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DNA Polymerase III

  • Research Article
    Phenotypes of dnaXE145A Mutant Cells Indicate that the Escherichia coli Clamp Loader Has a Role in the Restart of Stalled Replication Forks
    Ingvild Flåtten, Emily Helgesen, Ida Benedikte Pedersen, Torsten Waldminghaus, Christiane Rothe, Riikka Taipale, Line Johnsen, Kirsten Skarstad
  • GENETICS AND MOLECULAR BIOLOGY
    The ε Subunit of DNA Polymerase III Is Involved in the Nalidixic Acid-Induced SOS Response in Escherichia coli
    Jennifer Reineke Pohlhaus, David T. Long, Erin O'Reilly, Kenneth N. Kreuzer
  • GENETICS AND MOLECULAR BIOLOGY
    Role of Escherichia coli DNA Polymerase I in Conferring Viability upon the dnaN159 Mutant Strain
    Robert W. Maul, Laurie H. Sanders, James B. Lim, Rosemary Benitez, Mark D. Sutton
  • GENETICS AND MOLECULAR BIOLOGY
    Mutator and Antimutator Effects of the Bacteriophage P1 hot Gene Product
    Anna K. Chikova, Roel M. Schaaper
  • ENZYMES AND PROTEINS
    The Plasmid RK2 Replication Initiator Protein (TrfA) Binds to the Sliding Clamp β Subunit of DNA Polymerase III: Implication for the Toxicity of a Peptide Derived from the Amino-Terminal Portion of 33-Kilodalton TrfA
    Kritaya Kongsuwan, Peter Josh, Marc J. Picault, Gene Wijffels, Brian Dalrymple
  • STRUCTURAL BIOLOGY
    Structure of the θ Subunit of Escherichia coli DNA Polymerase III in Complex with the ε Subunit
    Max A. Keniry, Ah Young Park, Elisabeth A. Owen, Samir M. Hamdan, Guido Pintacuda, Gottfried Otting, Nicholas E. Dixon
  • STRUCTURAL BIOLOGY
    Nuclear Magnetic Resonance Solution Structure of the Escherichia coli DNA Polymerase III θ Subunit
    Geoffrey A. Mueller, Thomas W. Kirby, Eugene F. DeRose, Dawei Li, Roel M. Schaaper, Robert E. London
  • Bacteriophages, Transposons, and Plasmids
    The Bacteriophage P1 hot Gene Product Can Substitute for the Escherichia coli DNA Polymerase III θ Subunit
    Anna K. Chikova, Roel M. Schaaper
  • PHYSIOLOGY AND METABOLISM
    Cytochrome Oxidase Deficiency Protects Escherichia coli from Cell Death but Not from Filamentation Due to Thymine Deficiency or DNA Polymerase Inactivation
    Bernard Strauss, Kemba Kelly, Damian Ekiert
  • GENETICS AND MOLECULAR BIOLOGY
    The Escherichia coli dnaN159 Mutant Displays Altered DNA Polymerase Usage and Chronic SOS Induction
    Mark D. Sutton

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