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Identification and characterization of base excision repair enzymes involved in the repair of oxidative DNA damage

Research Project

Project/Area Number 15310038
Research Category

Grant-in-Aid for Scientific Research (B)

Allocation TypeSingle-year Grants
Section一般
Research Field Risk sciences of radiation/Chemicals
Research InstitutionHIROSHIMA UNIVERSITY

Principal Investigator

IDE Hiroshi  Hiroshima University, Graduate School of Science, Professor, 大学院・理学研究科, 教授 (30223126)

Co-Investigator(Kenkyū-buntansha) TERATO Hiroaki  Hiroshima University, Graduate School of Science, Research Associate, 大学院・理学研究科, 助手 (00243543)
KUBO Kihei  Osaka Prefecture University, Graduate School of Agriculture and Biological Science, Professor, 大学院・生命環境科学研究科, 教授 (40117619)
Project Period (FY) 2003 – 2005
Project Status Completed (Fiscal Year 2005)
Budget Amount *help
¥15,300,000 (Direct Cost: ¥15,300,000)
Fiscal Year 2005: ¥3,600,000 (Direct Cost: ¥3,600,000)
Fiscal Year 2004: ¥5,300,000 (Direct Cost: ¥5,300,000)
Fiscal Year 2003: ¥6,400,000 (Direct Cost: ¥6,400,000)
KeywordsDNA damage / base excision repair enzymes / DNA glycosylase / crosslink / オキザニン / デオキシリボノラクトン / DNA修復酵素 / 活性酸素 / 塩基除去修復
Research Abstract

In this study, we have performed identification and characterization of mammalian DNA glycosylases to elucidate the repair mechanism of oxidative DNA damage in mammalian cells. The findings of this research are summarized as follows.
(1) DNA damage recognition proteins were isolated from HeLa cell extracts by mechanism-based trapping assays using oxanine-containing oligonucleotides as probes. About 14 proteins (28-69 kDa) were identified as trapped products in SDS-PAGE analysis. Mass fingerprinting analysis of trapped products indicates, together with histone, several proteins that might be involved in DNA repair. Detailed analysis of their function is ongoing.
(2) DNA glycosylase activity for 5-formyluracil (fU) was isolated from rat liver and identified as SMUG1. Human SMUG1 recognized uracil and its derivatives bearing an oxidized group at the ring C5 position, i.e., fU, 5-hydroxymethyluracil, and 5-hydroxyuracil. SMUG1 accounted for dominant activities for these lesions in HeLa cells. Thus, SMUG1 is a new member of DNA glycosylases involved in the repair of oxidative damage.
(3) The damage specificities of human glycosylases (hNTH1, hNEIL1, and hNEIL2) have been characterized and compared to those of E.coli counterparts. Despite being homologues, human and E.coli homologues (Endo III vs.hNTH1, Endo VIII vs.hNEIL1) exhibit significantly different damage preferences, particularly, for thymine glycol stereoisomers and formamidopymidine, hNEIL2 exhibits only very weak N-glycosylase activity.
(4) Analysis of repair activity of E.coli Endo IV and yeast APN1 suggests that they initiate nucleotide incision repair (NIR) for free radical-induced DNA lesions. NIR may constitute an alternative or backup repair pathway for the base excision repair (BER) pathway in cells.

Report

(4 results)
  • 2005 Annual Research Report   Final Research Report Summary
  • 2004 Annual Research Report
  • 2003 Annual Research Report
  • Research Products

    (22 results)

All 2005 2004 2003 Other

All Journal Article (16 results) Publications (6 results)

  • [Journal Article] Repair activity of base and nucleotide excision repair enzymes for guanine lesions induced by nitrosative stress2005

    • Author(s)
      Nakano, T.
    • Journal Title

      Nucleic Acids Research 33

      Pages: 2181-2191

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2005 Annual Research Report 2005 Final Research Report Summary
  • [Journal Article] Roles of base excision repair enzymes Nthlp and Apn2p from Schizosaccharomyces pombe in processing alkylation and oxdative DNA damage2005

    • Author(s)
      Sugimoto, T.
    • Journal Title

      DNA Repair 4

      Pages: 1270-1280

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2005 Final Research Report Summary
  • [Journal Article] Roles of base excision repair enzymes Nth1p and Apn2p from Schizosaccharomyces pombe in processing alkylation and oxidative DNA damage2005

    • Author(s)
      Sugimoto, T.
    • Journal Title

      DNA Repair 4

      Pages: 1270-1280

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      2005 Final Research Report Summary
  • [Journal Article] Assessment of the genotoxic potential of nitric oxide-induced guanine lesions by in vitro reactions with Eschericia coli DNA polymelase I2005

    • Author(s)
      Nakano, T.
    • Journal Title

      Mutagenesis 20

      Pages: 209-216

    • Related Report
      2005 Annual Research Report
  • [Journal Article] Roles of base excision repair enzymes Nthlp and Apn2p from Schizosaccharomyces pombe in processing alkylation and oxidative DNA damage2005

