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European Journal of Biochemistry

Cover image for European Journal of Biochemistry

April 1989

Volume 181, Issue 1

Pages 1–285

Currently known as: The FEBS Journal

  1. Review

    1. Top of page
    2. Review
    3. Enzymology
    4. Nucleic acids, protein synthesis, and molecular genetics
    5. Enzymology
    6. Signal transduction and molecular neurobiology
    7. Molecular cell biology
    8. Nucleic acids, protein synthesis, and molecular genetics
    9. Protein chemistry and structure
    10. Enzymology
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulation
    13. Developmental biochemistry and immunology
    14. Nucleic acids, protein synthesis, and molecular genetics
    15. Protein chemistry and structure
    16. Enzymology
    17. Physical and inorganic biochemistry
    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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      Mechanisms of flavoprotein-catalyzed reactions (pages 1–17)

      Sandro GHISLA and Vincent MASSEY

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14688.x

  2. Enzymology

    1. Top of page
    2. Review
    3. Enzymology
    4. Nucleic acids, protein synthesis, and molecular genetics
    5. Enzymology
    6. Signal transduction and molecular neurobiology
    7. Molecular cell biology
    8. Nucleic acids, protein synthesis, and molecular genetics
    9. Protein chemistry and structure
    10. Enzymology
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulation
    13. Developmental biochemistry and immunology
    14. Nucleic acids, protein synthesis, and molecular genetics
    15. Protein chemistry and structure
    16. Enzymology
    17. Physical and inorganic biochemistry
    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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      Comparison of the two classes of binding sites (A and B) of type I and type II cyclic-AMP-dependent protein kinases by using cyclic nucleotide analogs (pages 19–31)

      Dagfinn ØGRIED, Roald EKANGER, Robert H. SUVA, Jon P. MILLER and Stein Ove DØSKELAND

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14689.x

  3. Nucleic acids, protein synthesis, and molecular genetics

    1. Top of page
    2. Review
    3. Enzymology
    4. Nucleic acids, protein synthesis, and molecular genetics
    5. Enzymology
    6. Signal transduction and molecular neurobiology
    7. Molecular cell biology
    8. Nucleic acids, protein synthesis, and molecular genetics
    9. Protein chemistry and structure
    10. Enzymology
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulation
    13. Developmental biochemistry and immunology
    14. Nucleic acids, protein synthesis, and molecular genetics
    15. Protein chemistry and structure
    16. Enzymology
    17. Physical and inorganic biochemistry
    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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      The brain-specific gene for rat aldolase C possesses an unusual housekeeping-type promoter (pages 33–39)

      Magdeleine VIBERT, Joëlle HENRY, Axel KAHN and Henriette SKALA

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14690.x

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  4. Enzymology

    1. Top of page
    2. Review
    3. Enzymology
    4. Nucleic acids, protein synthesis, and molecular genetics
    5. Enzymology
    6. Signal transduction and molecular neurobiology
    7. Molecular cell biology
    8. Nucleic acids, protein synthesis, and molecular genetics
    9. Protein chemistry and structure
    10. Enzymology
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulation
    13. Developmental biochemistry and immunology
    14. Nucleic acids, protein synthesis, and molecular genetics
    15. Protein chemistry and structure
    16. Enzymology
    17. Physical and inorganic biochemistry
    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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      The gene encoding dihydrolipoyl transacetylase from Azotobacter vinelandii : Expression in Escherichia coli and activation and isolation of the protein (pages 47–53)

      Roeland HANEMAAIJER, Adrie H. WESTPHAL, Axel BERG, Walter VAN DONGEN, Arie de KOK and Cees VEEGER

