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European Journal of Biochemistry

Cover image for European Journal of Biochemistry

August 1979

Volume 99, Issue 1

Pages 1–216

Currently known as: The FEBS Journal

  1. Nucleic Acids, Protein Synthesis, and Molecular Genetics

    1. Top of page
    2. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    3. Protein Chemistry and Structure
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Protein Chemistry and Structure
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Enzymology
    10. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    11. Protein Chemistry and Structure
    12. Physical Biochemistry
    13. Enzymology
    14. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    15. Enzymology
    16. Membranes and Bioenergetics
    17. Cellular Biochemistry and Metabolism
    18. Enzymology
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Protein Chemistry and Structure
    21. Nucleic Acids, Protein Synthesis, and Molecular Genetics
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      Level and Turnover of Polyadenylate-Containing Ribonucleic Acid in Neurospora crassa in Different Steady States of Growth (pages 1–7)

      Emmapaola STURANI, Maria Grazia COSTANTINI, Enzo MARTEGANI and Lilia ALBERGHINA

      Version of Record online: 28 JUN 2008 | DOI: 10.1111/j.1432-1033.1979.tb13224.x

  2. Protein Chemistry and Structure

    1. Top of page
    2. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    3. Protein Chemistry and Structure
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Protein Chemistry and Structure
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Enzymology
    10. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    11. Protein Chemistry and Structure
    12. Physical Biochemistry
    13. Enzymology
    14. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    15. Enzymology
    16. Membranes and Bioenergetics
    17. Cellular Biochemistry and Metabolism
    18. Enzymology
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Protein Chemistry and Structure
    21. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    1. You have free access to this content
  3. Nucleic Acids, Protein Synthesis, and Molecular Genetics

    1. Top of page
    2. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    3. Protein Chemistry and Structure
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Protein Chemistry and Structure
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Enzymology
    10. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    11. Protein Chemistry and Structure
    12. Physical Biochemistry
    13. Enzymology
    14. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    15. Enzymology
    16. Membranes and Bioenergetics
    17. Cellular Biochemistry and Metabolism
    18. Enzymology
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Protein Chemistry and Structure
    21. Nucleic Acids, Protein Synthesis, and Molecular Genetics
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      Enrichment and Characterization of the DNA Coding for Vitellogenin in Xenopus laevis (pages 23–29)

      Heinrich J. WIDMER, Rolf B. JAGGI, Rudolf WEBER, Gerhart U. RYFFEL and Daniel MUELLENER

      Version of Record online: 28 JUN 2008 | DOI: 10.1111/j.1432-1033.1979.tb13226.x

  4. Protein Chemistry and Structure

    1. Top of page
    2. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    3. Protein Chemistry and Structure
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Protein Chemistry and Structure
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Enzymology
    10. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    11. Protein Chemistry and Structure
    12. Physical Biochemistry
    13. Enzymology
    14. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    15. Enzymology
    16. Membranes and Bioenergetics
    17. Cellular Biochemistry and Metabolism
    18. Enzymology
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Protein Chemistry and Structure
    21. Nucleic Acids, Protein Synthesis, and Molecular Genetics
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      Amino Acid Sequence of the Aminoterminal Segment of Dermatosparactic Calf-Skin Procollagen Type I (pages 31–38)

      Dietrich HÖRLEIN, Peter P. FIETZEK, Elmar WACHTER, Charles M. LAPIÈRE and Klaus KÜHN

      Version of Record online: 28 JUN 2008 | DOI: 10.1111/j.1432-1033.1979.tb13227.x

  5. Membranes and Bioenergetics

    1. Top of page
    2. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    3. Protein Chemistry and Structure
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Protein Chemistry and Structure
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Enzymology
    10. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    11. Protein Chemistry and Structure
    12. Physical Biochemistry
    13. Enzymology
    14. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    15. Enzymology
    16. Membranes and Bioenergetics
    17. Cellular Biochemistry and Metabolism
    18. Enzymology
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Protein Chemistry and Structure
    21. Nucleic Acids, Protein Synthesis, and Molecular Genetics
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      Iron Supply of Escherichia coli with Polymer-Bound Ferricrocin (pages 39–47)

