• 제목/요약/키워드: Peroxiredoxin III

검색결과 9건 처리시간 0.021초

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.

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.

Characterization of Mouse Peroxiredoxin III Genomic DNA and Its Expression

  • Lee, Tae-Hoon;Kim, Sun-Uk;Lee, Kyung-Kwang;Yu, Dae-Yeul
    • 한국동물번식학회:학술대회논문집
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    • 한국동물번식학회 2002년도 춘계학술발표대회 발표논문초록집
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    • pp.64-64
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    • 2002
  • Peroxiredoxins (Prxs) possess protective activity against oxygen radicals generated by thiol-catalyzed oxidative systems. We already reported the genomic structure and its expression of mouse Prx Ⅰ, Ⅱ, and 1-Cys Prx. However, the Prx Ⅲ has not been determined. That was initially defined transiently expressed gene, mouse MER5, of murine erythroleukaemia cell differentiation. In addition, this protein was recently redefined a member of the thiol-specific antioxidant gene family. (omitted)

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인체의 폐암과 정상 폐조직에서 Peroxiredoxin 및 Thioredoxin의 발현 양상 (Expression of Peroxiredoxin and Thioredoxin in Human Lung Cancer and Paired Normal Lung)

  • 김영선;박주헌;이혜림;심진영;최영인;오윤정;신승수;최영화;박광주;박래웅;황성철
    • Tuberculosis and Respiratory Diseases
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    • 제59권2호
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    • pp.142-150
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    • 2005
  • 연구배경 : Peroxiredoxin (Prx) 은 최근에 알려진 항산화제로 세포의 증식과 분화, 세포사멸이나 발암과정에 관여하는 것으로 알려져 있다. 하지만, 현재까지 폐암을 비롯한 각종 질병에서의 이들 Prx단백의 역할은 잘 규명되어 있지 않다. 이에 본 연구는 폐암 조직과 정상폐조직에서 Prx 단백의 발현 양상과 분포를 연구하여 이들의 병태 생리학적인 의미를 찾아보고자 하였다. 방 법 : 아주대학교 병원에서 폐암으로 진단된 환자의 폐암조직과, 동일 환자의 정상 폐조직에서, 1 차원전기영동 (reducing 조건과 non-reducing 조건에서의 SDSPAGE) 혹은 2차원전기영동을 시행한 후 Western blot으로 Prx, Trx 및 TR의 발현 양상을 분석 하였으며, 백서의 정상 폐조직과, 환자의 폐암 조직에서 anti-Prx rabbit polyclonal 항체로 하여 면역조직화학염색법을 통해, Prx 단백의 분포를 관찰하였다. 결 과 : 면역조직화학염색법 결과 백서의 정상 폐조직에서는 Prx I, II, III 및 V 유형이, 주로 기관지상피세포, 폐포상피세포 및 폐포대식세포에서 발현되고 있음을 관찰하였다. 인체 폐암조직에서는, 정상 폐조직 부위에 비해서 Prx I 과 Prx III 유형 및 Trx단백의 발현이 선택적으로 증가되어 있고, 특히, 2차원 전기영동을 통한 프로티옴 분석에서 산화된 형태의 Prx I 과 Prx II가 증가 한 것을 비롯하여, 분자량과 등전점(pI)이 약간 변화된 형태의 Prx III가 폐암조직에 존재함을 알 수 있었다. 한편, 폐암 조직의 non-reducing 전기영동 후 Western blot에서는, monomer와 dimer 사이의 중간 크기에 해당하는 약 40 kDa과 200 kDa 이상 크기의, 항 Prx 항체와 반응하는 단백 띠 (reactive bands)가 관찰되었다. 결 론 : 폐암 조직에서 관찰되는 Prx I 과 Prx III 유형 및 Trx의 과발현 양상은, 종양 세포들이 주변의 미세 환경으로부터 겪는 여러 스트레스에 대하여 단백질을 보호하고 세포의 생명력을 유지하는데 있어 주요한 역할을 하는 것으로 사료된다.