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14692.x

  5. Signal transduction and molecular neurobiology

    1. Top of page
    2. Review
    3. Enzymology
    4. Nucleic acids, protein synthesis, and molecular genetics
    5. Enzymology
    6. Signal transduction and molecular neurobiology
    7. Molecular cell biology
    8. Nucleic acids, protein synthesis, and molecular genetics
    9. Protein chemistry and structure
    10. Enzymology
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulation
    13. Developmental biochemistry and immunology
    14. Nucleic acids, protein synthesis, and molecular genetics
    15. Protein chemistry and structure
    16. Enzymology
    17. Physical and inorganic biochemistry
    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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      Dephosphorylation of the human T lymphocyte CD3 antigen (pages 55–65)

      Denis ALEXANDER, Jozef GORIS, Richard MARAIS, Jonathan ROTHBARD, Wilfried MERLEVEDE and Michael J. CRUMPTON

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14693.x

  6. Molecular cell biology

    1. Top of page
    2. Review
    3. Enzymology
    4. Nucleic acids, protein synthesis, and molecular genetics
    5. Enzymology
    6. Signal transduction and molecular neurobiology
    7. Molecular cell biology
    8. Nucleic acids, protein synthesis, and molecular genetics
    9. Protein chemistry and structure
    10. Enzymology
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulation
    13. Developmental biochemistry and immunology
    14. Nucleic acids, protein synthesis, and molecular genetics
    15. Protein chemistry and structure
    16. Enzymology
    17. Physical and inorganic biochemistry
    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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      Isolation of heparin-binding growth factors from bovine, porcine and canine hearts (pages 67–73)

      Wolfgang QUINKLER, Michael MAASBERG, Sabine BERNOTAT-DANIELOWSKI, Norbert LÜTHE, Hari S. SHARMA and Wolfgang SCHAPER

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14694.x

  7. Nucleic acids, protein synthesis, and molecular genetics

    1. Top of page
    2. Review
    3. Enzymology
    4. Nucleic acids, protein synthesis, and molecular genetics
    5. Enzymology
    6. Signal transduction and molecular neurobiology
    7. Molecular cell biology
    8. Nucleic acids, protein synthesis, and molecular genetics
    9. Protein chemistry and structure
    10. Enzymology
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulation
    13. Developmental biochemistry and immunology
    14. Nucleic acids, protein synthesis, and molecular genetics
    15. Protein chemistry and structure
    16. Enzymology
    17. Physical and inorganic biochemistry
    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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      The novel pituitary polypeptide 7B2 is a highly-conserved protein coexpressed with proopiomelanocortin (pages 75–79)

      Gerard J. M. MARTENS, Marion, J. G. BUSSEMAKERS, Torik A. Y. AYOUBI and Bruce G. JENKS

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14695.x

  8. Protein chemistry and structure

    1. Top of page
    2. Review
    3. Enzymology
    4. Nucleic acids, protein synthesis, and molecular genetics
    5. Enzymology
    6. Signal transduction and molecular neurobiology
    7. Molecular cell biology
    8. Nucleic acids, protein synthesis, and molecular genetics
    9. Protein chemistry and structure
    10. Enzymology
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulation
    13. Developmental biochemistry and immunology
    14. Nucleic acids, protein synthesis, and molecular genetics
    15. Protein chemistry and structure
    16. Enzymology
    17. Physical and inorganic biochemistry
    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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      1H-NMR studies of high-potential iron-sulfur protein from the purple phototrophic bacterium, Rhodospirillum tenue (pages 81–85)

      Ramaswamy KRISHNAMOORTHI, Michael A. CUSANOVICH, Terrence E. MEYER and Craig T. PRZYSIECKI

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14696.x

    2. You have free access to this content
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      Identification of highly acidic peptides from processing of the skin prepropeptides of Xenopus laevis (pages 97–102)

      Jennifer C. NUTKINS and Dudley H. WILLIAMS

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14698.x

  9. Enzymology

    1. Top of page
    2. Review
    3. Enzymology
    4. Nucleic acids, protein synthesis, and molecular genetics
    5. Enzymology
    6. Signal transduction and molecular neurobiology
    7. Molecular cell biology
    8. Nucleic acids, protein synthesis, and molecular genetics
    9. Protein chemistry and structure
    10. Enzymology
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulation
    13. Developmental biochemistry and immunology
    14. Nucleic acids, protein synthesis, and molecular genetics
    15. Protein chemistry and structure
    16. Enzymology
    17. Physical and inorganic biochemistry
    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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      Growth stimulation of human epidermal cells by urokinase is restricted to the intact active enzyme (pages 103–107)

