In order to enable microorganisms to manifest their intracellular oxygen levels we constructed a genetic sensor circuitry which converts signals impinging on the cellular redox balance into a reporter gene expression readout. Based on the newly found Streptomyces rimosus redox control system, consisting of Rex modulating Retinopathy of prematurity (ROP)-containing promoters in a NADH-dependent manner, we designed an Escherichia coli sensor transcription control system, which constitutes a Rex transactivator (REDOX) with the ability to bind and activate promoters. When oxygen levels were high and resulted in depleted NADH pools, Rex-specific target promoter (cydP1) driven from the expression of secreted (Green fluorscent protein, GFP) report...
SIGNIFICANCE: Organisms have evolved both enzymatic and nonenzymatic pathways to prevent oxidative d...
Understanding the in vivo redox biology of cells is a complex albeit important biological problem. S...
SIGNIFICANCE: Organisms have evolved both enzymatic and nonenzymatic pathways to prevent oxidative d...
In order to enable microorganisms to manifest their intracellular oxygen levels we constructed a gen...
Gram-positive bacteria e.g. Streptomyces coelicolor [8], Bacillus subtilis [43] and Staphylococcus a...
We describe the identification of Rex, a novel redox-sensing repressor that appears to be widespread...
Quantitating intracellular oxidative damage caused by reactive oxygen species (ROS) is of interest i...
Mitochondrial dysfunction plays an important role in the pathogenesis of neurodegenerative diseases,...
Reactive oxygen species (ROS) have an important role with regards to intracellular signaling through...
Reactive oxygen species (ROS) have an important role with regards to intracellular signaling through...
Reactive oxygen species (ROS) have an important role with regards to intracellular signaling through...
Genetically encoded biosensors have emerged as powerful tools for timely and precise in vivo evaluat...
Reactive oxygen species (ROS) have an important role with regards to intracellular signaling through...
SIGNIFICANCE: Organisms have evolved both enzymatic and nonenzymatic pathways to prevent oxidative d...
SIGNIFICANCE: Organisms have evolved both enzymatic and nonenzymatic pathways to prevent oxidative d...
SIGNIFICANCE: Organisms have evolved both enzymatic and nonenzymatic pathways to prevent oxidative d...
Understanding the in vivo redox biology of cells is a complex albeit important biological problem. S...
SIGNIFICANCE: Organisms have evolved both enzymatic and nonenzymatic pathways to prevent oxidative d...
In order to enable microorganisms to manifest their intracellular oxygen levels we constructed a gen...
Gram-positive bacteria e.g. Streptomyces coelicolor [8], Bacillus subtilis [43] and Staphylococcus a...
We describe the identification of Rex, a novel redox-sensing repressor that appears to be widespread...
Quantitating intracellular oxidative damage caused by reactive oxygen species (ROS) is of interest i...
Mitochondrial dysfunction plays an important role in the pathogenesis of neurodegenerative diseases,...
Reactive oxygen species (ROS) have an important role with regards to intracellular signaling through...
Reactive oxygen species (ROS) have an important role with regards to intracellular signaling through...
Reactive oxygen species (ROS) have an important role with regards to intracellular signaling through...
Genetically encoded biosensors have emerged as powerful tools for timely and precise in vivo evaluat...
Reactive oxygen species (ROS) have an important role with regards to intracellular signaling through...
SIGNIFICANCE: Organisms have evolved both enzymatic and nonenzymatic pathways to prevent oxidative d...
SIGNIFICANCE: Organisms have evolved both enzymatic and nonenzymatic pathways to prevent oxidative d...
SIGNIFICANCE: Organisms have evolved both enzymatic and nonenzymatic pathways to prevent oxidative d...
Understanding the in vivo redox biology of cells is a complex albeit important biological problem. S...
SIGNIFICANCE: Organisms have evolved both enzymatic and nonenzymatic pathways to prevent oxidative d...