      James W. COULTON, Hans-Ulrich NAEGELI and Volkmar BRAUN

      Version of Record online: 28 JUN 2008 | DOI: 10.1111/j.1432-1033.1979.tb13228.x

  6. Cellular Biochemistry and Metabolism

    1. Top of page
    2. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    3. Protein Chemistry and Structure
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Protein Chemistry and Structure
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Enzymology
    10. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    11. Protein Chemistry and Structure
    12. Physical Biochemistry
    13. Enzymology
    14. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    15. Enzymology
    16. Membranes and Bioenergetics
    17. Cellular Biochemistry and Metabolism
    18. Enzymology
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Protein Chemistry and Structure
    21. Nucleic Acids, Protein Synthesis, and Molecular Genetics
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      Biological Role of Gramicidin S in Spore Functions : Studies on Gramicidin-S-Negative Mutants of Bacillus brevis ATCC9999 (pages 49–55)

      Mohamed A. MARAHIEL, Wolf DANDERS, Michael KRAUSE and Horst KLEINKAUF

      Version of Record online: 28 JUN 2008 | DOI: 10.1111/j.1432-1033.1979.tb13229.x

  7. Nucleic Acids, Protein Synthesis, and Molecular Genetics

    1. Top of page
    2. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    3. Protein Chemistry and Structure
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Protein Chemistry and Structure
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Enzymology
    10. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    11. Protein Chemistry and Structure
    12. Physical Biochemistry
    13. Enzymology
    14. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    15. Enzymology
    16. Membranes and Bioenergetics
    17. Cellular Biochemistry and Metabolism
    18. Enzymology
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Protein Chemistry and Structure
    21. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    1. You have free access to this content
  8. Enzymology

    1. Top of page
    2. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    3. Protein Chemistry and Structure
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Protein Chemistry and Structure
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Enzymology
    10. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    11. Protein Chemistry and Structure
    12. Physical Biochemistry
    13. Enzymology
    14. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    15. Enzymology
    16. Membranes and Bioenergetics
    17. Cellular Biochemistry and Metabolism
    18. Enzymology
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Protein Chemistry and Structure
    21. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    1. You have free access to this content
  9. Nucleic Acids, Protein Synthesis, and Molecular Genetics

    1. Top of page
    2. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    3. Protein Chemistry and Structure
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Protein Chemistry and Structure
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Enzymology
    10. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    11. Protein Chemistry and Structure
    12. Physical Biochemistry
    13. Enzymology
    14. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    15. Enzymology
    16. Membranes and Bioenergetics
    17. Cellular Biochemistry and Metabolism
    18. Enzymology
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Protein Chemistry and Structure
    21. Nucleic Acids, Protein Synthesis, and Molecular Genetics
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      A DNA-Dependent ATPase of Calf-Thymus (pages 71–79)

      Liliane M. ASSAIRI and Irving R. JOHNSTON

      Version of Record online: 28 JUN 2008 | DOI: 10.1111/j.1432-1033.1979.tb13232.x

  10. Protein Chemistry and Structure

    1. Top of page
    2. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    3. Protein Chemistry and Structure
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Protein Chemistry and Structure
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Enzymology
    10. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    11. Protein Chemistry and Structure
    12. Physical Biochemistry
    13. Enzymology
    14. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    15. Enzymology
    16. Membranes and Bioenergetics
    17. Cellular Biochemistry and Metabolism
    18. Enzymology
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Protein Chemistry and Structure
    21. Nucleic Acids, Protein Synthesis, and Molecular Genetics
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      Alkylation of Estradiol 17β-Dehydrogenase from Human Placenta with 3-Chloroacetylpyridine–Adenine Dinucleotide Phosphate (pages 81–84)

      Jean-François BIELLMANN, Philippe R. GOULAS, Jean-Claude NICOLAS, Bernard DESCOMPS and André CRASTES DE PAULET

