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European Journal of Biochemistry

Cover image for European Journal of Biochemistry

November 1989

Volume 185, Issue 2

Pages 231–483

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. Metabolism and metabolic regulation
    4. Nucleic acids, protein synthesis and molecular genetics
    5. Protein chemistry and structure
    6. Enzymology
    7. Developmental biochemistry and immunology
    8. Nucleic acids, protein synthesis and molecular genetics
    9. Protein chemistry and structure
    10. Carbohydrates, lipids and other natural products
    11. Nucleic acids, protein synthesis and molecular genetics
    12. Protein chemistry and structure
    13. Enzymology
    14. Physical and inorganic biochemistry
    15. Signal transduction and molecular neurobiology
    16. Molecular cell biology
    1. You have free access to this content
  2. Metabolism and metabolic regulation

    1. Top of page
    2. Nucleic acids, protein synthesis and molecular genetics
    3. Metabolism and metabolic regulation
    4. Nucleic acids, protein synthesis and molecular genetics
    5. Protein chemistry and structure
    6. Enzymology
    7. Developmental biochemistry and immunology
    8. Nucleic acids, protein synthesis and molecular genetics
    9. Protein chemistry and structure
    10. Carbohydrates, lipids and other natural products
    11. Nucleic acids, protein synthesis and molecular genetics
    12. Protein chemistry and structure
    13. Enzymology
    14. Physical and inorganic biochemistry
    15. Signal transduction and molecular neurobiology
    16. Molecular cell biology
    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. Metabolism and metabolic regulation
    4. Nucleic acids, protein synthesis and molecular genetics
    5. Protein chemistry and structure
    6. Enzymology
    7. Developmental biochemistry and immunology
    8. Nucleic acids, protein synthesis and molecular genetics
    9. Protein chemistry and structure
    10. Carbohydrates, lipids and other natural products
    11. Nucleic acids, protein synthesis and molecular genetics
    12. Protein chemistry and structure
    13. Enzymology
    14. Physical and inorganic biochemistry
    15. Signal transduction and molecular neurobiology
    16. Molecular cell biology
    1. You have free access to this content
    2. You have free access to this content
      Two arylamine N-acetyltransferases from chicken pineal gland as identified by cDNA cloning (pages 253–261)

      Michiko OHTOMI, Masato SASAKI and Takeo DEGUCHI

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15110.x

  4. Protein chemistry and structure

    1. Top of page
    2. Nucleic acids, protein synthesis and molecular genetics
    3. Metabolism and metabolic regulation
    4. Nucleic acids, protein synthesis and molecular genetics
    5. Protein chemistry and structure
    6. Enzymology
    7. Developmental biochemistry and immunology
    8. Nucleic acids, protein synthesis and molecular genetics
    9. Protein chemistry and structure
    10. Carbohydrates, lipids and other natural products
    11. Nucleic acids, protein synthesis and molecular genetics
    12. Protein chemistry and structure
    13. Enzymology
    14. Physical and inorganic biochemistry
    15. Signal transduction and molecular neurobiology
    16. Molecular cell biology
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      Tryptophan 110, a residue involved in the toxic activity but not in the enzymatic activity of notexin (pages 263–270)

      Pascale MOLLIER, Serge CHWETZOFF, Françoise BOUET, Alan L. HARVEY and André MÉNEZ

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15111.x

    2. You have free access to this content
  5. Enzymology

    1. Top of page
    2. Nucleic acids, protein synthesis and molecular genetics
    3. Metabolism and metabolic regulation
    4. Nucleic acids, protein synthesis and molecular genetics
    5. Protein chemistry and structure
    6. Enzymology
    7. Developmental biochemistry and immunology
    8. Nucleic acids, protein synthesis and molecular genetics
    9. Protein chemistry and structure
    10. Carbohydrates, lipids and other natural products
    11. Nucleic acids, protein synthesis and molecular genetics
    12. Protein chemistry and structure
    13. Enzymology
    14. Physical and inorganic biochemistry
    15. Signal transduction and molecular neurobiology
    16. Molecular cell biology
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      Molecular organization and clustering of cell-wall-bound enzymes as a source of kinetic apparent co-operativity (pages 281–290)

