ABSTRACT SpxA is a unique transcriptional regulator highly conserved among members of the phylum Firmicutes that binds RNA polymerase and can act as an antiactivator. Why some Firmicutes members have two highly similar SpxA paralogs is not understood. Here, we show that the SpxA paralogs of the pathogen Streptococcus pyogenes, SpxA1 and SpxA2, act coordinately to regulate virulence by fine-tuning toxin expression and stress resistance. Construction and analysis of mutants revealed that SpxA1− mutants were defective for growth under aerobic conditions, while SpxA2− mutants had severely attenuated responses to multiple stresses, including thermal and oxidative stresses. SpxA1− mutants had enhanced resistance to the cationic antimicrobial mole...
International audienceToxin-antitoxin (TA) systems are ubiquitous among bacteria, frequently express...
Staphylococcus aureus is capable of causing a remarkable spectrum of disease, ranging from mild skin...
Bacterial cells respond to environmental stresses by modulating their gene expression and adjusting ...
<div><p><i>Streptococcus suis</i> serotype 2 is an important zoonotic pathogen causing severe infect...
Streptococcus suis serotype 2 is an important zoonotic pathogen causing severe infections in pigs an...
Streptococcus suis serotype 2 is an important zoonotic pathogen causing severe infections in pigs an...
Previous work suggested that the underlying mechanisms by which the Streptococcus mutans ClpXP prote...
The SpxA1 and SpxA2 (formerly SpxA and SpxB) transcriptional regulators of Streptococcus mutans are ...
D ow nloaded from 2 ABSTRACT 1 Previous work suggested that the underlying mechanisms by which the 2...
S. aureus combats cell wall antibiotic stress by altered gene expression mediated by various environ...
In oral biofilms, two of the major environmental challenges encountered by the dental pathogen Strep...
S. aureus combats cell wall antibiotic stress by altered gene expression mediated by various environ...
<div><p>In oral biofilms, two of the major environmental challenges encountered by the dental pathog...
Spx is a global regulator that is widespread among the low-GC-content Gram-positive bacteria. Spx ha...
Spx is a global regulator that is widespread among the low G+C Gram-positive bacteria. Spx has been ...
International audienceToxin-antitoxin (TA) systems are ubiquitous among bacteria, frequently express...
Staphylococcus aureus is capable of causing a remarkable spectrum of disease, ranging from mild skin...
Bacterial cells respond to environmental stresses by modulating their gene expression and adjusting ...
<div><p><i>Streptococcus suis</i> serotype 2 is an important zoonotic pathogen causing severe infect...
Streptococcus suis serotype 2 is an important zoonotic pathogen causing severe infections in pigs an...
Streptococcus suis serotype 2 is an important zoonotic pathogen causing severe infections in pigs an...
Previous work suggested that the underlying mechanisms by which the Streptococcus mutans ClpXP prote...
The SpxA1 and SpxA2 (formerly SpxA and SpxB) transcriptional regulators of Streptococcus mutans are ...
D ow nloaded from 2 ABSTRACT 1 Previous work suggested that the underlying mechanisms by which the 2...
S. aureus combats cell wall antibiotic stress by altered gene expression mediated by various environ...
In oral biofilms, two of the major environmental challenges encountered by the dental pathogen Strep...
S. aureus combats cell wall antibiotic stress by altered gene expression mediated by various environ...
<div><p>In oral biofilms, two of the major environmental challenges encountered by the dental pathog...
Spx is a global regulator that is widespread among the low-GC-content Gram-positive bacteria. Spx ha...
Spx is a global regulator that is widespread among the low G+C Gram-positive bacteria. Spx has been ...
International audienceToxin-antitoxin (TA) systems are ubiquitous among bacteria, frequently express...
Staphylococcus aureus is capable of causing a remarkable spectrum of disease, ranging from mild skin...
Bacterial cells respond to environmental stresses by modulating their gene expression and adjusting ...