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European Journal of Biochemistry

Cover image for European Journal of Biochemistry

September 1988

Volume 176, Issue 2

Pages 237–484

Currently known as: The FEBS Journal

  1. Enzymology

    1. Top of page
    2. Enzymology
    3. Nucleic acids, protein synthesis, and molecular genetics
    4. Enzymology
    5. Membranes and bioenergetics
    6. Developmental biochemistry and immunology
    7. Nucleic acids, protein synthesis, and molecular genetics
    8. Protein chemistry and structure
    9. Enzymology
    10. Physical and inorganic biochemistry
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulations
    13. Nucleic acids, protein synthesis, and molecular genetics
    14. Membranes and bioenergetics
    15. Metabolism and metabolic regulations
    16. Nucleic acids, protein synthesis, and molecular genetics
    17. Protein chemistry and structure
    18. Carbohydrates, lipids and other natural products
    19. Metabolism and metabolic regulations
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      Fluorinated analogues of spermidine as substrates of spermine synthase (pages 237–242)

      Jean G. BAILLON, Pierre S. MAMONT, Joseph WAGNER, Fritz GERHART and Philippe LUX

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1988.tb14274.x

  2. Nucleic acids, protein synthesis, and molecular genetics

    1. Top of page
    2. Enzymology
    3. Nucleic acids, protein synthesis, and molecular genetics
    4. Enzymology
    5. Membranes and bioenergetics
    6. Developmental biochemistry and immunology
    7. Nucleic acids, protein synthesis, and molecular genetics
    8. Protein chemistry and structure
    9. Enzymology
    10. Physical and inorganic biochemistry
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulations
    13. Nucleic acids, protein synthesis, and molecular genetics
    14. Membranes and bioenergetics
    15. Metabolism and metabolic regulations
    16. Nucleic acids, protein synthesis, and molecular genetics
    17. Protein chemistry and structure
    18. Carbohydrates, lipids and other natural products
    19. Metabolism and metabolic regulations
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      A new family of repetitive, retroposon-like sequences in the genome of the rainbow trout (pages 255–264)

      Robert J. WINKFEIN, Robert D. MOIR, Stephen A. KARWETZ, Jeronimo BLANCO, J. Christopher STATES and Gordon H. DIXON

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1988.tb14276.x

  3. Enzymology

    1. Top of page
    2. Enzymology
    3. Nucleic acids, protein synthesis, and molecular genetics
    4. Enzymology
    5. Membranes and bioenergetics
    6. Developmental biochemistry and immunology
    7. Nucleic acids, protein synthesis, and molecular genetics
    8. Protein chemistry and structure
    9. Enzymology
    10. Physical and inorganic biochemistry
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulations
    13. Nucleic acids, protein synthesis, and molecular genetics
    14. Membranes and bioenergetics
    15. Metabolism and metabolic regulations
    16. Nucleic acids, protein synthesis, and molecular genetics
    17. Protein chemistry and structure
    18. Carbohydrates, lipids and other natural products
    19. Metabolism and metabolic regulations
    1. You have free access to this content
    2. You have free access to this content
  4. Membranes and bioenergetics

    1. Top of page
    2. Enzymology
    3. Nucleic acids, protein synthesis, and molecular genetics
    4. Enzymology
    5. Membranes and bioenergetics
    6. Developmental biochemistry and immunology
    7. Nucleic acids, protein synthesis, and molecular genetics
    8. Protein chemistry and structure
    9. Enzymology
    10. Physical and inorganic biochemistry
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulations
    13. Nucleic acids, protein synthesis, and molecular genetics
    14. Membranes and bioenergetics
    15. Metabolism and metabolic regulations
    16. Nucleic acids, protein synthesis, and molecular genetics
    17. Protein chemistry and structure
    18. Carbohydrates, lipids and other natural products
    19. Metabolism and metabolic regulations
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  5. Developmental biochemistry and immunology

    1. Top of page
    2. Enzymology
    3. Nucleic acids, protein synthesis, and molecular genetics
    4. Enzymology
    5. Membranes and bioenergetics
    6. Developmental biochemistry and immunology
    7. Nucleic acids, protein synthesis, and molecular genetics
    8. Protein chemistry and structure
    9. Enzymology
    10. Physical and inorganic biochemistry
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulations
    13. Nucleic acids, protein synthesis, and molecular genetics
    14. Membranes and bioenergetics
    15. Metabolism and metabolic regulations
    16. Nucleic acids, protein synthesis, and molecular genetics
    17. Protein chemistry and structure
    18. Carbohydrates, lipids and other natural products
    19. Metabolism and metabolic regulations
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      Expression in non-lymphoid cells of mouse recombinant immunoglobulindirected against the tumour marker human placental alkaline phosphatase (pages 287–295)

