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Cell|January 12, 1996
A molecular switch in a replication machine defined by an internal competition for protein ringsV Naktinis, J Turner, M O'DonnellThe Journal of Biological Chemistry|June 2, 1995
Assembly of a chromosomal replication machine: two DNA polymerases, a clamp loader, and sliding clamps in one holoenzyme particle. III. Interface between two polymerases and the clamp loaderR Onrust, J Finkelstein, J Turner, et al.The Journal of Biological Chemistry|June 2, 1995
Assembly of a chromosomal replication machine: two DNA polymerases, a clamp loader, and sliding clamps in one holoenzyme particle. I. Organization of the clamp loaderR Onrust, J Finkelstein, V Naktinis, et al.The Journal of Biological Chemistry|June 2, 1995
Assembly of a chromosomal replication machine: two DNA polymerases, a clamp loader, and sliding clamps in one holoenzyme particle. IV. ATP-binding site mutants identify the clamp loaderH Xiao, V Naktinis, M O'DonnellThe Journal of Biological Chemistry|June 2, 1995
Assembly of a chromosomal replication machine: two DNA polymerases, a clamp loader, and sliding clamps in one holoenzyme particle. II. Intermediate complex between the clamp loader and its clampV Naktinis, R Onrust, L Fang, et al.Cell|September 20, 1996
Replisome assembly reveals the basis for asymmetric function in leading and lagging strand replicationA Yuzhakov, J Turner, M O'DonnellCell|September 9, 1994
An explanation for lagging strand replication: polymerase hopping among DNA sliding clampsP T Stukenberg, J Turner, M O'DonnellThe EMBO Journal|February 2, 1999
The internal workings of a DNA polymerase clamp-loading machineJ Turner, M M Hingorani, Z Kelman, et al.Journal of Molecular Biology|March 4, 2000
Crystal structure of the DNA polymerase processivity factor of T4 bacteriophageI Moarefi, D Jeruzalmi, J Turner, et al.The Journal of Biological Chemistry|August 5, 2000
The delta subunit of DNA polymerase III holoenzyme serves as a sliding clamp unloader in Escherichia coliF P Leu, M M Hingorani, J Turner, et al.Pageof 476