      Christophe DUSSERT, Guillermo MULLIERT, Nicolas KELLERSHOHN, Jacques RICARD, Roger GIORDANI, Georges NOAT, Jacqueline PALMARI, Monique RASIGNI, Antoine LLEBARIA and Georges RASIGNI

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15113.x

  6. Developmental biochemistry and immunology

    1. Top of page
    2. Nucleic acids, protein synthesis and molecular genetics
    3. Metabolism and metabolic regulation
    4. Nucleic acids, protein synthesis and molecular genetics
    5. Protein chemistry and structure
    6. Enzymology
    7. Developmental biochemistry and immunology
    8. Nucleic acids, protein synthesis and molecular genetics
    9. Protein chemistry and structure
    10. Carbohydrates, lipids and other natural products
    11. Nucleic acids, protein synthesis and molecular genetics
    12. Protein chemistry and structure
    13. Enzymology
    14. Physical and inorganic biochemistry
    15. Signal transduction and molecular neurobiology
    16. Molecular cell biology
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      Characterization of mononuclear-phagocyte terminal maturation by mRNA phenotyping using a set of cloned cDNA probes (pages 291–296)

      Ursula GANTER, Joachim BAUER, Barbara MAJELLO, Wolfgang GEROK and Gennaro CILIBERTO

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15114.x

    2. You have free access to this content
  7. Nucleic acids, protein synthesis and molecular genetics

    1. Top of page
    2. Nucleic acids, protein synthesis and molecular genetics
    3. Metabolism and metabolic regulation
    4. Nucleic acids, protein synthesis and molecular genetics
    5. Protein chemistry and structure
    6. Enzymology
    7. Developmental biochemistry and immunology
    8. Nucleic acids, protein synthesis and molecular genetics
    9. Protein chemistry and structure
    10. Carbohydrates, lipids and other natural products
    11. Nucleic acids, protein synthesis and molecular genetics
    12. Protein chemistry and structure
    13. Enzymology
    14. Physical and inorganic biochemistry
    15. Signal transduction and molecular neurobiology
    16. Molecular cell biology
    1. You have free access to this content
      Tissue specificity of nucleo-cytoplasmic distribution of HMG1 and HMG2 proteins and their probable functions (pages 303–310)

      Mark I. MOSEVITSKY, Vera A. NOVITSKAYA, Michael G. IOGANNSEN and Mark A. ZABEZHINSKY

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15116.x

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      The ribosomal genes of the mosquito, Aedes aegypti (pages 311–317)

      Kevin GALE and Julian CRAMPTON

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15117.x

  8. Protein chemistry and structure

    1. Top of page
    2. Nucleic acids, protein synthesis and molecular genetics
    3. Metabolism and metabolic regulation
    4. Nucleic acids, protein synthesis and molecular genetics
    5. Protein chemistry and structure
    6. Enzymology
    7. Developmental biochemistry and immunology
    8. Nucleic acids, protein synthesis and molecular genetics
    9. Protein chemistry and structure
    10. Carbohydrates, lipids and other natural products
    11. Nucleic acids, protein synthesis and molecular genetics
    12. Protein chemistry and structure
    13. Enzymology
    14. Physical and inorganic biochemistry
    15. Signal transduction and molecular neurobiology
    16. Molecular cell biology
    1. You have free access to this content
      Studies on the domain structure of the Salmonella/typhimurium AraC protein (pages 319–325)

      Hanspeter LAUBLE, Yannis GEORGALIS and Udo HEINEMANN

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15118.x

  9. Carbohydrates, lipids and other natural products

    1. Top of page
    2. Nucleic acids, protein synthesis and molecular genetics
    3. Metabolism and metabolic regulation
    4. Nucleic acids, protein synthesis and molecular genetics
    5. Protein chemistry and structure
    6. Enzymology
    7. Developmental biochemistry and immunology
    8. Nucleic acids, protein synthesis and molecular genetics
    9. Protein chemistry and structure
    10. Carbohydrates, lipids and other natural products
    11. Nucleic acids, protein synthesis and molecular genetics
    12. Protein chemistry and structure
    13. Enzymology
    14. Physical and inorganic biochemistry
    15. Signal transduction and molecular neurobiology
    16. Molecular cell biology
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      The activity of GD3 synthase modulates the ganglioside pattern in rat liver (pages 327–330)