      Johannes C. KIRCHHEIMER, Guenter CHRIST and Bernd R. BINDER

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14699.x

  10. Membranes and bioenergetics

    1. Top of page
    2. Review
    3. Enzymology
    4. Nucleic acids, protein synthesis, and molecular genetics
    5. Enzymology
    6. Signal transduction and molecular neurobiology
    7. Molecular cell biology
    8. Nucleic acids, protein synthesis, and molecular genetics
    9. Protein chemistry and structure
    10. Enzymology
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulation
    13. Developmental biochemistry and immunology
    14. Nucleic acids, protein synthesis, and molecular genetics
    15. Protein chemistry and structure
    16. Enzymology
    17. Physical and inorganic biochemistry
    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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      Isolation and molecular and functional properties of the amino-terminal domain of colicin A (pages 109–113)

      Martine KNIBIEHLER, S. Peter HOWARD, Daniel BATY, Vincent GELI, Roland LLOUBÈS, Paul SAUVE and Claude LAZDUNSKI

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14700.x

  11. Metabolism and metabolic regulation

    1. Top of page
    2. Review
    3. Enzymology
    4. Nucleic acids, protein synthesis, and molecular genetics
    5. Enzymology
    6. Signal transduction and molecular neurobiology
    7. Molecular cell biology
    8. Nucleic acids, protein synthesis, and molecular genetics
    9. Protein chemistry and structure
    10. Enzymology
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulation
    13. Developmental biochemistry and immunology
    14. Nucleic acids, protein synthesis, and molecular genetics
    15. Protein chemistry and structure
    16. Enzymology
    17. Physical and inorganic biochemistry
    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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  12. Developmental biochemistry and immunology

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

    1. Top of page
    2. Review
    3. Enzymology
    4. Nucleic acids, protein synthesis, and molecular genetics
    5. Enzymology
    6. Signal transduction and molecular neurobiology
    7. Molecular cell biology
    8. Nucleic acids, protein synthesis, and molecular genetics
    9. Protein chemistry and structure
    10. Enzymology
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulation
    13. Developmental biochemistry and immunology
    14. Nucleic acids, protein synthesis, and molecular genetics
    15. Protein chemistry and structure
    16. Enzymology
    17. Physical and inorganic biochemistry
    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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      The G · C base-pair preference of 2-N-methyl 9-hydroxyellipticinium (pages 129–134)

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

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14703.x

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      Molecular organization of RNP complexes containing P11 antigen in heat-shocked and non-heat-shocked Drosophila cells (pages 135–142)

      Claus SCHULDT, Peter M. KLOETZEL and Ekkehard K. F. BAUTZ

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14704.x

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    4. You have free access to this content
      Energy requirement and kineties of transport of poly(A)-free histone mRNA compared to poly(A)-rich mRNA from isolated L-cell nuclei (pages 149–158)

      Heinz C. SCHRÖDER, Ursula FRIESE, Michael BACHMANN, Thomas ZAUBITZER and Werner E. G. MÜLLER

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14706.x

  14. Protein chemistry and structure

    1. Top of page
    2. Review
    3. Enzymology
    4. Nucleic acids, protein synthesis, and molecular genetics
    5. Enzymology
    6. Signal transduction and molecular neurobiology
    7. Molecular cell biology
    8. Nucleic acids, protein synthesis, and molecular genetics
    9. Protein chemistry and structure
    10. Enzymology
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulation
    13. Developmental biochemistry and immunology
    14. Nucleic acids, protein synthesis, and molecular genetics
    15. Protein chemistry and structure
    16. Enzymology
    17. Physical and inorganic biochemistry
    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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      Isolation and characterization of the rainbow trout erythrocyte band-3 protein (pages 181–187)

