Role of yaaA in hydrogen peroxide stress response in Escherichia coli Hydrogen peroxide (H2O2) is commonly formed in microbial habitats by either chemical oxidation processes or host defense responses. H2O2 can penetrate cell membranes and damage key intracellular biomolecules, including DNA and certain groups of iron-dependent enzymes. Bacteria defend themselves against this H2O2 stress by inducing a set of genes that engages multiple defensive strategies. In Escherichia coli, this defense is regulated by a transcriptional factor, OxyR. A previous microarray study suggested that yaaA, an uncharacterized gene found in many bacteria, was induced by H2O2 in Escherichia coli as part of its OxyR regulon. Here I confirm that yaaA is a key ele...
The oxidative stress response of the highly resistant actinomycete Dietzia cinnamea P4 after treatme...
Hydrogen peroxide (H2O2) is a key defense component of host-microbe interaction. However, H2O2 conce...
Survival of Bacteroides fragilis in the presence of oxygen was dependent on the ability of bacteria ...
Role of yaaA in hydrogen peroxide stress response in Escherichia coli Hydrogen peroxide (H2O2) is...
Hydrogen peroxide (H2O2) can oxidize cytoplasmic ferrous ions (Fe2+) to produce highly reactive hydr...
Escherichia coli resides in the lumen of the gut, where it encounters both biotic and abiotic source...
The advent of O2 in the atmosphere was among the first major pollution events occurred on earth The ...
It is well established that in bacteria, such as Escherichia coli, OxyR is a transcriptional regulat...
The bactericidal mechanism of hydrogen peroxide is poorly understood, with most evidence being obtai...
Reactive oxygen species produce oxidized bases, deoxyribose lesions and DNA strand breaks in mammali...
Unicellular organisms have the prevalent challenge to survive under oxidative stress of reactive oxy...
Since its discovery in 1969, superoxide (O2-) has been recognized as a primary source of oxidative s...
Hydrogen peroxide (H2O2) is a key defense component of host-microbe interaction. However, H2O2concen...
Deeper understanding of antibiotic-induced physiological responses is critical to identifying means ...
In the present study we have analyzed protein oxidation on Escherichia coli when these cells were s...
The oxidative stress response of the highly resistant actinomycete Dietzia cinnamea P4 after treatme...
Hydrogen peroxide (H2O2) is a key defense component of host-microbe interaction. However, H2O2 conce...
Survival of Bacteroides fragilis in the presence of oxygen was dependent on the ability of bacteria ...
Role of yaaA in hydrogen peroxide stress response in Escherichia coli Hydrogen peroxide (H2O2) is...
Hydrogen peroxide (H2O2) can oxidize cytoplasmic ferrous ions (Fe2+) to produce highly reactive hydr...
Escherichia coli resides in the lumen of the gut, where it encounters both biotic and abiotic source...
The advent of O2 in the atmosphere was among the first major pollution events occurred on earth The ...
It is well established that in bacteria, such as Escherichia coli, OxyR is a transcriptional regulat...
The bactericidal mechanism of hydrogen peroxide is poorly understood, with most evidence being obtai...
Reactive oxygen species produce oxidized bases, deoxyribose lesions and DNA strand breaks in mammali...
Unicellular organisms have the prevalent challenge to survive under oxidative stress of reactive oxy...
Since its discovery in 1969, superoxide (O2-) has been recognized as a primary source of oxidative s...
Hydrogen peroxide (H2O2) is a key defense component of host-microbe interaction. However, H2O2concen...
Deeper understanding of antibiotic-induced physiological responses is critical to identifying means ...
In the present study we have analyzed protein oxidation on Escherichia coli when these cells were s...
The oxidative stress response of the highly resistant actinomycete Dietzia cinnamea P4 after treatme...
Hydrogen peroxide (H2O2) is a key defense component of host-microbe interaction. However, H2O2 conce...
Survival of Bacteroides fragilis in the presence of oxygen was dependent on the ability of bacteria ...