 72 hr, the expression level of induced Prx III was diminished gradually and the half-life of the induced wild type Prx III was approximately 17 hr. The proliferation experiment demonstrated that the relative proliferation value of induced and endogenous WT Prx III stable cell has no changes but the DN Prx III induced HeLa Tet-off stable cells were lower than endogenous Prx III. Conclusion: In conclusion, the HeLa dominant negative Prx III Tet-off stable cells were decreased the proliferation.