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European Journal of Biochemistry

Cover image for European Journal of Biochemistry

June 1983

Volume 133, Issue 2

Pages 255–478

Currently known as: The FEBS Journal

  1. Protein Chemistry and Structure

    1. Top of page
    2. Protein Chemistry and Structure
    3. Cellular Biochemistry and Metabolism
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Enzymology
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Protein Chemistry and Structure
    10. Enzymology
    11. Membranes and Bioenergetics
    12. Cellular Biochemistry and Metabolism
    13. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    14. Protein Chemistry and Structure
    15. Enzymology
    16. Cellular Biochemistry and Metabolism
    17. Enzymology
    18. Physical Biochemistry
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Physical Biochemistry
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    2. You have free access to this content
      Characterization of the Trimeric, Self-Recognizing Geodia cydonium Lectin I (pages 263–267)

      Werner E. G. MÜLLER, Jürgen CONRAD, Christina SCHRÖDER, Rudolf K. ZAHN, Branko KURELEC, Karin DREESBACH and Gerd UHLENBRUCK

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1983.tb07457.x

  2. Cellular Biochemistry and Metabolism

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

    1. Top of page
    2. Protein Chemistry and Structure
    3. Cellular Biochemistry and Metabolism
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Enzymology
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Protein Chemistry and Structure
    10. Enzymology
    11. Membranes and Bioenergetics
    12. Cellular Biochemistry and Metabolism
    13. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    14. Protein Chemistry and Structure
    15. Enzymology
    16. Cellular Biochemistry and Metabolism
    17. Enzymology
    18. Physical Biochemistry
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Physical Biochemistry
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      Characterization of Messenger RNA for Chick-Embryo DNA Polymerase β and Its Translation Product in vitro (pages 277–282)

      Masamitsu YAMAGUCHI, Taijo TAKAHASHI, Kunio YASUDA, Yoshiro SHIMURA and Akio MATSUKAGE

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1983.tb07459.x

  4. Enzymology

    1. Top of page
    2. Protein Chemistry and Structure
    3. Cellular Biochemistry and Metabolism
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Enzymology
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Protein Chemistry and Structure
    10. Enzymology
    11. Membranes and Bioenergetics
    12. Cellular Biochemistry and Metabolism
    13. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    14. Protein Chemistry and Structure
    15. Enzymology
    16. Cellular Biochemistry and Metabolism
    17. Enzymology
    18. Physical Biochemistry
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Physical Biochemistry
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      Substrate Specificity of the Human Splenic Non-specific Soluble β-Glucosidase (pages 283–287)

      Arlette MARET, Robert SALVAYRE, Anne NEGRE and Louis DOUSTE-BLAZY

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1983.tb07460.x

  5. Membranes and Bioenergetics

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

    1. Top of page
    2. Protein Chemistry and Structure
    3. Cellular Biochemistry and Metabolism
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Enzymology
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Protein Chemistry and Structure
    10. Enzymology
    11. Membranes and Bioenergetics
    12. Cellular Biochemistry and Metabolism
    13. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    14. Protein Chemistry and Structure
    15. Enzymology
    16. Cellular Biochemistry and Metabolism
    17. Enzymology
    18. Physical Biochemistry
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Physical Biochemistry
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      Acyl-Coenzyme A: Cholesterol Acyltransferase : Transfer of Cholesterol to Its Substrate Pool and Modulation of Activity (pages 299–307)

      Stella SYNOURI-VRETTAKOU and Konstantinos A. MITROPOULOS

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1983.tb07462.x

  7. Nucleic Acids, Protein Synthesis, and Molecular Genetics

    1. Top of page
    2. Protein Chemistry and Structure
    3. Cellular Biochemistry and Metabolism
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Enzymology
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Protein Chemistry and Structure
    10. Enzymology
    11. Membranes and Bioenergetics
    12. Cellular Biochemistry and Metabolism
    13. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    14. Protein Chemistry and Structure
    15. Enzymology
    16. Cellular Biochemistry and Metabolism
    17. Enzymology
    18. Physical Biochemistry
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Physical Biochemistry
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      Neutron Diffraction of Chromatin in Interphase Nuclei and Metaphase Chromosomes (pages 315–319)

      Konrad IBEL, Reiner KLINGHOLZ, Wolf H. STRÄTLING, Jakob BOGENBERGER and Friedrich FITTLER

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1983.tb07464.x

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      Secretion of Plant Storage Globulin Polypeptides by Xenopus laevis Oocytes (pages 321–326)

