• 제목/요약/키워드: 2-cys peroxiredoxin

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Artificial Oxidation of Cysteine Residues in Peroxiredoxin 6 Detected by Twodimensional Gel Electrophoresis and Capillary Liquid Chromatography-Electrospray Mass Spectrometry

  • Kimata, Junko;Shigeri, Yasushi;Yoshida, Yasukazu;Niki, Etsuo;Kinumi, Tomoya
    • Mass Spectrometry Letters
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    • 제3권1호
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    • pp.10-14
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    • 2012
  • Artificially oxidized cysteine residues in peroxiredoxin 6 (Prx6) were detected by electrospray interface capillary liquid chromatography-linear ion trap mass spectrometry after the preparation of two-dimensional gel electrophoresis (2D-GE). We used Prx6 as a model protein because it possesses only two cysteine residues at the 47th and 91st positions. The spot of Prx6 on 2D-GE undergoes a basic (isoelectric point, pI 6.6) to acidic (pI 6.2) shift by exposure to peroxide due to selective overoxidation of the active-site cysteine Cys-47 but not of Cys-91. However, we detected a tryptic peptide containing cysteine sulfonic acid at the 47th position from the basic spot and a peptide containing both oxidized Cys-47 and oxidized Cys-91 from the acidic spot of Prx6 after the separation by 2D-GE. We prepared two types of oxidized Prx6s: carrying oxidized Cys-47 (single oxidized Prx6), and other carrying both oxidized Cys-47 and Cys-91 (double oxidized Prx6). Using these oxidized Prx6s, the single oxidized Prx6 and double oxidized Prx6 migrated to pIs at 6.2 and 5.9, respectively. These results suggest that oxidized Cys-47 from the basic spot and oxidized Cys-91 from the acidic spot are generated by artificial oxidation during sample handling processes after isoelectric focusing of 2D-GE. Therefore, it is important to make sure of the origin of cysteine oxidation, if it is physiological or artificial, when an oxidized cysteine residue(s) is identified.

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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Classification of Peroxiredoxin Subfamilies Using Regular Expressions

  • Chon, Jae Kyung;Choi, Jongkeun;Kim, Sang Soo;Shin, Whanchul
    • Genomics & Informatics
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    • 제3권2호
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    • pp.55-60
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    • 2005
  • Peroxiredoxins (Prx's) are a superfamily of peroxidases that are ubiquitous in all super-kingdoms. Previous biochemical and structural studies have suggested that Prx's could be divided into five subfamilies (1-Cys, Typical 2-Cys, Atypical 2-Cys C-, L- and R- types). In this work, we have developed a set of regular expression patterns describing subfamily-specific spatial constraints of the key catalytic residues. Using these patterns, 1,016 Prx's available in public databases were classified into the five subfamilies. Our method performed well for most of the types except for Atypical 2 Cys R type.

Survival of APC-mutant colorectal cancer cells requires interaction between tankyrase and a thiol peroxidase, peroxiredoxin II

  • Kang, Dong Hoon;Lee, Joanna H.S.;Kang, Sang Won
    • BMB Reports
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    • 제50권8호
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    • pp.391-392
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    • 2017
  • Overexpression of mammalian 2-Cys peroxiredoxin (Prx) enzymes is observed in most cancer tissues. Nevertheless, their specific roles in colorectal cancer (CRC) progression has yet to be fully elucidated. Here, a novel molecular mechanism by which PrxII/Tankyrase (TNKS) interaction mediates survival of adenomatous polyposis coli (APC)-mutant CRC cells was explored. In mice with an inactivating APC mutation, a model of spontaneous intestinal tumorigenesis, deletion of PrxII reduced intestinal adenomatous polyposis and thereby increased survival. In APC-mutant human CRC cells, PrxII depletion hindered PARP-dependent Axin1 degradation through TNKS inactivation. $H_2O_2-sensitive$ Cys residues in the zinc-binding domain of TNKS1 was found to be crucial for PARsylation activity. Mechanistically, direct binding of PrxII to ARC4/5 domains of TNKS conferred vital redox protection against oxidative inactivation. As a proof-of-concept experiment, a chemical compound targeting PrxII inhibited the growth of tumors xenografted with APC-mutation-positive CRC cells. Collectively, the results provide evidence revealing a novel redox mechanism for regulating TNKS activity such that physical interaction between PrxII and TNKS promoted survival of APC-mutant colorectal cancer cells by PrxII-dependent antioxidant shielding.