      Frank MICHEL and Victor RUDLOFF

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14709.x

  15. Enzymology

    1. Top of page
    2. Review
    3. Enzymology
    4. Nucleic acids, protein synthesis, and molecular genetics
    5. Enzymology
    6. Signal transduction and molecular neurobiology
    7. Molecular cell biology
    8. Nucleic acids, protein synthesis, and molecular genetics
    9. Protein chemistry and structure
    10. Enzymology
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulation
    13. Developmental biochemistry and immunology
    14. Nucleic acids, protein synthesis, and molecular genetics
    15. Protein chemistry and structure
    16. Enzymology
    17. Physical and inorganic biochemistry
    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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    2. You have free access to this content
      Characterization of an FMN-containing cyclohexanone monooxygenase from a cyclohexane-grown Xanthobacter sp. (pages 199–206)

      Michael K. TROWER, R. Martin BUCKLAND and Martin GRIFFIN

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14711.x

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      4-Chloroacetylpyridine adenine dinucleotide : A highly reactive and chromophoric affinity label of glyceraldehyde-3-phosphate dehydrogenase from sturgeon (pages 215–222)

      Denis TRITSCH, Brigitte EILER-SAMAMA, Jasmina SVIRCEVIC, Anne-Marie ALBRECHT, Guy BRANLANT and Jean-François BIELLMANN

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14713.x

  16. Physical and inorganic biochemistry

    1. Top of page
    2. Review
    3. Enzymology
    4. Nucleic acids, protein synthesis, and molecular genetics
    5. Enzymology
    6. Signal transduction and molecular neurobiology
    7. Molecular cell biology
    8. Nucleic acids, protein synthesis, and molecular genetics
    9. Protein chemistry and structure
    10. Enzymology
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulation
    13. Developmental biochemistry and immunology
    14. Nucleic acids, protein synthesis, and molecular genetics
    15. Protein chemistry and structure
    16. Enzymology
    17. Physical and inorganic biochemistry
    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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  17. Metabolism and metabolic regulation

    1. Top of page
    2. Review
    3. Enzymology
    4. Nucleic acids, protein synthesis, and molecular genetics
    5. Enzymology
    6. Signal transduction and molecular neurobiology
    7. Molecular cell biology
    8. Nucleic acids, protein synthesis, and molecular genetics
    9. Protein chemistry and structure
    10. Enzymology
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulation
    13. Developmental biochemistry and immunology
    14. Nucleic acids, protein synthesis, and molecular genetics
    15. Protein chemistry and structure
    16. Enzymology
    17. Physical and inorganic biochemistry
    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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      Apolipoprotein-E-gene expression in rat liver during development in relation to insulin and glucagon (pages 225–230)

      Marise MANGENEY, Philippe CARDOT, Stanislas LYONNET, Christine COUPE, Richard BENAROUS, Arnold MUNNICH, Jean GIRARD, Jean CHAMBAZ and Gilbert BEREZIAT

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14715.x

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      Interrelated regulation of sulphur-containing amino-acid biosynthetic enzymes and folate-metabolizing enzymes in Aspergillus nidulans (pages 231–235)

      Janina NADOLSKA-LUTYK, Malgorzata BALINSKA and Andrzej PASZEWSKI

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14716.x

  18. Signal transduction and molecular neurobiology

    1. Top of page
    2. Review
    3. Enzymology
    4. Nucleic acids, protein synthesis, and molecular genetics
    5. Enzymology
    6. Signal transduction and molecular neurobiology
    7. Molecular cell biology
    8. Nucleic acids, protein synthesis, and molecular genetics
    9. Protein chemistry and structure
    10. Enzymology
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulation
    13. Developmental biochemistry and immunology
    14. Nucleic acids, protein synthesis, and molecular genetics
    15. Protein chemistry and structure
    16. Enzymology
    17. Physical and inorganic biochemistry
    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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      Release of phospholipase A2 activity from rat vascular smooth muscle cells mediated by cAMP (pages 237–242)