      Version of Record online: 28 JUN 2008 | DOI: 10.1111/j.1432-1033.1979.tb13233.x

  11. Physical Biochemistry

    1. Top of page
    2. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    3. Protein Chemistry and Structure
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Protein Chemistry and Structure
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Enzymology
    10. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    11. Protein Chemistry and Structure
    12. Physical Biochemistry
    13. Enzymology
    14. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    15. Enzymology
    16. Membranes and Bioenergetics
    17. Cellular Biochemistry and Metabolism
    18. Enzymology
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Protein Chemistry and Structure
    21. Nucleic Acids, Protein Synthesis, and Molecular Genetics
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      Interaction of Butene with Human Hemoglobin A (pages 85–88)

      Claude POYART, Elisabeth BURSAUX, Patrick GUESNON and Brigitte BOHN

      Version of Record online: 28 JUN 2008 | DOI: 10.1111/j.1432-1033.1979.tb13234.x

  12. Enzymology

    1. Top of page
    2. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    3. Protein Chemistry and Structure
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Protein Chemistry and Structure
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Enzymology
    10. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    11. Protein Chemistry and Structure
    12. Physical Biochemistry
    13. Enzymology
    14. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    15. Enzymology
    16. Membranes and Bioenergetics
    17. Cellular Biochemistry and Metabolism
    18. Enzymology
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Protein Chemistry and Structure
    21. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    1. You have free access to this content
      Flavanone Synthase from Petroselinum hortense : Molecular Weight, Subunit Composition, Size of Messenger RNA, and Absence of Pantetheinyl Residue (pages 89–96)

      Fritz KREUZALER, Hermann RAGG, Werner HELLER, Rudolf TESCH, Irene WITT, Dietrich HAMMER and Klaus HAHLBROCK

      Version of Record online: 28 JUN 2008 | DOI: 10.1111/j.1432-1033.1979.tb13235.x

  13. Nucleic Acids, Protein Synthesis, and Molecular Genetics

    1. Top of page
    2. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    3. Protein Chemistry and Structure
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Protein Chemistry and Structure
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Enzymology
    10. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    11. Protein Chemistry and Structure
    12. Physical Biochemistry
    13. Enzymology
    14. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    15. Enzymology
    16. Membranes and Bioenergetics
    17. Cellular Biochemistry and Metabolism
    18. Enzymology
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Protein Chemistry and Structure
    21. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    1. You have free access to this content
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      Isolation of Plasmid-Protein Complexes from Escherichia coli (pages 105–111)

      Stephen BUSBY, Annie KOLB and Henri BUC

      Version of Record online: 28 JUN 2008 | DOI: 10.1111/j.1432-1033.1979.tb13237.x

  14. Enzymology

    1. Top of page
    2. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    3. Protein Chemistry and Structure
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Protein Chemistry and Structure
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Enzymology
    10. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    11. Protein Chemistry and Structure
    12. Physical Biochemistry
    13. Enzymology
    14. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    15. Enzymology
    16. Membranes and Bioenergetics
    17. Cellular Biochemistry and Metabolism
    18. Enzymology
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Protein Chemistry and Structure
    21. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    1. You have free access to this content
  15. Membranes and Bioenergetics

    1. Top of page
    2. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    3. Protein Chemistry and Structure
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Protein Chemistry and Structure
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Enzymology
    10. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    11. Protein Chemistry and Structure
    12. Physical Biochemistry
    13. Enzymology
    14. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    15. Enzymology
    16. Membranes and Bioenergetics
    17. Cellular Biochemistry and Metabolism
    18. Enzymology
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Protein Chemistry and Structure
    21. Nucleic Acids, Protein Synthesis, and Molecular Genetics
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    2. You have free access to this content
    3. You have free access to this content
  16. Cellular Biochemistry and Metabolism

    1. Top of page
    2. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    3. Protein Chemistry and Structure
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Protein Chemistry and Structure
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Enzymology
    10. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    11. Protein Chemistry and Structure
    12. Physical Biochemistry
    13. Enzymology
    14. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    15. Enzymology
    16. Membranes and Bioenergetics
    17. Cellular Biochemistry and Metabolism
    18. Enzymology
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Protein Chemistry and Structure
    21. Nucleic Acids, Protein Synthesis, and Molecular Genetics
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      A Molecular Order in the Synthesis and Degradation of Glycogen in the Liver (pages 161–167)

