Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

The proteomic and transcriptomic landscapes altered by Rgg2/3 activity in Streptococcus pyogenes

View through CrossRef
ABSTRACT Streptococcus pyogenes , otherwise known as Group A Streptococcus (GAS), is an important and highly adaptable human pathogen with the ability to cause both superficial and severe diseases. Understanding how S. pyogenes senses and responds to its environment will likely aid in determining how it causes a breadth of diseases. One regulatory network involved in GAS’s ability to sense and respond to the changing environment is the Rgg2/3 quorum sensing (QS) system, which responds to metal and carbohydrate availability and regulates changes to the bacterial surface. To better understand the impact of Rgg2/3 QS on S. pyogenes physiology, we performed RNA-seq and TMT-LC-MS/MS analysis on cells in which this system was induced or disrupted. Primary findings confirmed that pheromone stimulation in wildtype cultures is limited to the induction of operons whose promoters contain previously determined Rgg2/3 binding sequences. However, supplementing exogenous pheromone to a deletion mutant of rgg3 , a strain that endogenously produces elevated amounts of pheromone, led to extended alterations of the transcriptome and proteome, ostensibly by stress-induced pathways. Under such exaggerated pheromone conditions (Δ rgg3 +SHP), a connection was identified between Rgg2/3 and the stringent response. Mutation of relA , the bifunctional guanosine tetra- and penta-phosphate nucleoside synthetase/hydrolase, and alarmone synthase genes sasA and sasB , impacted culture doubling times and disabled induction of Rgg2/3 in response to mannose, while manipulation of Rgg2/3 signaling modestly altered nucleotide levels. Our findings indicate that excessive pheromone production or exposure places stress on GAS resulting in an indirect altered proteome and transcriptome beyond primary pheromone signaling. IMPORTANCE Streptococcus pyogenes causes several important human diseases. This study evaluates how the induction or disruption of a cell-cell communication system alters S. pyogenes ’s gene expression and, in extreme conditions, its physiology. Using transcriptomic and proteomic approaches, the results define the pheromone-dependent regulon of the Rgg2/3 quorum sensing system. In addition, we find that excessive pheromone stimulation, generated by genetic disruption of the system, leads to stress responses that are associated with the stringent response. Disruption of this stress response affects the ability of the cell-cell communication system to respond under certain conditions. These findings assist in the determination of how S. pyogenes is impacted by and responds to non-traditional sources of stress.
Title: The proteomic and transcriptomic landscapes altered by Rgg2/3 activity in Streptococcus pyogenes
Description:
ABSTRACT Streptococcus pyogenes , otherwise known as Group A Streptococcus (GAS), is an important and highly adaptable human pathogen with the ability to cause both superficial and severe diseases.
Understanding how S.
pyogenes senses and responds to its environment will likely aid in determining how it causes a breadth of diseases.
One regulatory network involved in GAS’s ability to sense and respond to the changing environment is the Rgg2/3 quorum sensing (QS) system, which responds to metal and carbohydrate availability and regulates changes to the bacterial surface.
To better understand the impact of Rgg2/3 QS on S.
pyogenes physiology, we performed RNA-seq and TMT-LC-MS/MS analysis on cells in which this system was induced or disrupted.
Primary findings confirmed that pheromone stimulation in wildtype cultures is limited to the induction of operons whose promoters contain previously determined Rgg2/3 binding sequences.
However, supplementing exogenous pheromone to a deletion mutant of rgg3 , a strain that endogenously produces elevated amounts of pheromone, led to extended alterations of the transcriptome and proteome, ostensibly by stress-induced pathways.
Under such exaggerated pheromone conditions (Δ rgg3 +SHP), a connection was identified between Rgg2/3 and the stringent response.
Mutation of relA , the bifunctional guanosine tetra- and penta-phosphate nucleoside synthetase/hydrolase, and alarmone synthase genes sasA and sasB , impacted culture doubling times and disabled induction of Rgg2/3 in response to mannose, while manipulation of Rgg2/3 signaling modestly altered nucleotide levels.
Our findings indicate that excessive pheromone production or exposure places stress on GAS resulting in an indirect altered proteome and transcriptome beyond primary pheromone signaling.
IMPORTANCE Streptococcus pyogenes causes several important human diseases.
This study evaluates how the induction or disruption of a cell-cell communication system alters S.
pyogenes ’s gene expression and, in extreme conditions, its physiology.
Using transcriptomic and proteomic approaches, the results define the pheromone-dependent regulon of the Rgg2/3 quorum sensing system.
In addition, we find that excessive pheromone stimulation, generated by genetic disruption of the system, leads to stress responses that are associated with the stringent response.
Disruption of this stress response affects the ability of the cell-cell communication system to respond under certain conditions.
These findings assist in the determination of how S.
pyogenes is impacted by and responds to non-traditional sources of stress.

Related Results

Amylase from Streptococcus pyogenes inhibits biofilm formation in Streptococcus salivarius
Amylase from Streptococcus pyogenes inhibits biofilm formation in Streptococcus salivarius
Biofilms are extracellular constituents composed of polysaccharides and other substances necessary for bacteria to defend themselves against foreign enemies. Amylase of Streptococc...
Pangenome evaluation of gene essentiality in Streptococcus pyogenes
Pangenome evaluation of gene essentiality in Streptococcus pyogenes
ABSTRACT Bacterial species often consist of strains with variable gene content, collectively refe...
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Abstract The Physical Activity Guidelines for Americans (Guidelines) advises older adults to be as active as possible. Yet, despite the well documented benefits of physical a...
Antibiotic susceptibility of Streptococcus species that cause pharyngitis in children
Antibiotic susceptibility of Streptococcus species that cause pharyngitis in children
Background: Group A Streptococcus (GAS) significantly impacts global health, especially among children aged 5–14 years, causing approximately 288 million episodes of sore throat an...
A Streptococcus quorum sensing system enables suppression of innate immunity
A Streptococcus quorum sensing system enables suppression of innate immunity
Abstract Some bacterial pathogens utilize cell-cell communication systems, such as quorum sensing (QS), to coordinate genetic programs during hos...
Role of Phosphorylcholine in Streptococcus Pyogenes Adherence to Epithelial Cells
Role of Phosphorylcholine in Streptococcus Pyogenes Adherence to Epithelial Cells
Abstract Background: This study aimed to evaluate the influence of Phosphorylcholine (PC) expression on the adherence and invasion of Streptococcus pyogenes (S. pyogenes) t...

Back to Top