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Analysis of a Multicomponent Thermostable DNA Polymerase III Replicase from an Extreme Thermophile*
DNA POLYMERASE III HOLOENZYME: Structure and Function of a Chromosomal Replicating Machine
Distinct Co-Evolution Patterns of Genes Associated to DNA Polymerase III Dnae and Polc Stefan Engelen1,2, David Vallenet2, Claudine Médigue2 and Antoine Danchin1,3*
Glycolytic Pyruvate Kinase Moonlighting Activities in DNA Replication
Coordination Between Nucleotide Excision Repair And
Dnag Primase—A Target for the Development of Novel Antibacterial Agents
Coordination Between Nucleotide Excision Repair and Specialized Polymerase Dnae2 Action 2 Enables DNA Damage Survival in Non-Replicating Bacteria
(12) United States Patent (10) Patent No.: US 6,555,349 B1 O'donnell (45) Date of Patent: Apr
Proposal for a Minimal DNA Auto-Replicative System
1.1 DNA Polymerase III Holoenzyme
Architecture and Conservation of the Bacterial DNA Replication Machinery, an Underexploited Drug Target
Architecture and Conservation of the Bacterial DNA Replication Machinery, an Underexploited Drug Target
The Topoisomerase IV Parc Subunit Colocalizes with the Caulobacter Replisome and Is Required for Polar Localization of Replication Origins
Table 4. Essential Genes
Deletion of the Essential Escherichia Coli Holb Gene Coding for a Subunit of the DNA Polymerase III Holoenzyme
Supplementary Materials: Modular Diversity of the BLUF Proteins and Their Potential for the Development of Diverse Optogenetic Tools
Single-Molecule Studies Contrast Ordered DNA Replication With
Staphylococcus Aureus
Top View
Chaperoning of a Replicative Polymerase Onto a Newly Assembled DNA-Bound Sliding Clamp by the Clamp Loader
ENZYMOLOGY of DNA REPLICATION - I
Supplementary Table 1 (ST1)
Central Role for Rnase Ybey in Hfq-Dependent and Hfq-Independent Small-RNA Regulation in Bacteria
Escherichia Coli Β-Clamp Slows Down DNA Polymerase I Dependent Nick
Escherichia Coli Β-Clamp Slows Down DNA Polymerase I Dependent Nick Translation While Accelerating Ligation
Neisseria Meningitidis
The Internal Workings of a DNA Polymerase Clamp-Loading Machine
Dnag Primase—A Target for the Development of Novel Antibacterial Agents
The Interplay of Primer-Template DNA Phosphorylation Status and Single
The SOS Error-Prone DNA Polymerase V Mutasome and Β-Sliding Clamp Acting in Concert on Undamaged DNA and During Translesion Synthesis
Activation and Regulation of E. Coli DNA Polymerase V Studied at the Single-Molecule Level Caldas, Victor Emanoel Armini
Cooperative Working of Bacterial Chromosome Replication Proteins Generated by a Reconstituted Protein Expression System
A Pan-Genome Method to Determine Core Regions of the Bacillus Subtilis and Escherichia Coli Genomes
(12) Patent Application Publication (10) Pub. No.: US 2004/0110210 A1 O'donnell Et Al
Sliding Clamp Dynamics Within E. Coli DNA Polymerase I11 Holoenzyme
Glycolytic Pyruvate Kinase Moonlighting Activities in DNA