폐포상피세포, 대식세포를 비롯한 각종 세포주에서 H2O2에 의한 Peroxiredoxin 동위효소들의 산화에 따른 불활성화와 재생 (Oxidative Inactivation of Peroxiredoxin Isoforms by H2O2 in Pulmonary Epithelial, Macrophage, and other Cell Lines with their Subsequent Regeneration)

  • 오윤정;김영선;최영인;신승수;박주헌;최영화;박광주;박래웅;황성철
    • Tuberculosis and Respiratory Diseases
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    • 제58권1호
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    • pp.31-42
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    • 2005
  • 배 경 : peroxiredoxins는 거의 모든 생명체에 공통적으로 보존되어 있으며, 최근에 발견된, 특이한 peroxidases로 인체에서 6가지 동위효소가 알려져 있으며, 산화스트레스에 대한 방어역할을 담당하고, $H_2O_2$신호전달 과정에서 중요한 조절 역할을 한다. peroxiredoxin은 $H_2O_2$ 처리 과정 중에서 자신이 산화되어 불활성화 되는데, 산화된 후 다시 재생되는 것으로 보고되나 그 생리적은 의미는 분명하지 않다. 이에 저자들을 폐상 피세포주, 대식세포주, 폐포모세혈관 내피세포주 및 기타 섬유모세포주 들에서 $H_2O_2$ 에 의한 Prx의 산화과정과 재생을 알아보고자 하였다. 방 법 : 수술 환자에서 적출한 정상 폐조직과, 세포주로는 평상시 산화 스트레스에 노출이 많을 것으로 예상되는 세포들로써, 폐포상피세포의 I 형 및 II 형 세포에서 기원한 A549, WI 26, Raw 264.7, Rat2,및 폐포 모세혈관 내피세포주 등을 이용하여 이를 $50{\mu}M$. $100{\mu}M$, $500{\mu}M$$H_2O_2$로 산화시켜 불활성화 한 후, 추적관찰 하였으며, 시간대 별로(0. 10, 30, 60, 120, 240, 480 분) 수확하여, 이를 1차원 non-reducing SDS-PAGE 및 2차원 전기영동로 분리 후, silver stain 과 Western blot으로 분석 하였다. 결 과 : 1. 실험에 사용된 모든 세포주에서, $H_2O_2$ 농도에 비례하여 peroxiredoxin I, II, III 의 불활성화를 관찰할 수 있었고, 10분에 최고로 불활성화되었다. 2. 산화된 이후, 30분경부터 peroxiredoxin 의 재생이 관찰되기 시작 하였으며, 2시간 이후부터 확연하였다. 3. 다시 재생된 peroxiredoxin은 $H_2O_2$투여로서, 다시 불활성화되어, 재생된 Prx 가 활성을 지닌 단백질임을 알 수 있었다. 4. 재생의 속도는 사용된 세포주마다 차이가 있었으며 (A549 >Raw 264.7 >$Rat_2$ >WI26), 단백질 합성억제제인 cycloheximide ($10{\mu}g/ml$) 존재 하에서도 변함 없이 관찰되었다. 결 론 : 세포 내에는 산화되어 불활성화된 peroxiredoxin을 재생하는 체계가 존재 하며, 이는 활성부위 cysteine을 갖는 다른 단백질에도 공통적으로 적용될 수 있는 분자 스위치일 가능성이 높으며, 산화에 의한 신호전달과정이나, 질병 모델에서 Prx 단백의 재생 체계의 이상과 병인에 관한 추가적인 연구가 필요할 것으로 사료된다.

