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Molecular Microbiology|August 28, 2003
Chromosomal replicases as asymmetric dimers: studies of subunit arrangement and functional consequencesCharles S McHenryAnnual Review of Biochemistry|June 17, 2011
DNA replicases from a bacterial perspectiveCharles S McHenryCurrent Opinion in Chemical Biology|August 23, 2011
Bacterial replicases and related polymerasesCharles S McHenryEMBO Reports|April 9, 2011
Breaking the rules: bacteria that use several DNA polymerase IIIsCharles S McHenryThe Journal of Biological Chemistry|March 7, 2006
The NH2-terminal php domain of the alpha subunit of the Escherichia coli replicase binds the epsilon proofreading subunitAnna Wieczorek, Charles S McHenryThe Journal of Biological Chemistry|September 15, 2009
Strand displacement by DNA polymerase III occurs through a tau-psi-chi link to single-stranded DNA-binding protein coating the lagging strand templateQuan Yuan, Charles S McHenryNucleic Acids Research|November 16, 2013
Cycling of the E. coli lagging strand polymerase is triggered exclusively by the availability of a new primer at the replication forkQuan Yuan, Charles S McHenryJournal of Molecular Biology|June 1, 2005
A bipartite polymerase-processivity factor interaction: only the internal beta binding site of the alpha subunit is required for processive replication by the DNA polymerase III holoenzymePaul R Dohrmann, Charles S McHenryThe Journal of Biological Chemistry|December 25, 2012
The PriA replication restart protein blocks replicase access prior to helicase assembly and directs template specificity through its ATPase activityCarol M Manhart, Charles S McHenryMolecular Cell|March 2, 2010
Chaperoning of a replicative polymerase onto a newly assembled DNA-bound sliding clamp by the clamp loaderChristopher D Downey, Charles S McHenryPageof 3