The Roles of Peroxiredoxin and Thioredoxin in Hydrogen Peroxide Sensing and in Signal Transduction

  • Netto, Luis E.S.;Antunes, Fernando
    • Molecules and Cells
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    • 제39권1호
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    • pp.65-71
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    • 2016
  • A challenge in the redox field is the elucidation of the molecular mechanisms, by which $H_2O_2$ mediates signal transduction in cells. This is relevant since redox pathways are disturbed in some pathologies. The transcription factor OxyR is the $H_2O_2$ sensor in bacteria, whereas Cys-based peroxidases are involved in the perception of this oxidant in eukaryotic cells. Three possible mechanisms may be involved in $H_2O_2$ signaling that are not mutually exclusive. In the simplest pathway, $H_2O_2$ signals through direct oxidation of the signaling protein, such as a phosphatase or a transcription factor. Although signaling proteins are frequently observed in the oxidized state in biological systems, in most cases their direct oxidation by $H_2O_2$ is too slow ($10^1M^{-1}s^{-1}$ range) to outcompete Cys-based peroxidases and glutathione. In some particular cellular compartments (such as vicinity of NADPH oxidases), it is possible that a signaling protein faces extremely high $H_2O_2$ concentrations, making the direct oxidation feasible. Alternatively, high $H_2O_2$ levels can hyperoxidize peroxiredoxins leading to local building up of $H_2O_2$ that then could oxidize a signaling protein (floodgate hypothesis). In a second model, $H_2O_2$ oxidizes Cys-based peroxidases that then through thiol-disulfide reshuffling would transmit the oxidized equivalents to the signaling protein. The third model of signaling is centered on the reducing substrate of Cys-based peroxidases that in most cases is thioredoxin. Is this model, peroxiredoxins would signal by modulating the thioredoxin redox status. More kinetic data is required to allow the identification of the complex network of thiol switches.

참전복(Haliotis discus hannai)에서 분리한 peroxiredoxin 2 유전자의 분자생물학적 고찰 및 발현분석 (Molecular Characterization and Expression Analysis of Peroxiredoxin 2 cDNA from Abalone (Haliotis discus hannai))

  • 문지영;박은희;공희정;김영옥;김동균;안철민;남보혜
    • 생명과학회지
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    • 제24권12호
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    • pp.1291-1300
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    • 2014
  • 본 연구에서는 참전복(Haliotis discus hannai)의 대용량 염기서열 분석을 통해 peroxiredoxin (Prx) 2 유전자의 full length의 cDNA를 동정하였다. 참전복 Prx 2 유전자의 총 길이는 1,052 bp로 597 bp의 open reading frame는 총 199개의 아미노산을 코딩하고 있으며 분자량은 22 kDa, 등전점은 7.58로 예측되었다. 참전복 Prx 2 아미노산서 열에는 typical 2-Cys Prx의 특징을 갖는 motif와 효소활성에 중요한 cysteine잔기가 매우 보존되어 있었다. 참전복 Prx 2 아미노산 서열은 다른 종의 Prx 2와 64~99% 유사하였고, 특히 패류의 Prx 2와 가장 유사성이 높았다. 참전복 Prx 2 유전자의 mRNA는 관찰된 모든 조직에서 발현하고 있었으며, 특히 외투막, 아가미, 족부, 간췌장, 소화관에서 높은 발현이 확인되었다. 참전복의 Prx 2는 비브리오균으로 감염시킨 전복의 혈구세포에서 감염 후 1시간 째 발현이 증가했다가 서서히 감소하였고, 간췌장 조직에서는 감염 6시간 경과 후 발현 정도가 최고로 증가했다가 감소하였다. 따라서 typical 2-Cys Prx의 특징을 잘 보존되어 있는 참전복 Prx 2는 병원균 감염에 따른 산화스트레스 조절에 관여하는 인자로 중요한 역할을 할 것으로 예상된다.

Microbial 2-Cys Peroxiredoxins: Insights into Their Complex Physiological Roles

  • Toledano, Michel B.;Huang, Bo
    • Molecules and Cells
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    • 제39권1호
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    • pp.31-39
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    • 2016
  • The peroxiredoxins (Prxs) constitute a very large and highly conserved family of thiol-based peroxidases that has been discovered only very recently. We consider here these enzymes through the angle of their discovery, and of some features of their molecular and physiological functions, focusing on complex phenotypes of the gene mutations of the 2-Cys Prxs subtype in yeast. As scavengers of the low levels of $H_2O_2$ and as $H_2O_2$ receptors and transducers, 2-Cys Prxs have been highly instrumental to understand the biological impact of $H_2O_2$, and in particular its signaling function. 2-Cys Prxs can also become potent chaperone holdases, and unveiling the in vivo relevance of this function, which is still not established, should further increase our knowledge of the biological impact and toxicity of $H_2O_2$. The diverse molecular functions of 2-Cys Prx explain the often-hard task of relating them to peroxiredoxin genes phenotypes, which underscores the pleiotropic physiological role of these enzymes and complex biologic impact of $H_2O_2$.

