Interactions between the Repressor and the Early Operator Region of Bacteriophage Mu
Author:
Publisher
Elsevier BV
Subject
Cell Biology,Molecular Biology,Biochemistry
Reference33 articles.
1. Escherichia coli integration host factor stabilizes bacteriophage Mu repressor interactions with operator DNA in vitro
2. Functional domains of bacteriophage Mu transposase: properties of C-terminal deletions
3. Mutual stabilisation of bacteriophage Mu repressor and histone-like proteins in a nucleoprotein structure
4. Construction of A Dimeric Repressor: Dissection of Subunit Interfaces in Lac Repressor
5. A novel class of winged helix–turn–helix protein: the DNA–binding domain of Mu transposase
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1. Controlling DNA degradation from a distance: a new role for the Mu transposition enhancer;Molecular Microbiology;2014-09-25
2. Potential Mechanisms for Linking Phage Mu Transposition with Cell Physiology;The Bacterial Chromosome;2014-04-30
3. Regions and Residues of an Asymmetric Operator DNA Interacting with the Monomeric Repressor of Temperate Mycobacteriophage L1;Biochemistry;2010-04-21
4. Physicochemical properties and distinct DNA binding capacity of the repressor of temperate Staphylococcus aureus phage φ11;FEBS Journal;2009-02-24
5. Activation of a Dormant ClpX Recognition Motif of Bacteriophage Mu Repressor by Inducing High Local Flexibility;Journal of Biological Chemistry;2008-04
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