      Josef PFEILSCHIFTER, Werner PIGNAT, Fritz MÄRKI and Irmgard WIESENBERG

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14717.x

  19. Molecular cell biology

    1. Top of page
    2. Review
    3. Enzymology
    4. Nucleic acids, protein synthesis, and molecular genetics
    5. Enzymology
    6. Signal transduction and molecular neurobiology
    7. Molecular cell biology
    8. Nucleic acids, protein synthesis, and molecular genetics
    9. Protein chemistry and structure
    10. Enzymology
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulation
    13. Developmental biochemistry and immunology
    14. Nucleic acids, protein synthesis, and molecular genetics
    15. Protein chemistry and structure
    16. Enzymology
    17. Physical and inorganic biochemistry
    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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      Hormone-induced expression of the CHSl gene from Saccharomyces cerevisiae (pages 243–247)

      Ute APPELTAUER and Tilman ACHSTETTER

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14718.x

  20. Carbohydrates, lipids and other natural products

    1. Top of page
    2. Review
    3. Enzymology
    4. Nucleic acids, protein synthesis, and molecular genetics
    5. Enzymology
    6. Signal transduction and molecular neurobiology
    7. Molecular cell biology
    8. Nucleic acids, protein synthesis, and molecular genetics
    9. Protein chemistry and structure
    10. Enzymology
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulation
    13. Developmental biochemistry and immunology
    14. Nucleic acids, protein synthesis, and molecular genetics
    15. Protein chemistry and structure
    16. Enzymology
    17. Physical and inorganic biochemistry
    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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      N-linked oligosaccharide changes with oncogenic transformation require sialylation of multiantennae (pages 249–260)

      Ursula V. SANTER, Rosaria DeSANTIS, Karl Johan HÅRD, J. Albert van KUIK, Johannes F. G. VLIEGENTHART, Bokran WON and Mary Catherine GLICK

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14719.x

  21. Membranes and bioenergetics

    1. Top of page
    2. Review
    3. Enzymology
    4. Nucleic acids, protein synthesis, and molecular genetics
    5. Enzymology
    6. Signal transduction and molecular neurobiology
    7. Molecular cell biology
    8. Nucleic acids, protein synthesis, and molecular genetics
    9. Protein chemistry and structure
    10. Enzymology
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulation
    13. Developmental biochemistry and immunology
    14. Nucleic acids, protein synthesis, and molecular genetics
    15. Protein chemistry and structure
    16. Enzymology
    17. Physical and inorganic biochemistry
    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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  22. Review

    1. Top of page
    2. Review
    3. Enzymology
    4. Nucleic acids, protein synthesis, and molecular genetics
    5. Enzymology
    6. Signal transduction and molecular neurobiology
    7. Molecular cell biology
    8. Nucleic acids, protein synthesis, and molecular genetics
    9. Protein chemistry and structure
    10. Enzymology
    11. Membranes and bioenergetics
    12. Metabolism and metabolic regulation
    13. Developmental biochemistry and immunology
    14. Nucleic acids, protein synthesis, and molecular genetics
    15. Protein chemistry and structure
    16. Enzymology
    17. Physical and inorganic biochemistry
    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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      Galanin receptor and its ligands in the rat hippocampus (pages 269–276)

      Gilberto FISONE, ülo LANGEL, Mats CARLQUIST, Tomas BERGMAN, Silvana CONSOLO, Tomas HÖKFELT, Anders UNDÉN, Siv ANDELL and Tamas BARTFAI

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb14721.x

  23. Signal transduction and molecular neurobiology

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    5. Enzymology
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    14. Nucleic acids, protein synthesis, and molecular genetics
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    18. Metabolism and metabolic regulation
    19. Signal transduction and molecular neurobiology
    20. Molecular cell biology
    21. Carbohydrates, lipids and other natural products
    22. Membranes and bioenergetics
    23. Review
    24. Signal transduction and molecular neurobiology
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