Peroxiredoxin 유전자 발현 산화스트레스 내성 형질전환 고구마의 선발 (Selection of transgenic sweetpotato plants expressing 2-Cys peroxiredoxin with enhanced tolerance to oxidative stress)

  • 김명덕;양경실;권석윤;이상열;곽상수;이행순
    • Journal of Plant Biotechnology
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    • 제36권1호
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    • pp.75-80
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    • 2009
  • 산화스트레스에 내성을 지닌 형질전철 고구마 식물체를 개발하기 위해서 산화스트레스에 의해 발현이 강하게 유도되는 SWPA2 프로모터 또는 CaMV 35S 프로모터에 2-Cys peroxiredoxin (Prx) 유전자가 발현되도록 연결한 형질전철 벡터 (pSP-K, pEP-K)를 제작한 후, 각각 Agrobacterium 매개로 형질전환 하였다. 카나마이신 저항성 배발생 캘러스로부터 체세포배발생 과정을 거쳐 100mg/L kanainycin이 포함된 MS 배지에서 소식물체로 발달하였다. Southern 분석으로 외래 유전자가 안정적으로 고구마 게놈 내로 삽입되었음을 확인하였다. 형질전환 고구마 잎 조직을 대상으로 $20{\mu}M$ methyl viologen에 대한 내성 검정을 조사하여 형질전환 고구마 식물체가 비형질전환 식물체 또는 벡터 대조구 식물체 보다 40% 정도 높은 신화스트레스에 대한 내성을 보여주었다. 선발된 형질전환 식물계는 저온, 건조 등의 여러 기지 환경스트레스 내성검정에 이용될 것이며 향후 복합재해 내성 고구마 계통육성에 이용될 수 있을 것으로 기대된다.

Enhancement of the Chaperone Activity of Alkyl Hydroperoxide Reductase C from Pseudomonas aeruginosa PAO1 Resulting from a Point-Specific Mutation Confers Heat Tolerance in Escherichia coli

  • Lee, Jae Taek;Lee, Seung Sik;Mondal, Suvendu;Tripathi, Bhumi Nath;Kim, Siu;Lee, Keun Woo;Hong, Sung Hyun;Bai, Hyoung-Woo;Cho, Jae-Young;Chung, Byung Yeoup
    • Molecules and Cells
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    • 제39권8호
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    • pp.594-602
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    • 2016
  • Alkyl hydroperoxide reductase subunit C from Pseudomonas aeruginosa PAO1 (PaAhpC) is a member of the 2-Cys peroxiredoxin family. Here, we examined the peroxidase and molecular chaperone functions of PaAhpC using a site-directed mutagenesis approach by substitution of Ser and Thr residues with Cys at positions 78 and 105 located between two catalytic cysteines. Substitution of Ser with Cys at position 78 enhanced the chaperone activity of the mutant (S78C-PaAhpC) by approximately 9-fold compared with that of the wild-type protein (WT-PaAhpC). This increased activity may have been associated with the proportionate increase in the high-molecular-weight (HMW) fraction and enhanced hydrophobicity of S78C-PaAhpC. Homology modeling revealed that mutation of $Ser^{78}$ to $Cys^{78}$ resulted in a more compact decameric structure than that observed in WT-PaAhpC and decreased the atomic distance between the two neighboring sulfur atoms of $Cys^{78}$ in the dimer-dimer interface of S78C-PaAhpC, which could be responsible for the enhanced hydrophobic interaction at the dimer-dimer interface. Furthermore, complementation assays showed that S78C-PaAhpC exhibited greatly improved the heat tolerance, resulting in enhanced1 survival under thermal stress. Thus, addition of Cys at position 78 in PaAhpC modulated the functional shifting of this protein from a peroxidase to a chaperone.

Molecular Cloning, Expression and Functional Characterization of a Peroxiredoxin from the Mole Cricket, Gryllotalpa orientalis

  • Kim, Iksoo;Kang sun Ryu;Kim, Jin-Won;Ahn, Mi-Young;Kwang Sik;Jin, Byung-Rae
    • 한국잠사학회:학술대회논문집
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    • 한국잠사학회 2003년도 International Symposium of Silkworm/Insect Biotechnology and Annual Meeting of Korea Society of Sericultural Science
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    • pp.130-133
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    • 2003
  • Peroxiredoxins are a family of antioxidant proteins ubiquitously found in all living organisms. A type of peroxidase enzyme, named thioredoxin peroxidase (TPx), that reduces $H_2O$$_2$ with the use of electrons from thioredoxin and contains two essential cysteines was identified in a wide variety of organisms ranging from prokaryotes to mammals. TPx homologs, termed peroxiredoxin (Prx), have also been identified and include several proteins, designated 1-Cys Prx, that contain only one conserved cysteine. (omitted)

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