      Ronald BASSUÜNER, Antje HUTH, Renate MANTEUFFEL and Tom A. RAPOPORT

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1983.tb07465.x

  8. Protein Chemistry and Structure

    1. Top of page
    2. Protein Chemistry and Structure
    3. Cellular Biochemistry and Metabolism
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Enzymology
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Protein Chemistry and Structure
    10. Enzymology
    11. Membranes and Bioenergetics
    12. Cellular Biochemistry and Metabolism
    13. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    14. Protein Chemistry and Structure
    15. Enzymology
    16. Cellular Biochemistry and Metabolism
    17. Enzymology
    18. Physical Biochemistry
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Physical Biochemistry
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      On the Probable Involvement of Arginine Residues in the Bile-Salt-Binding Site of Human Pancreatic Carboxylic Ester Hydrolase (pages 327–333)

      Dominique LOMBARDO, Daniel CAMPESE, Luc MULTIGNER, Huguette LAFONT and Alain DE CARO

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1983.tb07466.x

  9. Enzymology

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

    1. Top of page
    2. Protein Chemistry and Structure
    3. Cellular Biochemistry and Metabolism
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Enzymology
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Protein Chemistry and Structure
    10. Enzymology
    11. Membranes and Bioenergetics
    12. Cellular Biochemistry and Metabolism
    13. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    14. Protein Chemistry and Structure
    15. Enzymology
    16. Cellular Biochemistry and Metabolism
    17. Enzymology
    18. Physical Biochemistry
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Physical Biochemistry
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      Transport of Methionine in Sea-Urchin Sperm by a Neutral Amino-Acid Carrier (pages 341–347)

      Christian GACHE and Victor D. VACQUIER

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1983.tb07468.x

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      Localization of Ellipticine Derivatives Interacting with Membranes : A Fluorescence-Quenching Study (pages 349–354)

      François TERCE, Jean-François TOCANNE and Gilbert LANEELLE

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1983.tb07469.x

    3. You have free access to this content
  11. Cellular Biochemistry and Metabolism

    1. Top of page
    2. Protein Chemistry and Structure
    3. Cellular Biochemistry and Metabolism
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Enzymology
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Protein Chemistry and Structure
    10. Enzymology
    11. Membranes and Bioenergetics
    12. Cellular Biochemistry and Metabolism
    13. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    14. Protein Chemistry and Structure
    15. Enzymology
    16. Cellular Biochemistry and Metabolism
    17. Enzymology
    18. Physical Biochemistry
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Physical Biochemistry
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      Partial Purification of Rat and Human Serum Factors Inhibiting the G1-S Transition in Rat Hepatocytes (pages 363–369)

      Geneviève AUGER, Didier BLANOT, Jean VAN HEIJENOORT, Claude NADAL and Marie-Françoise GOURNAY

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1983.tb07471.x

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      N-Acetyimuramoyl-l-alkaline Amidase of Escherichia coli K12 : Possible Physiological Functions (pages 371–377)

      Claudine PARQUET, Bernard FLOURET, Mireille LEDUC, Yukinori HIROTA and Jean VAN HEIJENOORT

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1983.tb07472.x

  12. Nucleic Acids, Protein Synthesis, and Molecular Genetics

    1. Top of page
    2. Protein Chemistry and Structure
    3. Cellular Biochemistry and Metabolism
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Enzymology
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Protein Chemistry and Structure
    10. Enzymology
    11. Membranes and Bioenergetics
    12. Cellular Biochemistry and Metabolism
    13. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    14. Protein Chemistry and Structure
    15. Enzymology
    16. Cellular Biochemistry and Metabolism
    17. Enzymology
    18. Physical Biochemistry
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Physical Biochemistry
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      Histone Acetylation in Chromatin Containing Mouse Satellite DNA (pages 379–382)

      Iliya G. PASHEV, Stephan I. DIMITROV, Ivan G. IVANOV and George G. MARKOV

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1983.tb07473.x

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      Detection and Regulation of the mRNA for the Inhibitor of Extracellular cAMP Phosphodiesterase of Dictyostellum discoideum (pages 383–391)

      Claude ROSSIER, Jak ob FRANKE, Isabel A. MULLENS, Kenneth J. KELLEY and Richard H. KESSIN

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1983.tb07474.x

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      Neutron-Scattering Studies of Accurately Reconstituted Nucleosome Core particles and the Effect of Ionic Strength on Core Particle Structure (pages 393–398)