      Renate SCHÜZ-HENNINGER, Elke ULLMER, Claudia PRINZ and Karl DECKER

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15119.x

  10. Nucleic acids, protein synthesis and molecular genetics

    1. Top of page
    2. Nucleic acids, protein synthesis and molecular genetics
    3. Metabolism and metabolic regulation
    4. Nucleic acids, protein synthesis and molecular genetics
    5. Protein chemistry and structure
    6. Enzymology
    7. Developmental biochemistry and immunology
    8. Nucleic acids, protein synthesis and molecular genetics
    9. Protein chemistry and structure
    10. Carbohydrates, lipids and other natural products
    11. Nucleic acids, protein synthesis and molecular genetics
    12. Protein chemistry and structure
    13. Enzymology
    14. Physical and inorganic biochemistry
    15. Signal transduction and molecular neurobiology
    16. Molecular cell biology
    1. You have free access to this content
    2. You have free access to this content
    3. You have free access to this content
      Production of human adrenocorticotropin by cleavage of alkaline-phosphatase-derived fusion proteins containing repetitive recognition sequences for collagenases (pages 347–354)

      Joachim DAUM, Peter DONNER, Wilhelm GEILEN, Gisela HÜBNER-KOSNEY, Marina ISERNHAGEN, Harald SCHEIDECKER, Hartmut SELIGER, Werner BOIDOL and Gerhard SIEWERT

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15122.x

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      The 23S ribosomal RNA higher-order structure of Pseudomonas cepacia and other prokaryotes (pages 355–364)

      Peter HÖPFL, Wolfgang LUDWIG, Karl Heinz SCHLEIFER and Niels LARSEN

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15123.x

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      Role of the cell surface-exposed regions of outer membrane protein PhoE of Escherichia coli K12 in the biogenesis of the protein (pages 365–370)

      Marja AGTERBERG, Henriëtte ADRIAANSE, Edwin TIJHAAR, Annelies RESINK and Jan TOMMASSEN

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15124.x

  11. Protein chemistry and structure

    1. Top of page
    2. Nucleic acids, protein synthesis and molecular genetics
    3. Metabolism and metabolic regulation
    4. Nucleic acids, protein synthesis and molecular genetics
    5. Protein chemistry and structure
    6. Enzymology
    7. Developmental biochemistry and immunology
    8. Nucleic acids, protein synthesis and molecular genetics
    9. Protein chemistry and structure
    10. Carbohydrates, lipids and other natural products
    11. Nucleic acids, protein synthesis and molecular genetics
    12. Protein chemistry and structure
    13. Enzymology
    14. Physical and inorganic biochemistry
    15. Signal transduction and molecular neurobiology
    16. Molecular cell biology
    1. You have free access to this content
      Conformation of two somatostatin analogues in aqueous solution : Study by NMR methods and circular dichroism (pages 371–381)

      Chantal WYNANTS, Dirk TOURWE, Wieslaw KAZMIERSKI, Victor J. HRUBY and Georges VAN BINST

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15125.x

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      Recognition of specific Physarumα-tubulin isotypes by a monoclonal antibody : Sequence heterogeneity around the acetylation site at lysine 40 (pages 383–389)

      Paul D. WALDEN, Adrian B. BLINDT, Christopher R. BIRKETT, Robert A. COX and Keith GULL

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15126.x

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      Sulfation of two tyrosine-residues in human complement S-protein (vitronectin) (pages 391–395)

      Dieter JENNE, Annette HILLE, Keith K. STANLEY and Wieland B. HUTTNER

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15127.x

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      A new probe for affinity labelling pancreatic cholecystokinin receptor with minor modification of its structure (pages 397–403)

      Daniel FOURMY, Patrick LOPEZ, Sandrine POIROT, Juan JIMENEZ, Marlène DUFRESNE, Luis MORODER, Stephen P. POWERS and Nicole VAYSSE

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15128.x

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      Purification and characterization of angiotensin-binding protein from porcine liver cytosolic fraction (pages 405–410)

