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The Journal of Biological Chemistry|March 7, 2015
Identification of Subunit Binding Positions on a Model Fork and Displacements That Occur during Sequential Assembly of the Escherichia coli PrimosomeCarol M Manhart, Charles S McHenryNature Structural & Molecular Biology|April 11, 2006
A coproofreading Zn(2+)-dependent exonuclease within a bacterial replicaseNatalie M Stano, Joe Chen, Charles S McHenryJournal of Molecular Biology|August 9, 2011
Polymerase chaperoning and multiple ATPase sites enable the E. coli DNA polymerase III holoenzyme to rapidly form initiation complexesChristopher D Downey, Elliott Crooke, Charles S McHenryThe Journal of Biological Chemistry|May 20, 2015
DNA Polymerase α Subunit Residues and Interactions Required for Efficient Initiation Complex Formation Identified by a Genetic SelectionJanet C Lindow, Paul R Dohrmann, Charles S McHenryMolecular Cell|February 4, 2010
Reconstitution of the B. subtilis replisome with 13 proteins including two distinct replicasesGlenn M Sanders, H Garry Dallmann, Charles S McHenryThe Journal of Biological Chemistry|August 3, 2010
Only one ATP-binding DnaX subunit is required for initiation complex formation by the Escherichia coli DNA polymerase III holoenzymeAnna Wieczorek, Christopher D Downey, H Garry Dallmann, et al.The Journal of Biological Chemistry|April 9, 2016
DNA Polymerase III, but Not Polymerase IV, Must Be Bound to a τ-Containing DnaX Complex to Enable Exchange into Replication ForksQuan Yuan, Paul R Dohrmann, Mark D Sutton, et al.Journal of Molecular Biology|October 12, 2011
The rate of polymerase release upon filling the gap between Okazaki fragments is inadequate to support cycling during lagging strand synthesisPaul R Dohrmann, Carol M Manhart, Christopher D Downey, et al.Nucleic Acids Research|January 21, 2016
The DNA polymerase III holoenzyme contains γ and is not a trimeric polymerasePaul R Dohrmann, Raul Correa, Ryan L Frisch, et al.The Journal of Biological Chemistry|December 22, 2004
Reconstitution of a minimal DNA replicase from Pseudomonas aeruginosa and stimulation by non-cognate auxiliary factorsThale C Jarvis, Amber A Beaudry, James M Bullard, et al.Pageof 3