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Nucleic Acids Research|September 25, 1995
Structural and functional similarities of prokaryotic and eukaryotic DNA polymerase sliding clampsZ Kelman, M O'DonnellAnnual Review of Biochemistry|January 1, 1995
DNA polymerase III holoenzyme: structure and function of a chromosomal replicating machineZ Kelman, M O'DonnellCurrent Opinion in Genetics & Development|April 1, 1994
DNA replication: enzymology and mechanismsZ Kelman, M O'DonnellStructure (London, England : 1993)|March 31, 1998
Processivity of DNA polymerases: two mechanisms, one goalZ Kelman, J Hurwitz, M O'DonnellCurrent Biology : CB|November 1, 1995
Protein structure. Why have six-fold symmetry?Z Kelman, J Finkelstein, M O'DonnellGene|December 1, 1995
Escherichia coli expression vectors containing a protein kinase recognition motif, His6-tag and hemagglutinin epitopeZ Kelman, N Yao, M O'DonnellCell|February 16, 1999
Trading places on DNA--a three-point switch underlies primer handoff from primase to the replicative DNA polymeraseA Yuzhakov, Z Kelman, M O'DonnellThe EMBO Journal|November 2, 1999
Multiple competition reactions for RPA order the assembly of the DNA polymerase delta holoenzymeA Yuzhakov, Z Kelman, J Hurwitz, et al.The EMBO Journal|May 26, 1998
Devoted to the lagging strand-the subunit of DNA polymerase III holoenzyme contacts SSB to promote processive elongation and sliding clamp assemblyZ Kelman, A Yuzhakov, J Andjelkovic, et al.The EMBO Journal|February 2, 1999
The internal workings of a DNA polymerase clamp-loading machineJ Turner, M M Hingorani, Z Kelman, et al.Pageof 87