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DNA Polymerase III: Running Rings around the Fork

Data up to Jan 2025

Published1996
Citations32
References18

Total Citations Per Year

Abstract

References (18)

D type cyclins associate with multiple protein kinases and the DNA replication and repair factor PCNA

1992 • 1,023 citations

Crystal structure of the eukaryotic DNA polymerase processivity factor PCNA

1994 • 899 citations

Three-dimensional structure of the β subunit of E. coli DNA polymerase III holoenzyme: A sliding DNA clamp

1992 • 748 citations

DNA POLYMERASE III HOLOENZYME: Structure and Function of a Chromosomal Replicating Machine

1995 • 422 citations

Mechanism of the sliding beta-clamp of DNA polymerase III holoenzyme

1991 • 420 citations

Smart machines at the DNA replication fork

1994 • 312 citations

An explanation for lagging strand replication: Polymerase hopping among DNA sliding clamps

1994 • 178 citations

Assembly of a Chromosomal Replication Machine: Two DNA Polymerases, a Clamp Loader, and Sliding Clamps in One Holoenzyme Particle.

1995 • 174 citations

The Escherichia coli preprimosome and DNA B helicase can form replication forks that move at the same rate.

1987 • 156 citations

A Molecular Switch in a Replication Machine Defined by an Internal Competition for Protein Rings

1996 • 154 citations

A Transcriptional Enhancer Whose Function Imposes a Requirement That Proteins Track Along DNA

1992 • 130 citations

Assembly of a Chromosomal Replication Machine: Two DNA Polymerases, a Clamp Loader, and Sliding Clamps in One Holoenzyme Particle.

1995 • 100 citations

The rapid dissociation of the T4 DNA polymerase holoenzyme when stopped by a DNA hairpin helix. A model for polymerase release following the termination of each Okazaki fragment.

1994 • 93 citations

Prokaryotic DNA replication mechanisms

1987 • 82 citations

Coordinated leading- and lagging-strand synthesis at the Escherichia coli DNA replication fork. IV. Reconstitution of an asymmetric, dimeric DNA polymerase III holoenzyme.

1992 • 72 citations

Detecting the ability of viral, bacterial and eukaryotic replication proteins to track along DNA.

1994 • 68 citations

Adenosine 5'-O-(3-thiotriphosphate) can support the formation of an initiation complex between the DNA polymerase III holoenzyme and primed DNA.

1984 • 63 citations

DNA replication, second edition

1992 • 24 citations

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DNA Polymerase III: Running Rings around the Fork (1996) – Cell | Metascience Observatory Explorer