      Gray J. SIBBET, Brian G. CARPENTER, Konrad IBEL, Roland P. MAY, G. Geoffrey KNEALE, E. Morton BRADBURY and John P. BALDWIN

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1983.tb07475.x

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      Expression of Interferon-α and Interferon-β Genes in Human Lymphoblastoid (Namalwa) Cells (pages 399–404)

      John SHUTTLEWORTH, John MORSER and Derek C. BURKE

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1983.tb07476.x

  13. Protein Chemistry and Structure

    1. Top of page
    2. Protein Chemistry and Structure
    3. Cellular Biochemistry and Metabolism
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Enzymology
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Protein Chemistry and Structure
    10. Enzymology
    11. Membranes and Bioenergetics
    12. Cellular Biochemistry and Metabolism
    13. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    14. Protein Chemistry and Structure
    15. Enzymology
    16. Cellular Biochemistry and Metabolism
    17. Enzymology
    18. Physical Biochemistry
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Physical Biochemistry
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    2. You have free access to this content
      The Core Protein of Alphaviruses : 1. Purification of Peptides and Complete Amino-Acid Sequence of Semliki Forest Virus Core Protein (pages 412–414)

      Ulrike Boege, Gisela Wengler and Brigitte Wittmann-Liebold

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1983.tb07478.x

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      The Core Protein of Alphaviruses : 2. Purification of Peptides and Complete Amino-Acid Sequence of Sindbis Virus Core Protein. (pages 424–426)

      Ulrike Boege, Gisela Wengler and Brigitte Wittmann-Liebold

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1983.tb07480.x

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      Serine Proteinase Inhibitors from Vipera ammodytes Venom : Isolation and Kinetic Studies (pages 427–432)

      Anka RITONJA, Vito TURK and Franc GUBENŠEK

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1983.tb07481.x

  14. Enzymology

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

    1. Top of page
    2. Protein Chemistry and Structure
    3. Cellular Biochemistry and Metabolism
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Enzymology
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Protein Chemistry and Structure
    10. Enzymology
    11. Membranes and Bioenergetics
    12. Cellular Biochemistry and Metabolism
    13. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    14. Protein Chemistry and Structure
    15. Enzymology
    16. Cellular Biochemistry and Metabolism
    17. Enzymology
    18. Physical Biochemistry
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Physical Biochemistry
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      Biosynthesis of the Major Glycoprotein Associated with Zymogen-Granule Membranes in the Pancreas (pages 449–454)

      Johan R. HAVINGA, Ger J. A. M. STROUS and Cees POORT

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1983.tb07484.x

  16. Enzymology

    1. Top of page
    2. Protein Chemistry and Structure
    3. Cellular Biochemistry and Metabolism
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Enzymology
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Protein Chemistry and Structure
    10. Enzymology
    11. Membranes and Bioenergetics
    12. Cellular Biochemistry and Metabolism
    13. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    14. Protein Chemistry and Structure
    15. Enzymology
    16. Cellular Biochemistry and Metabolism
    17. Enzymology
    18. Physical Biochemistry
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Physical Biochemistry
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      Characterisation of a Reconstituted Mg-ATP-Dependent Protein Phosphatase (pages 455–461)

      Therese J. RESINK, Brian A. HEMMINGS, H. Y. Lim TUNG and Philip COHEN

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1983.tb07485.x

  17. Physical Biochemistry

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

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

    1. Top of page
    2. Protein Chemistry and Structure
    3. Cellular Biochemistry and Metabolism
    4. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    5. Enzymology
    6. Membranes and Bioenergetics
    7. Cellular Biochemistry and Metabolism
    8. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    9. Protein Chemistry and Structure
    10. Enzymology
    11. Membranes and Bioenergetics
    12. Cellular Biochemistry and Metabolism
    13. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    14. Protein Chemistry and Structure
    15. Enzymology
    16. Cellular Biochemistry and Metabolism
    17. Enzymology
    18. Physical Biochemistry
    19. Nucleic Acids, Protein Synthesis, and Molecular Genetics
    20. Physical Biochemistry
    1. You have free access to this content
      Quaternary Structure and Spin Equilibria in Ferric Hemoglobins : A Room Temperature Study (pages 475–478)

      Robert W. NOBLE, Alice DE YOUNG, Ernesto DI IORIO, Kasper H. WINTERHALTER, Massimo CERDONIO, Silvia MORANTE and Stefano VITALE

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1983.tb07488.x

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