Multiple antibiotic resistance regulator (MarR) family proteins are widely conserved transcription factors that control bacterial resistance to antibiotics, environmental stresses, as well as the regulation of virulence determinants. Escherichia coli MarR, the prototype member of this family, has recently been shown to undergo copper(II)-catalyzed inter-dimer disulfide bond formation via a unique cysteine residue (Cys80) residing in its DNA-binding domain. However, despite extensive structural characterization of the MarR family proteins, the structural mechanism for DNA binding of this copper(II)-sensing MarR factor remains elusive. Here, we report the crystal structures of DNA-bound forms of MarR, which revealed a unique, concerted genera...
In bacteria, two-component systems act as signaling systems to respond to environmental stimuli. Two...
International audienceFur (ferric uptake regulation protein) is a bacterial global regulator that us...
The uptake of zinc, which is vital in trace amounts, is tightly controlled in bacteria. For this con...
Multiple antibiotic resistance regulator (MarR) family proteins are widely conserved transcription f...
Multiple antibiotic resistance regulator (MarR) family proteins are widely conserved transcription f...
The widely conserved multiple antibiotic resistance regulator (MarR) family of transcription factors...
Bacteria and archaea encode members of the large multiple antibiotic resistance regulator (MarR) fam...
Copper-sensitive operon repressors (CsoRs) act to sense cuprous ions and bind them with a high affin...
The MarR (multiple antibiotic resistance regulator) family of prokaryotic transcriptional regulators...
Bacteria and archaea encode members of the large multiple antibiotic resistance regulator (MarR) fam...
Gram-negative bacteria can control the concentrations of metal ions through the MerR family of trans...
In pathogens, a unique class of metalloregulator proteins, called gene regulatory proteins, sense sp...
AbstractTwo putative oxidative-stress sensor proteins from Pseudomonas aeruginosa, PA1607 and PA1374...
Copper is essential for proper functioning of cells but is dangerous in unregulated concentrations. ...
Multiple Antibiotic Resistance Regulators (MarRs) are DNA binding proteins involved in bacterial sur...
In bacteria, two-component systems act as signaling systems to respond to environmental stimuli. Two...
International audienceFur (ferric uptake regulation protein) is a bacterial global regulator that us...
The uptake of zinc, which is vital in trace amounts, is tightly controlled in bacteria. For this con...
Multiple antibiotic resistance regulator (MarR) family proteins are widely conserved transcription f...
Multiple antibiotic resistance regulator (MarR) family proteins are widely conserved transcription f...
The widely conserved multiple antibiotic resistance regulator (MarR) family of transcription factors...
Bacteria and archaea encode members of the large multiple antibiotic resistance regulator (MarR) fam...
Copper-sensitive operon repressors (CsoRs) act to sense cuprous ions and bind them with a high affin...
The MarR (multiple antibiotic resistance regulator) family of prokaryotic transcriptional regulators...
Bacteria and archaea encode members of the large multiple antibiotic resistance regulator (MarR) fam...
Gram-negative bacteria can control the concentrations of metal ions through the MerR family of trans...
In pathogens, a unique class of metalloregulator proteins, called gene regulatory proteins, sense sp...
AbstractTwo putative oxidative-stress sensor proteins from Pseudomonas aeruginosa, PA1607 and PA1374...
Copper is essential for proper functioning of cells but is dangerous in unregulated concentrations. ...
Multiple Antibiotic Resistance Regulators (MarRs) are DNA binding proteins involved in bacterial sur...
In bacteria, two-component systems act as signaling systems to respond to environmental stimuli. Two...
International audienceFur (ferric uptake regulation protein) is a bacterial global regulator that us...
The uptake of zinc, which is vital in trace amounts, is tightly controlled in bacteria. For this con...