Expression Profiles of Prx I, II and III in Murine Reproductive System

  • Han, Y.H.;Wang, A.G.;Lee, T.H.;Kim, S.U.;Kim, S.K.;Yu, D.Y.
    • 한국동물번식학회:학술대회논문집
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    • 한국동물번식학회 2002년도 춘계학술발표대회 발표논문초록집
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    • pp.67-67
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    • 2002
  • The imbalance between reactive oxygen species(ROS) production and total antioxidant capacity reproduction system is correlated with infertility. Therefore, this study was designed to investigate the expression patterns of peroxiredoxin(Prx), a member of antioxidant family, in reproductive system that includes testis, epididymis ovary, oviduct, and uterus. (omitted)

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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.

Cloned Placenta of Korean Native Calves Died Suddenly at Two Months after Birth Displays Differential Protein Expression

  • Kim Hong Rye;Kang Jae Ku;Lee Hye Ran;Yoon Jong Taek;Seong Hwan Hoo;Jung Jin Kwan;Park Chang Sik;Jin Dong Il
    • Reproductive and Developmental Biology
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    • 제29권2호
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    • pp.63-68
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    • 2005
  • Cloned calves derived from somatic cell nuclear transfer (SCNT) have been frequently lost by sudden death at 1 to 3 month following healthy birth. To address whether placental anomalies are responsible for the sudden death of cloned calves, we compared protein patterns of 2 placentae derived from SCNT of Korean Native calves died suddenly at two months after birth and those of 2 normal placentae obtained from AI fetuses. Placental proteins were separated using 2-Dimensional gel electrophoresis. Approximately 800 spots were detected in placental 2-D gel stained with coomassie-blue. Then, image analysis of Malanie III (Swiss Institute for Bioinformatics) was performed to detect variations in protein spots between normal and SCNT placentae. In the comparison of normal and SCNT samples, 8 spots were identified to be up-regulated proteins and 24 spots to be down-regulated proteins in SCNT placentae, among which proteins were high mobility group protein HMG1, apolipoprotein A-1 precursor, bactenecin 1, tropomyosin beta chain, $H^+-transporting$ ATPase, carbonic anhydrase II, peroxiredoxin 2, tyrosine-rich acidic matrix protein, serum albumin precursor and cathepsin D. These results suggested that the sudden death of cloned calves might be related to abnormal protein expression in placenta.

Analysis and Characterization of Glutathione Peroxidases in an Environmental Microbiome and Isolated Bacterial Microorganisms

  • Yun-Juan Bao;Qi Zhou;Xuejing Yu;Xiaolan Yu;Francis J. Castellino
    • Journal of Microbiology and Biotechnology
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    • 제33권3호
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    • pp.299-309
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    • 2023
  • Glutathione peroxidases (Gpx) are a group of antioxidant enzymes that protect cells or tissues against damage from reactive oxygen species (ROS). The Gpx proteins identified in mammals exhibit high catalytic activity toward glutathione (GSH). In contrast, a variety of non-mammalian Gpx proteins from diverse organisms, including fungi, plants, insects, and rodent parasites, show specificity for thioredoxin (TRX) rather than GSH and are designated as TRX-dependent peroxiredoxins. However, the study of the properties of Gpx in the environmental microbiome or isolated bacteria is limited. In this study, we analyzed the Gpx sequences, identified the characteristics of sequences and structures, and found that the environmental microbiome Gpx proteins should be classified as TRX-dependent, Gpx-like peroxiredoxins. This classification is based on the following three items of evidence: i) the conservation of the peroxidatic Cys residue; ii) the existence and conservation of the resolving Cys residue that forms the disulfide bond with the peroxidatic cysteine; and iii) the absence of dimeric and tetrameric interface domains. The conservation/divergence pattern of all known bacterial Gpx-like proteins in public databases shows that they share common characteristics with that from the environmental microbiome and are also TRX-dependent. Moreover, phylogenetic analysis shows that the bacterial Gpx-like proteins exhibit a star-like radiating phylogenetic structure forming a highly diverse genetic pool of TRX-dependent, Gpx-like peroxidases.