A Rex Family Transcriptional Repressor Influences H2O2 Accumulation by Enterococcus faecalis
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Title
A Rex Family Transcriptional Repressor Influences H2O2 Accumulation by Enterococcus faecalis
Authors
Keywords
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Journal
JOURNAL OF BACTERIOLOGY
Volume 195, Issue 8, Pages 1815-1824
Publisher
American Society for Microbiology
Online
2013-02-16
DOI
10.1128/jb.02135-12
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- (2011) Ibrahim Mehmeti et al. APPLIED AND ENVIRONMENTAL MICROBIOLOGY
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- Use of Recombinase-BasedIn VivoExpression Technology To Characterize Enterococcus faecalis Gene Expression during Infection IdentifiesIn Vivo-Expressed Antisense RNAs and Implicates the Protease Eep in Pathogenesis
- (2011) Kristi L. Frank et al. INFECTION AND IMMUNITY
- Transcriptional Regulation of Central Carbon and Energy Metabolism in Bacteria by Redox-Responsive Repressor Rex
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- Small-angle X-ray Scattering Study of a Rex Family Repressor: Conformational Response to NADH and NAD+ Binding in Solution
- (2011) Ellen Wang et al. JOURNAL OF MOLECULAR BIOLOGY
- Structural Basis for NADH/NAD+ Redox Sensing by a Rex Family Repressor
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- (2010) Martin Pagels et al. MOLECULAR MICROBIOLOGY
- Glycerol Is Metabolized in a Complex and Strain-Dependent Manner in Enterococcus faecalis
- (2009) A. Bizzini et al. JOURNAL OF BACTERIOLOGY
- Capsular Polysaccharide Production in Enterococcus faecalis and Contribution of CpsF to Capsule Serospecificity
- (2009) L. R. Thurlow et al. JOURNAL OF BACTERIOLOGY
- Physiological proteomics and stress/starvation responses in Bacillus subtilis and Staphylococcus aureus
- (2009) Michael Hecker et al. RESEARCH IN MICROBIOLOGY
- The RAST Server: Rapid Annotations using Subsystems Technology
- (2008) Ramy K Aziz et al. BMC GENOMICS
- Structure and functional properties of theBacillus subtilistranscriptional repressor Rex
- (2008) Ellen Wang et al. MOLECULAR MICROBIOLOGY
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