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  1. Dynamic DNA binding licenses a repair factor to bypass roadblocks in search of DNA lesions
  2. Dynamic DNA Binding Licenses a Eukaryotic Repair Complex to Bypass Protein Roadblocks in Search of DNA Lesions
  3. ATP binding and hydrolysis by Saccharomyces cerevisiae Msh2–Msh3 are differentially modulated by mismatch and double-strand break repair DNA substrates
  4. Mlh1-Mlh3, a Meiotic Crossover and DNA Mismatch Repair Factor, Is a Msh2-Msh3-stimulated Endonuclease
  5. Distinct Requirements within the Msh3 Nucleotide Binding Pocket for Mismatch and Double-Strand Break Repair
  6. Role of Saw1 in Rad1/Rad10 complex assembly at recombination intermediates in budding yeast
  7. Msh2-Msh3 Interferes with Okazaki Fragment Processing to Promote Trinucleotide Repeat Expansions
  8. Multiple Factors Insulate Msh2–Msh6 Mismatch Repair Activity from Defects in Msh2 Domain I
  9. Dynamic Basis for One-Dimensional DNA Scanning by the Mismatch Repair Complex Msh2-Msh6
  10. Saccharomyces cerevisiae MSH2–MSH3 and MSH2–MSH6 Complexes Display Distinct Requirements for DNA Binding Domain I in Mismatch Recognition
  11. Mismatch Repair Factor MSH2-MSH3 Binds and Alters the Conformation of Branched DNA Structures Predicted to form During Genetic Recombination
  12. Detection of High-Affinity and Sliding Clamp Modes for MSH2-MSH6 by Single-Molecule Unzipping Force Analysis
  13. Replication Factors License Exonuclease I in Mismatch Repair
  14. Plasmid and Chromosome Traffic Control: How ParA and ParB Drive Partition
  15. The DNA Binding Domains of P1 ParB and the Architecture of the P1 Plasmid Partition Complex
  16. Stoichiometry of P1 Plasmid Partition Complexes