Controlling DNA degradation from a distance: a new role for the Mu transposition enhancer
Author:
Affiliation:
1. Department of Molecular Biosciences & Institute of Cellular and Molecular Biology; University of Texas at Austin; Austin TX 78712 USA
Funder
National Institutes of Health
Robert Welch Foundation
Publisher
Wiley
Subject
Molecular Biology,Microbiology
Reference77 articles.
1. The AAA+ ClpX machine unfolds a keystone subunit to remodel the Mu transpososome;Abdelhakim;Proc Natl Acad Sci USA,2010
2. Escherichia coli integration host factor stabilizes bacteriophage Mu repressor interactions with operator DNA in vitro;Alazard;Mol Microbiol,1992
3. Role of the A protein-binding sites in the in vitro transposition of Mu DNA. A complex circuit of interactions involving the Mu ends and the transpositional enhancer;Allison;J Biol Chem,1992
4. Chromosomal integration mechanism of infecting Mu virion DNA;Au;J Bacteriol,2006
5. DNA-promoted assembly of the active tetramer of the Mu transposase;Baker;Genes Dev,1992
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1. The bacteriophage mu lysis system–A new mechanism of host lysis?;BIOCELL;2021
2. Fluorescent fusions of the N protein of phage Mu label DNA damage in living cells;DNA Repair;2018-12
3. Transposition Behavior Revealed by High-Resolution Description of Pseudomonas Aeruginosa Saltovirus Integration Sites;Viruses;2018-05-07
4. Repair of transposable phage Mu DNA insertions begins only when theE. colireplisome collides with the transpososome;Molecular Microbiology;2015-06-06
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