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The Journal of Biological Chemistry|December 16, 1994
Human immunodeficiency virus nucleocapsid protein accelerates strand transfer of the terminally redundant sequences involved in reverse transcriptionJ C You, C S McHenryThe Journal of Biological Chemistry|February 15, 1992
Fluorescence energy transfer between the primer and the beta subunit of the DNA polymerase III holoenzymeM A Griep, C S McHenryThe Journal of Biological Chemistry|August 23, 1996
Biotin tagging deletion analysis of domain limits involved in protein-macromolecular interactions. Mapping the tau binding domain of the DNA polymerase III alpha subunitD R Kim, C S McHenryProceedings of the National Academy of Sciences of the United States of America|July 8, 1997
Posttranscriptional modification of retroviral primers is required for late stages of DNA replicationB P Burnett, C S McHenryThe Journal of Biological Chemistry|November 25, 1990
Dissociation of the DNA polymerase III holoenzyme beta 2 subunits is accompanied by conformational change at distal cysteines 333M A Griep, C S McHenryNucleic Acids Research|July 25, 1988
Detection of an epitope, not required for polymerization, that is conserved between E.coli DNA polymerases I and III and bacteriophage T4 DNA polymeraseM A Franden, C S McHenryJournal of Molecular Biology|January 15, 1999
Identification of the acidic residues in the active site of DNA polymerase IIIA E Pritchard, C S McHenryThe Journal of Biological Chemistry|July 5, 1989
Glutamate overcomes the salt inhibition of DNA polymerase III holoenzymeM A Griep, C S McHenryJournal of Molecular Biology|September 23, 1997
A DNA polymerase III holoenzyme-like subassembly from an extreme thermophilic eubacteriumC S McHenry, M Seville, M G CullThe Journal of Biological Chemistry|March 10, 1995
Escherichia coli DNA polymerase III holoenzyme subunits alpha, beta, and gamma directly contact the primer-templateJ A Reems, S Wood, C S McHenryPageof 8