      Peter DE WAELE, Véronique FEYS, André VAN DE VOORDE, Francis MOLEMANS and Walter FIERS

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1988.tb14280.x

  6. Nucleic acids, protein synthesis, and molecular genetics

    1. Top of page
    2. Enzymology
    3. Nucleic acids, protein synthesis, and molecular genetics
    4. Enzymology
    5. Membranes and bioenergetics
    6. Developmental biochemistry and immunology
    7. Nucleic acids, protein synthesis, and molecular genetics
    8. Protein chemistry and structure
    9. Enzymology
    10. Physical and inorganic biochemistry
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulations
    13. Nucleic acids, protein synthesis, and molecular genetics
    14. Membranes and bioenergetics
    15. Metabolism and metabolic regulations
    16. Nucleic acids, protein synthesis, and molecular genetics
    17. Protein chemistry and structure
    18. Carbohydrates, lipids and other natural products
    19. Metabolism and metabolic regulations
    1. You have free access to this content
    2. You have free access to this content
      Differential inhibition of various mammalian DNA polymerase activities by ammonium 21-tungsto-9-antimoniate (HPA23) (pages 305–310)

      Katsuhiko ONO, Hideo NAKANE, Françoise BARRÉ-SINOUSSI and Jean-Claude CHERMANN

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1988.tb14282.x

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  7. Protein chemistry and structure

    1. Top of page
    2. Enzymology
    3. Nucleic acids, protein synthesis, and molecular genetics
    4. Enzymology
    5. Membranes and bioenergetics
    6. Developmental biochemistry and immunology
    7. Nucleic acids, protein synthesis, and molecular genetics
    8. Protein chemistry and structure
    9. Enzymology
    10. Physical and inorganic biochemistry
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulations
    13. Nucleic acids, protein synthesis, and molecular genetics
    14. Membranes and bioenergetics
    15. Metabolism and metabolic regulations
    16. Nucleic acids, protein synthesis, and molecular genetics
    17. Protein chemistry and structure
    18. Carbohydrates, lipids and other natural products
    19. Metabolism and metabolic regulations
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      Isolation and characterization of a highly phosphorylated troponin from bovine heart (pages 327–334)

      Norbert BEIER, Kornelia JAQUET, Klaus SCHNACKERZ and Ludwig M. G. HEILMEYER Jr

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1988.tb14285.x

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  8. Enzymology

    1. Top of page
    2. Enzymology
    3. Nucleic acids, protein synthesis, and molecular genetics
    4. Enzymology
    5. Membranes and bioenergetics
    6. Developmental biochemistry and immunology
    7. Nucleic acids, protein synthesis, and molecular genetics
    8. Protein chemistry and structure
    9. Enzymology
    10. Physical and inorganic biochemistry
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulations
    13. Nucleic acids, protein synthesis, and molecular genetics
    14. Membranes and bioenergetics
    15. Metabolism and metabolic regulations
    16. Nucleic acids, protein synthesis, and molecular genetics
    17. Protein chemistry and structure
    18. Carbohydrates, lipids and other natural products
    19. Metabolism and metabolic regulations
    1. You have free access to this content
    2. You have free access to this content
    3. You have free access to this content
  9. Physical and inorganic biochemistry

    1. Top of page
    2. Enzymology
    3. Nucleic acids, protein synthesis, and molecular genetics
    4. Enzymology
    5. Membranes and bioenergetics
    6. Developmental biochemistry and immunology
    7. Nucleic acids, protein synthesis, and molecular genetics
    8. Protein chemistry and structure
    9. Enzymology
    10. Physical and inorganic biochemistry
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulations
    13. Nucleic acids, protein synthesis, and molecular genetics
    14. Membranes and bioenergetics
    15. Metabolism and metabolic regulations
    16. Nucleic acids, protein synthesis, and molecular genetics
    17. Protein chemistry and structure
    18. Carbohydrates, lipids and other natural products
    19. Metabolism and metabolic regulations
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      Assignment of individual heme EPR signalsof Desulfovibrio baculatus (strain 9974) tetraheme cytochrome c3 : A redox equilibria study (pages 365–369)