    • Author(s)
      Sugimoto, T.
    • Journal Title

      DNA Repair 4

      Pages: 1270-1280

    • Related Report
      2005 Annual Research Report
  • [Journal Article] Differential specificity of human and Escherichia coli endonuclease III and VIII homologues for oxidative base lesions2004

    • Author(s)
      Katafuchi, A.
    • Journal Title

      Journal of Biological Chemistry 279

      Pages: 14464-14471

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2005 Final Research Report Summary 2004 Annual Research Report
  • [Journal Article] Mutational analysis of the damage-recognition and catalytic mechanism of human SMUGI DNA glycosylase2004

    • Author(s)
      Matsubara, M.
    • Journal Title

      Nucleic Acids Research 32

      Pages: 5291-5302

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2005 Final Research Report Summary
  • [Journal Article] Appha-anomeric deoxynucleotides, anoxic products of ionizing radiation, are substrates for the endonuclease IV-type AP endonucleases2004

    • Author(s)
      Ishchenko, A. A.
    • Journal Title

      Biochemistry 43

      Pages: 15210-15216

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2005 Final Research Report Summary
  • [Journal Article] Mutational analysis of the damage-recognition and catalytic mechanism of human SMUG 1 DNA glycosylase2004

    • Author(s)
      Matsubara, M.
    • Journal Title

      Nucleic Acids Research 32

      Pages: 5291-5302

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      2005 Final Research Report Summary
  • [Journal Article] Alpha-anomeric deoxynucleotides, anoxic products of ionizing radiation, are substrates for the endonuclease IV-type AP endonucleases2004

    • Author(s)
      Ishchenko, A.A.
    • Journal Title

      Biochemistry 43

      Pages: 15210-15216

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      2005 Final Research Report Summary
  • [Journal Article] The major human AP endonuclease (Ape1) is involved in the nucleotide incision repair pathway2004

    • Author(s)
      Gros, L.
    • Journal Title

      Nucleic Acids Resaerch 32

      Pages: 73-81

    • Related Report
      2004 Annual Research Report
  • [Journal Article] Human DNA glycosylases involved in the repair of oxidatively damaged DNA2004

    • Author(s)
      Ide, H.
    • Journal Title

      Biological Pharmaceutical Bulletin 27

      Pages: 480-485

    • NAID

      110003608790

    • Related Report
      2004 Annual Research Report
  • [Journal Article] Mutational analysis of the damage-recognition and catalytic mechanism of human SMUG1 DNA glycosylase2004

    • Author(s)
      Matsubara, M.
    • Journal Title

      Nucleic Acids Resaerch 32

      Pages: 5291-5302

    • Related Report
      2004 Annual Research Report
  • [Journal Article] Alpha-anomeric deoxynucleotides, anoxiac products of ionizing radiation, are substrates for the endonuclease IV-type AP endonucleases2004

    • Author(s)
      Ishchenko, A.A.
    • Journal Title

      Biochemistry 43

      Pages: 15210-15216

    • Related Report
      2004 Annual Research Report
  • [Journal Article] DNA-protein cross-link formation mediated by oxanine. A novel genotoxic mechanism of nitric oxide-induced DNA damage2003

    • Author(s)
      Nakano, T.
    • Journal Title

      Journal of Biological Chemistry 278

      Pages: 25264-25272

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2005 Final Research Report Summary
  • [Journal Article] DNA-protein cross-link formation mediated by oxanine. A novel geotoxic mechanism of nitric oxide-induced DNA damage2003

    • Author(s)
      Nakano, T.
    • Journal Title

      Journal of Biological Chemistry 278

      Pages: 25264-25272

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      2005 Final Research Report Summary
  • [Publications] Matsubara, M.: "Mammalian 5-formyluracil-DNA glycosylase. 1 Identification and characterization of a novel activity that releases 5-formyluracil from DNA"Biochemistry. 42. 4993-5002 (2003)

    • Related Report
      2003 Annual Research Report
  • [Publications] Masaoka, A.: "Mammalian 5-formyluracil-DNA glycosylase. 2 Role of SMUG1 uracil-DNA glycosylase in repair of 5-formyluracil and other oxidized and deaminated base lesions"Biochemistry. 42. 5003-5012 (2003)

    • Related Report
      2003 Annual Research Report
  • [Publications] Nakano, T.: "DNA-protein cross-link formation mediated by oxanine. A novel genotoxic mechanism of nitric oxide-induced DNA damage"Journal of Biological Chemistry. 278. 25624-25272 (2003)

    • Related Report
      2003 Annual Research Report
  • [Publications] Matsubara, M.: "Identification and characterization of mammalian 5-formyluracil-DNA glycosylase"Nucleic Acids Research. S3. 233-234 (2003)

    • Related Report
      2003 Annual Research Report
  • [Publications] Matsubara, M.: "Repair roles of hSMUGl assessed by damage specificity and cellular activity"Nucleic Acids Research. S3. 263-264 (2003)

    • Related Report
      2003 Annual Research Report
  • [Publications] Katafuchi, A.: "Repair of oxidative cytosine damage by DNA glycosylases"Nucleic Acids Research. S3. 269-270 (2003)

    • Related Report
      2003 Annual Research Report

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Published: 2003-04-01   Modified: 2016-04-21  

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