Disassembly of the Bacteriophage Mu Transposase for the Initiation of Mu DNA Replication
Author:
Publisher
Elsevier BV
Subject
Cell Biology,Molecular Biology,Biochemistry
Reference34 articles.
1. TRANSPOSITIONAL RECOMBINATION: Mechanistic Insights from Studies of Mu and Other Elements
2. Site-specific recognition of the bacteriophage mu ends by the mu a protein
3. Efficient Mu transposition requires interaction of transposase with a DNA sequence at the Mu operator: Implications for regulation
4. Assembly of the active form of the transposase-Mu DNA complex: A critical control point in Mu transposition
5. The Mu transpositional enhancer can function in trans: Requirement of the enhancer for synapsis but not strand cleavage
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1. Deciphering the Roles of Multicomponent Recognition Signals by the AAA + Unfoldase ClpX;Journal of Molecular Biology;2015-09
2. Potential Mechanisms for Linking Phage Mu Transposition with Cell Physiology;The Bacterial Chromosome;2014-04-30
3. DNA Transposons: Different Proteins and Mechanisms but Similar Rearrangements;The Bacterial Chromosome;2014-04-30
4. Architecture of the Tn7 Posttransposition Complex: An Elaborate Nucleoprotein Structure;Journal of Molecular Biology;2010-08
5. DNA repair by the cryptic endonuclease activity of Mu transposase;Proceedings of the National Academy of Sciences;2010-02-18
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