The transcriptional repressor Rex is a sensor of the intracellular NADH/NAD(+) redox state through direct binding of NADH or NAD(+). Homodimeric Rex protein from Thermus aquaticus (T-Rex) and Bacillus subtilis (B-Rex) exists in several different conformations. In both organisms, Rex in complex with NADH has the DNA binding domains packed together at the dimer interface, whereas in the apo form of B-Rex the linkers connecting these domains to the core are flexible. The crystal structures of the apo forms of B-Rex and a mutated variant of T-Rex are radically different. We describe the solution structures of B-Rex in complex with NAD(+) or NADH and in its apo form, on the basis of small-angle X-ray scattering (SAXS) measurements. This study ad...
International audienceIn many Gram-positive bacteria, the redox-sensing transcriptional repressor Re...
International audienceIn many Gram-positive bacteria, the redox-sensing transcriptional repressor Re...
Maintenance of the intracellular NADH/NAD+ redox poise is vital for energy generation in cells. Gram...
The transcriptional repressor Rex is a sensor of the intracellular NADH/NAD(+) redox state through d...
The transcriptional repressor Rex is a sensor of the intracellular NADH/NAD(+) redox state through d...
The transcription factor Rex has been implicated in regulation of the expression of genes important ...
The redox-sensing repressor Rex regulates transcription of respiratory genes in response to the intr...
SummaryThe redox-sensing repressor Rex regulates transcription of respiratory genes in response to t...
AbstractThe Rex-family repressors sense redox levels by alternative binding to NADH or NAD+. Unlike ...
Nicotinamide adenine dinucleotides have emerged as key signals of the cellular redox state. Yet the ...
SummaryThe redox-sensing repressor Rex regulates transcription of respiratory genes in response to t...
Gram-positive bacteria e.g. Streptomyces coelicolor [8], Bacillus subtilis [43] and Staphylococcus a...
Cartoon representations of Rex in complex with NAD+ (A and B) and NAD+ and DNA (C). The nucleotide b...
We describe the identification of Rex, a novel redox-sensing repressor that appears to be widespread...
In many Gram-positive bacteria, the redox-sensing transcriptional repressor Rex controls central car...
International audienceIn many Gram-positive bacteria, the redox-sensing transcriptional repressor Re...
International audienceIn many Gram-positive bacteria, the redox-sensing transcriptional repressor Re...
Maintenance of the intracellular NADH/NAD+ redox poise is vital for energy generation in cells. Gram...
The transcriptional repressor Rex is a sensor of the intracellular NADH/NAD(+) redox state through d...
The transcriptional repressor Rex is a sensor of the intracellular NADH/NAD(+) redox state through d...
The transcription factor Rex has been implicated in regulation of the expression of genes important ...
The redox-sensing repressor Rex regulates transcription of respiratory genes in response to the intr...
SummaryThe redox-sensing repressor Rex regulates transcription of respiratory genes in response to t...
AbstractThe Rex-family repressors sense redox levels by alternative binding to NADH or NAD+. Unlike ...
Nicotinamide adenine dinucleotides have emerged as key signals of the cellular redox state. Yet the ...
SummaryThe redox-sensing repressor Rex regulates transcription of respiratory genes in response to t...
Gram-positive bacteria e.g. Streptomyces coelicolor [8], Bacillus subtilis [43] and Staphylococcus a...
Cartoon representations of Rex in complex with NAD+ (A and B) and NAD+ and DNA (C). The nucleotide b...
We describe the identification of Rex, a novel redox-sensing repressor that appears to be widespread...
In many Gram-positive bacteria, the redox-sensing transcriptional repressor Rex controls central car...
International audienceIn many Gram-positive bacteria, the redox-sensing transcriptional repressor Re...
International audienceIn many Gram-positive bacteria, the redox-sensing transcriptional repressor Re...
Maintenance of the intracellular NADH/NAD+ redox poise is vital for energy generation in cells. Gram...