Structural Alterations and Conformational Dynamics in Holliday Junctions Induced by Binding of a Site-Specific Recombinase
Author:
Publisher
Elsevier BV
Subject
Cell Biology,Molecular Biology
Reference39 articles.
1. Classification of nucleic acid junctions;Altona;J. Mol. Biol,1996
2. Effects of Holliday junction position on Xer-mediated recombination in vitro;Arciszewska;EMBO J,1995
3. Action of site-specific recombinases XerC and XerD on tethered Holliday junctions;Arciszewska;EMBO J,1997
4. The isomeric preference of Holliday junctions influences resolution bias by λ integrase;Azaro;EMBO J,1997
5. Structural analysis of the RuvC-Holliday junction complex reveals an unfolded junction;Bennett;J. Mol. Biol,1995
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1. Hexapeptides That Inhibit Processing of Branched DNA Structures Induce a Dynamic Ensemble of Holliday Junction Conformations;Journal of Biological Chemistry;2015-09
2. Molecular dynamics simulation of hydrated d(CGGGTACCCG)4as a four-way DNA Holliday junction and comparison with the crystallographic structure;Molecular Simulation;2015-02-20
3. Organization of DNA Partners and Strand Exchange Mechanisms during Flp Site-Specific Recombination Analyzed by Difference Topology, Single Molecule FRET and Single Molecule TPM;Journal of Molecular Biology;2014-02
4. Single-molecule microscopy of Cre recombination;Proceedings of the National Academy of Sciences;2012-11-30
5. Site-Specific Recombination and Partitioning Systems in the Stable High Copy Propagation of the 2-Micron Yeast Plasmid;Progress in Nucleic Acid Research and Molecular Biology Volume 77;2004
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