      Pierre DEVOS and Henri-Géry HERS

      Version of Record online: 28 JUN 2008 | DOI: 10.1111/j.1432-1033.1979.tb13242.x

  17. Enzymology

    1. Top of page
    2. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    3. Protein Chemistry and Structure
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Protein Chemistry and Structure
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Enzymology
    10. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    11. Protein Chemistry and Structure
    12. Physical Biochemistry
    13. Enzymology
    14. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    15. Enzymology
    16. Membranes and Bioenergetics
    17. Cellular Biochemistry and Metabolism
    18. Enzymology
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Protein Chemistry and Structure
    21. Nucleic Acids, Protein Synthesis, and Molecular Genetics
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      Affinity Labeling of Rat Kidney γ-Glutamyl Transpeptidase by 6-Diazo-5-oxo-D-norleucine (pages 169–177)

      Masayasu INOUE, Seikoh HORIUCHI and Yoshimasa MORINO

      Version of Record online: 28 JUN 2008 | DOI: 10.1111/j.1432-1033.1979.tb13243.x

  18. Nucleic Acids, Protein Synthesis, and Molecular Genetics

    1. Top of page
    2. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    3. Protein Chemistry and Structure
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Protein Chemistry and Structure
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Enzymology
    10. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    11. Protein Chemistry and Structure
    12. Physical Biochemistry
    13. Enzymology
    14. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    15. Enzymology
    16. Membranes and Bioenergetics
    17. Cellular Biochemistry and Metabolism
    18. Enzymology
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Protein Chemistry and Structure
    21. Nucleic Acids, Protein Synthesis, and Molecular Genetics
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      The DNA Components of the Chicken Genome (pages 179–186)

      Jordi CORTADAS, Birgitta OLOFSSON, Michèle MEUNIER-ROTIVAL, Gabriel MACAYA and Giorgio BERNARDI

      Version of Record online: 28 JUN 2008 | DOI: 10.1111/j.1432-1033.1979.tb13244.x

  19. Protein Chemistry and Structure

    1. Top of page
    2. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    3. Protein Chemistry and Structure
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Protein Chemistry and Structure
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Enzymology
    10. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    11. Protein Chemistry and Structure
    12. Physical Biochemistry
    13. Enzymology
    14. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    15. Enzymology
    16. Membranes and Bioenergetics
    17. Cellular Biochemistry and Metabolism
    18. Enzymology
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Protein Chemistry and Structure
    21. Nucleic Acids, Protein Synthesis, and Molecular Genetics
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      On the Binding of tRNA to Escherichia coli RNA Polymerase (pages 187–201)

      Annick SPASSKY, Stephen J. W. BUSBY, Antoine DANCHIN and Henri BUC

      Version of Record online: 28 JUN 2008 | DOI: 10.1111/j.1432-1033.1979.tb13245.x

    2. You have free access to this content
      Isolation and Purification of a Neurodepressing Hormone from the Eyestalk of Procambarus bouvieri (Ortmann) (pages 203–208)

      Alberto HUBERMAN, Hugo ARECHIGA, Avivah CIMET, Jorge DE LA ROSA and Carlos ARAMBURO

      Version of Record online: 28 JUN 2008 | DOI: 10.1111/j.1432-1033.1979.tb13246.x

  20. Nucleic Acids, Protein Synthesis, and Molecular Genetics

    1. Top of page
    2. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    3. Protein Chemistry and Structure
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Protein Chemistry and Structure
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Enzymology
    10. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    11. Protein Chemistry and Structure
    12. Physical Biochemistry
    13. Enzymology
    14. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    15. Enzymology
    16. Membranes and Bioenergetics
    17. Cellular Biochemistry and Metabolism
    18. Enzymology
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Protein Chemistry and Structure
    21. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    1. You have free access to this content
      Binding of Specific ATP Citrate Lyase and Fatty Acid Synthetase Antibodies to Heavy Populations of Rat Liver Polysomes (pages 209–216)

      Mary B. FINKELSTEIN, Michael P. AURINGER, Laura A. HALPER, Tracy C. LINN, Manoranjan SINGH and Paul A. SRERE

      Version of Record online: 28 JUN 2008 | DOI: 10.1111/j.1432-1033.1979.tb13247.x

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