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Biochemical and Molecular Biological Studies or Structure and Function of Glutamate Racemase

Research Project

Project/Area Number 06680610
Research Category

Grant-in-Aid for General Scientific Research (C)

Allocation TypeSingle-year Grants
Research Field Functional biochemistry
Research InstitutionKYOTO UNIVERSITY

Principal Investigator

ESAKI Nobuyoshi  Institute for Chemical Research, Kyoto University Associate Professor, 化学研究所, 助教授 (50135597)

Co-Investigator(Kenkyū-buntansha) KURIHARA Tatsuo  Institute for Chemical Research, Kyoto University Instructor, 化学研究所, 助手 (70243087)
YOSHIMURA Tohru  Institute for Chemical Research, Kyoto University Instructor, 化学研究所, 助手 (70182821)
Project Period (FY) 1994 – 1995
Project Status Completed (Fiscal Year 1995)
Budget Amount *help
¥2,200,000 (Direct Cost: ¥2,200,000)
Fiscal Year 1995: ¥1,100,000 (Direct Cost: ¥1,100,000)
Fiscal Year 1994: ¥1,100,000 (Direct Cost: ¥1,100,000)
Keywordsglutamate racemase / gene cloning / Bacillus cereus / cysteine residue / composite active site / alpha, beta-elimination / suicide substrate / serine O-sulfate / composite active site
Research Abstract

The glutamate racemase gene of P.pentosaceus consists of a 795-nucleotides open reading frame, and encodes 265 amino acid residues which form a monomeric protein. The sequence shows significant homology with that of aspartate racemase from S.thermophilus : it requires no cofactors and contains an essential cysteinyl residue. The two racemases are structurally similar to each other, in particular in the regions around the two cysteinyl residues. We have also found significant sequence homology between glutamate racemase and mammalian myoglobins, in particular in the regions corresponding to a heme binding procket of myoglobins. Glutamate racemase is bound with an equimolar amount of hemin to be inactivated, and aspartate racemase shows a low sequence homology with myoglobins, but is not bound with hemin. These suggest that glutamate racemase may be derived from an evolutionary origin of globin family proteins. Aspartate racemase also may have evolved from the common ancestral protein, b … More ut its structure may have been altered more extensively than glutamate racemase by divergence. We have shown that the amino acid sequence deduced from the nucleotide sequence of murI (dga) gene that is required for the biosynthesis of D-glutamate as an essential component of peptidoglycan in E.coli has significant homology with that of glutamate racemase of P.pentosaceus. The gene was ligated into a plasmid, pKK223-3 with a designed ribosome binding site, and expressed in E.coli JM109 cells. Glutamate racemase was produced in the transformant cells, whereas the enzyme was not found in the host cells. I partially purified the enzyme to characterize it. The enzyme consists of two identical subunits with a molecular weight of about 31,000. We have also found three highly conserved regions in the glutamate racemase genes previously sequenced and shown that their conserved regions exsist on the chromosomes of various kinds of bacterial strains. These indicate that D-glutamate, which is indispensable for almost all bacterial strains as a constituent of peptidoglycans, is directly produced from its L-enantiomer by glutamate racemase. Less

Report

(3 results)
  • 1995 Annual Research Report   Final Research Report Summary
  • 1994 Annual Research Report
  • Research Products

    (17 results)

All Other

All Publications (17 results)

  • [Publications] K. Soda and N. Esaki: "Pyridoxal Enzymes Acting on D-Amino Acids." Pure & Appl. Chem.66. 709-714 (1994)

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      1995 Final Research Report Summary
  • [Publications] S. Sawada et al.: "Kinetics of Thermostable Alanine Racemase of Bacillus stearothermophilus." Biosci. Biotech. Biochem.58. 807-811 (1994)

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      1995 Final Research Report Summary
  • [Publications] K. -H.-Jhee et al.: "Thermostable Ornithine Aminotransferase from Bacillus sp. YM-2: Purification and Characterization." J. Biochem.118. 101-108 (1995)

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      1995 Final Research Report Summary
  • [Publications] K. Kishimoto et al.: "Role of Leucine 201 of Thermostable D-Amino Acid Aminotransferase from a Thermophile, Bacillus sp. YM-1." J. Biochem.117. 691-696 (1995)

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      1995 Final Research Report Summary
  • [Publications] H. Toyama et al.: "Reconstitution of Fragmentary Form of Thermostable Alanine Racemase." Biosci. Biotech. Biochem.59. 1118-1120 (1995)

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      1995 Final Research Report Summary
  • [Publications] K.Soda and N.Esaki: "Pyridoxal Enzymes Acting on D-Amino Acids" Pure & Appl.Chem.66(4). 709-714 (1994)

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      1995 Final Research Report Summary
  • [Publications] S.Sawada et al.: "Kinetics of Thermostable Alanine Racemase of Bacillus stesrothermophilus" Biosci.Biotech.Biochem.58(5). 807-811 (1994)

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      1995 Final Research Report Summary
  • [Publications] K.-H.Jhee et al.: "Thermostable Ornithine Aminotransferase from Bacillus sp.YM-2 : Purification and Characterization" J.Biochem.118. 101-108 (1995)

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      1995 Final Research Report Summary
  • [Publications] K.Kishimoto et al.: "Role of Leucine 201 of Thermostable D-Amino Acid Aminotransferase from a Thermophile, Bacillus sp.YM-1" J.Biochem.117. 691-696 (1995)

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      1995 Final Research Report Summary
  • [Publications] H.Toyama et al.: "Reconstitution of Fragmentary Form of Thermostable Alanine Racemase" Biosci.Biotech.Biochem.59(6). 1118-1120 (1995)

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      1995 Final Research Report Summary
  • [Publications] K. Soda and N. Esaki: "Pyridoxal Enzymes Acting on D-Amino Acids." Pure & Appl. Chem.66. 709-714 (1994)

    • Related Report
      1995 Annual Research Report
  • [Publications] S. Sawada et al.: "Kinetics of Thermostable Alanine Recemase of Bacillus stear othermophilus." Biosci. Biotech. Biochem.58. 807-811 (1994)

    • Related Report
      1995 Annual Research Report
  • [Publications] K.-H. Jhee et al.: "Thermostable Ornithine Aminotransferase from Bacillus sp. YM-2: Purification and Characterization." J. Biochem.118. 101-108 (1995)

    • Related Report
      1995 Annual Research Report
  • [Publications] K. Kishimoto et al.: "Role of Leucine 201 of Thermostable D-Amino Acid Aminotransferase from a Thermophile, Bacillus sp. YM-1." J. Biochem.117. 691-696 (1995)

    • Related Report
      1995 Annual Research Report
  • [Publications] H. Toyama et al.: "Reconstitution of Fragmentary Form of Thermostable Alanine Racemase." Biosci. Biotech. Biochem.59. 1118-1120 (1995)

    • Related Report
      1995 Annual Research Report
  • [Publications] M.Ashiuchi et al.: "In vivo Effect of GroESL on the Folding of Glutamate Racemase of Escherichia coli" J.Biochem.(印刷中). (1995)

    • Related Report
      1994 Annual Research Report
  • [Publications] S.Choi et al.: "Bacterial glutamate racemase has high sequence similarity with myoglobins and forms an equimolar inactive complex with hemin" Pro.Natl.Acad.Sci.USA. 91. 10144-10147 (1994)

    • Related Report
      1994 Annual Research Report

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Published: 1994-04-01   Modified: 2016-04-21  

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