      Isabel MOURA, Miguel TEIXEIRA, Boi H. HUYNH, Jean LeGALL and José J. G. MOURA

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1988.tb14290.x

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      Binding of ellipticine base and ellipticinium cation to calf-thymus DNA : A thermodynamic and kinetic study (pages 371–376)

      Guy DODIN, Marc-Antoine SCHWALLER, Jean AUBARD and Claude PAOLETTI

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1988.tb14291.x

  10. Membranes and bioenergetics

    1. Top of page
    2. Enzymology
    3. Nucleic acids, protein synthesis, and molecular genetics
    4. Enzymology
    5. Membranes and bioenergetics
    6. Developmental biochemistry and immunology
    7. Nucleic acids, protein synthesis, and molecular genetics
    8. Protein chemistry and structure
    9. Enzymology
    10. Physical and inorganic biochemistry
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulations
    13. Nucleic acids, protein synthesis, and molecular genetics
    14. Membranes and bioenergetics
    15. Metabolism and metabolic regulations
    16. Nucleic acids, protein synthesis, and molecular genetics
    17. Protein chemistry and structure
    18. Carbohydrates, lipids and other natural products
    19. Metabolism and metabolic regulations
    1. You have free access to this content
    2. You have free access to this content
  11. Metabolism and metabolic regulations

    1. Top of page
    2. Enzymology
    3. Nucleic acids, protein synthesis, and molecular genetics
    4. Enzymology
    5. Membranes and bioenergetics
    6. Developmental biochemistry and immunology
    7. Nucleic acids, protein synthesis, and molecular genetics
    8. Protein chemistry and structure
    9. Enzymology
    10. Physical and inorganic biochemistry
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulations
    13. Nucleic acids, protein synthesis, and molecular genetics
    14. Membranes and bioenergetics
    15. Metabolism and metabolic regulations
    16. Nucleic acids, protein synthesis, and molecular genetics
    17. Protein chemistry and structure
    18. Carbohydrates, lipids and other natural products
    19. Metabolism and metabolic regulations
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      Syntheses of the sulfoconjugated isomers of norepinephrine and dopamine, controlled by HPLC with ultraviolet detection (pages 397–402)

      Günther STROBEL, Egon WERLE, Heike HELFINGER, Dieter GRIEBEL and Helmut WEICKER

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1988.tb14295.x

  12. Nucleic acids, protein synthesis, and molecular genetics

    1. Top of page
    2. Enzymology
    3. Nucleic acids, protein synthesis, and molecular genetics
    4. Enzymology
    5. Membranes and bioenergetics
    6. Developmental biochemistry and immunology
    7. Nucleic acids, protein synthesis, and molecular genetics
    8. Protein chemistry and structure
    9. Enzymology
    10. Physical and inorganic biochemistry
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulations
    13. Nucleic acids, protein synthesis, and molecular genetics
    14. Membranes and bioenergetics
    15. Metabolism and metabolic regulations
    16. Nucleic acids, protein synthesis, and molecular genetics
    17. Protein chemistry and structure
    18. Carbohydrates, lipids and other natural products
    19. Metabolism and metabolic regulations
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      Assambley of amber fragment of the β subunit of Escherichia coli RNA polymerase (pages 403–407)

      Robert E. GLASS, Nicola T. RALPHS, Nobuyuki FUJITA and Akira ISHIHAMA

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1988.tb14296.x

  13. Membranes and bioenergetics

    1. Top of page
    2. Enzymology
    3. Nucleic acids, protein synthesis, and molecular genetics
    4. Enzymology
    5. Membranes and bioenergetics
    6. Developmental biochemistry and immunology
    7. Nucleic acids, protein synthesis, and molecular genetics
    8. Protein chemistry and structure
    9. Enzymology
    10. Physical and inorganic biochemistry
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulations
    13. Nucleic acids, protein synthesis, and molecular genetics
    14. Membranes and bioenergetics
    15. Metabolism and metabolic regulations
    16. Nucleic acids, protein synthesis, and molecular genetics
    17. Protein chemistry and structure
    18. Carbohydrates, lipids and other natural products
    19. Metabolism and metabolic regulations
    1. You have free access to this content
      Characterization of the inducible polyamine transporter in bovine lymphocytes (pages 409–414)