      Hiromi HAGIWARA, Naoaki SUGIURA, Ken-ichi WAKITA and Shigehisa HIROSE

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15129.x

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      Study of the fast-reacting cysteines in phosphoglycerate kinase using chemical modification and site-directed mutagenesis (pages 419–423)

      Philippe MINARD, Michel DESMADRIL, Nathalie BALLERY, David PERAHIA, Liliane MOUAWAD, Len HALL and Jeannine M. YON

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15131.x

  12. Enzymology

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

    1. Top of page
    2. Nucleic acids, protein synthesis and molecular genetics
    3. Metabolism and metabolic regulation
    4. Nucleic acids, protein synthesis and molecular genetics
    5. Protein chemistry and structure
    6. Enzymology
    7. Developmental biochemistry and immunology
    8. Nucleic acids, protein synthesis and molecular genetics
    9. Protein chemistry and structure
    10. Carbohydrates, lipids and other natural products
    11. Nucleic acids, protein synthesis and molecular genetics
    12. Protein chemistry and structure
    13. Enzymology
    14. Physical and inorganic biochemistry
    15. Signal transduction and molecular neurobiology
    16. Molecular cell biology
    1. You have free access to this content
      Inhibition of Desulfovibrio gigas hydrogenase with copper salts and other metal ions (pages 449–454)

      Victor M. FERNANDEZ, Maria L. RUA, Presentación REYES, Richard CAMMACK and E. Claude HATCHIKIAN

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15135.x

  14. Signal transduction and molecular neurobiology

    1. Top of page
    2. Nucleic acids, protein synthesis and molecular genetics
    3. Metabolism and metabolic regulation
    4. Nucleic acids, protein synthesis and molecular genetics
    5. Protein chemistry and structure
    6. Enzymology
    7. Developmental biochemistry and immunology
    8. Nucleic acids, protein synthesis and molecular genetics
    9. Protein chemistry and structure
    10. Carbohydrates, lipids and other natural products
    11. Nucleic acids, protein synthesis and molecular genetics
    12. Protein chemistry and structure
    13. Enzymology
    14. Physical and inorganic biochemistry
    15. Signal transduction and molecular neurobiology
    16. Molecular cell biology
    1. You have free access to this content
      Interleukin 2 stimulates tyrosine phosphorylation in T cell membrane fractions (pages 455–459)

      Jean-Pierre PIAU, Hiro WAKASUGI, Jacques BERTOGLIO, Thomas TURSZ, Didier FRADELIZI and Gérard GACON

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15136.x

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      Phosphorylation of low molecular mass cytosolic proteins by protein kinase C and protein kinase A in the rabbit exocrine pancreas (pages 461–468)

      Antoine G. H. EDERVEEN, Jos V. M. VAN DER LEEST, Sjenet E. VAN EMST-DE VRIES and Jan Joep H. H. M. DE PONT

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15137.x

  15. Molecular cell biology

    1. Top of page
    2. Nucleic acids, protein synthesis and molecular genetics
    3. Metabolism and metabolic regulation
    4. Nucleic acids, protein synthesis and molecular genetics
    5. Protein chemistry and structure
    6. Enzymology
    7. Developmental biochemistry and immunology
    8. Nucleic acids, protein synthesis and molecular genetics
    9. Protein chemistry and structure
    10. Carbohydrates, lipids and other natural products
    11. Nucleic acids, protein synthesis and molecular genetics
    12. Protein chemistry and structure
    13. Enzymology
    14. Physical and inorganic biochemistry
    15. Signal transduction and molecular neurobiology
    16. Molecular cell biology
    1. You have free access to this content
      Degradation of ornithine decarboxylase in mammalian cells is ATP dependent but ubiquitin independent (pages 469–474)

      Yael ROSENBERG-HASSON, Zippi BERCOVICH, Aaron CIECHANOVER and Chaim KAHANA

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15138.x

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      Characterization of a membrane-associated phosphotyrosyl protein phosphatase from the A431 human epidermoid carcinoma cell line (pages 475–483)

      Martin T. BÜTLER, Andrew ZIEMIECKI, Bernd GRONER and Robert R. FRIIS

      Version of Record online: 3 MAR 2005 | DOI: 10.1111/j.1432-1033.1989.tb15139.x

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