Quantitating intracellular oxidative damage caused by reactive oxygen species (ROS) is of interest in many fields of biological research. The current systems primarily rely on supplemented oxygen-sensitive substrates that penetrate the target cells, and react with ROS to produce signals that can be monitored with spectroscopic or imaging techniques. The objective here was to design a new non-invasive analytical strategy for measuring ROS-induced damage inside living cells by taking advantage of the native redox sensor system of E. coli. The developed plasmid-based sensor relies on an oxygen-sensitive transcriptional repressor IscR that controls the expression of a fluorescent marker in vivo. The system was shown to quantitatively respond to...
In the present study we have analyzed protein oxidation on Escherichia coli when these cells were s...
Reactive oxygen species (ROS) have a profound influence on almost every aspect of plant biology. Her...
Ever since the “great oxidation event,” Earth’s cellular life forms had to cope with the danger of r...
The detection of reactive oxygen species (ROS) and the analysis of oxidative stress are frequent app...
The promoter region of the katG gene of Escherichia coli has been fused to two reporter genes GFPuv,...
In order to enable microorganisms to manifest their intracellular oxygen levels we constructed a gen...
In order to enable microorganisms to manifest their intracellular oxygen levels we constructed a gen...
A plasmid containing a transcriptional fusion of the Escherichia coli katG promoter to a truncated V...
The role of reactive oxygen species (ROS) in microbial metabolism and stress response has emerged as...
Bacterial reporter assays are powerful tools used to study the effect of different compounds that af...
Microbial biosensors can be used to provide information about the cells’ environment in large-scale ...
Generation of reactive oxygen species (ROS) constantly occurs in healthy cells and is inevitable for...
Understanding the in vivo redox biology of cells is a complex albeit important biological problem. S...
Claire E. Jones is a graduate student in Molecular Sciences and Nanotechnology at Louisiana Tech Uni...
Matthew McDougal and Patrick L. Hindmarsh are a part of the School of Biological Sciences at Louisia...
In the present study we have analyzed protein oxidation on Escherichia coli when these cells were s...
Reactive oxygen species (ROS) have a profound influence on almost every aspect of plant biology. Her...
Ever since the “great oxidation event,” Earth’s cellular life forms had to cope with the danger of r...
The detection of reactive oxygen species (ROS) and the analysis of oxidative stress are frequent app...
The promoter region of the katG gene of Escherichia coli has been fused to two reporter genes GFPuv,...
In order to enable microorganisms to manifest their intracellular oxygen levels we constructed a gen...
In order to enable microorganisms to manifest their intracellular oxygen levels we constructed a gen...
A plasmid containing a transcriptional fusion of the Escherichia coli katG promoter to a truncated V...
The role of reactive oxygen species (ROS) in microbial metabolism and stress response has emerged as...
Bacterial reporter assays are powerful tools used to study the effect of different compounds that af...
Microbial biosensors can be used to provide information about the cells’ environment in large-scale ...
Generation of reactive oxygen species (ROS) constantly occurs in healthy cells and is inevitable for...
Understanding the in vivo redox biology of cells is a complex albeit important biological problem. S...
Claire E. Jones is a graduate student in Molecular Sciences and Nanotechnology at Louisiana Tech Uni...
Matthew McDougal and Patrick L. Hindmarsh are a part of the School of Biological Sciences at Louisia...
In the present study we have analyzed protein oxidation on Escherichia coli when these cells were s...
Reactive oxygen species (ROS) have a profound influence on almost every aspect of plant biology. Her...
Ever since the “great oxidation event,” Earth’s cellular life forms had to cope with the danger of r...