      Yoshimi KAKINUMA, Kenji HOSHINO and Kazuei IGARASHI

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1988.tb14297.x

  14. Metabolism and metabolic regulations

    1. Top of page
    2. Enzymology
    3. Nucleic acids, protein synthesis, and molecular genetics
    4. Enzymology
    5. Membranes and bioenergetics
    6. Developmental biochemistry and immunology
    7. Nucleic acids, protein synthesis, and molecular genetics
    8. Protein chemistry and structure
    9. Enzymology
    10. Physical and inorganic biochemistry
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulations
    13. Nucleic acids, protein synthesis, and molecular genetics
    14. Membranes and bioenergetics
    15. Metabolism and metabolic regulations
    16. Nucleic acids, protein synthesis, and molecular genetics
    17. Protein chemistry and structure
    18. Carbohydrates, lipids and other natural products
    19. Metabolism and metabolic regulations
    1. You have free access to this content
  15. Nucleic acids, protein synthesis, and molecular genetics

    1. Top of page
    2. Enzymology
    3. Nucleic acids, protein synthesis, and molecular genetics
    4. Enzymology
    5. Membranes and bioenergetics
    6. Developmental biochemistry and immunology
    7. Nucleic acids, protein synthesis, and molecular genetics
    8. Protein chemistry and structure
    9. Enzymology
    10. Physical and inorganic biochemistry
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulations
    13. Nucleic acids, protein synthesis, and molecular genetics
    14. Membranes and bioenergetics
    15. Metabolism and metabolic regulations
    16. Nucleic acids, protein synthesis, and molecular genetics
    17. Protein chemistry and structure
    18. Carbohydrates, lipids and other natural products
    19. Metabolism and metabolic regulations
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      Nucleotide sequence of the carA gene and regulation of the carAB operon in Salmonella typhimurium (pages 421–429)

      Mogens KILSTRUP, Chung-Dar LU, Ahmed ABDELAL and Jan NEUHARD

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1988.tb14299.x

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  16. Protein chemistry and structure

    1. Top of page
    2. Enzymology
    3. Nucleic acids, protein synthesis, and molecular genetics
    4. Enzymology
    5. Membranes and bioenergetics
    6. Developmental biochemistry and immunology
    7. Nucleic acids, protein synthesis, and molecular genetics
    8. Protein chemistry and structure
    9. Enzymology
    10. Physical and inorganic biochemistry
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulations
    13. Nucleic acids, protein synthesis, and molecular genetics
    14. Membranes and bioenergetics
    15. Metabolism and metabolic regulations
    16. Nucleic acids, protein synthesis, and molecular genetics
    17. Protein chemistry and structure
    18. Carbohydrates, lipids and other natural products
    19. Metabolism and metabolic regulations
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      The enzymatic activity of proteinase K is controlled by calcium (pages 441–447)

      Jürgen BAJORATH, Winfried HINRICHS and Wolfram SAENGER

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1988.tb14301.x

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  17. Carbohydrates, lipids and other natural products

    1. Top of page
    2. Enzymology
    3. Nucleic acids, protein synthesis, and molecular genetics
    4. Enzymology
    5. Membranes and bioenergetics
    6. Developmental biochemistry and immunology
    7. Nucleic acids, protein synthesis, and molecular genetics
    8. Protein chemistry and structure
    9. Enzymology
    10. Physical and inorganic biochemistry
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulations
    13. Nucleic acids, protein synthesis, and molecular genetics
    14. Membranes and bioenergetics
    15. Metabolism and metabolic regulations
    16. Nucleic acids, protein synthesis, and molecular genetics
    17. Protein chemistry and structure
    18. Carbohydrates, lipids and other natural products
    19. Metabolism and metabolic regulations
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      5′-Methylbenzimidazolyl-cobamides are the corrinoids from some sulfate-reducing and sulfur-metabolizing bacteria (pages 461–469)

      Bernhard KRÄUTLER, Hans-Peter E. KOHLER and Erhard STUPPERICH

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1988.tb14303.x

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  18. Metabolism and metabolic regulations

    1. Top of page
    2. Enzymology
    3. Nucleic acids, protein synthesis, and molecular genetics
    4. Enzymology
    5. Membranes and bioenergetics
    6. Developmental biochemistry and immunology
    7. Nucleic acids, protein synthesis, and molecular genetics
    8. Protein chemistry and structure
    9. Enzymology
    10. Physical and inorganic biochemistry
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulations
    13. Nucleic acids, protein synthesis, and molecular genetics
    14. Membranes and bioenergetics
    15. Metabolism and metabolic regulations
    16. Nucleic acids, protein synthesis, and molecular genetics
    17. Protein chemistry and structure
    18. Carbohydrates, lipids and other natural products
    19. Metabolism and metabolic regulations
    1. You have free access to this content

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