Survival during conditions when nutrients become scarce requires adaptation and expression of genes for maintenance in order for the cell to survive. Among the numerous proteins involved in adaptation and regulation under these conditions, the stationary phase sigma factor, σS, and the Universal stress proteins contribute to survival and bestow the cell with general stress protective functions during growth arrest. In this work we found new mechanisms for the cell to prepare and sense the intracellular environment and respond accordingly. The usp genes and the rpoS gene (encoding σS) were found to be positively regulated by metabolic intermediates of the glycolysis in the central metabolic pathway. Specifically, mutations and conditions res...
Pathogenic bacteria employ a variety of mechanisms to resist a barrage of stresses they encounter du...
The RpoS sigma factor protein of Escherichia coli RNA polymerase is the master transcriptional regul...
Biogenesis of ribosomes is one of the most cost- and resource-intensive processes in all living cell...
Under conditions of nutrient deprivation or stress, or as cells enter stationary phase, Escherichia ...
The universal stress protein A (uspA), gene in Escherichia coli is expressed in response to many dif...
The synthesis of the small, cytoplasmic protein UspA universal stress protein A) of Escherichia coli...
The bacterial stress response systems have developed and evolved over the millennia to deal with the...
Like all organisms that live in variable environments, bacteria must sense and respond to environmen...
The Universal stress proteins A and C are small, cytoplasmic proteins that are expressed during stas...
The response of non-differentiating bacteria to nutrient starvation is complex and includes the sequ...
Summary: To thrive in nature, bacteria have to reproduce efficiently under favorable conditions and ...
The universal stress protein A (UspA) of E. coli is induced by a wide variety of stressful condition...
In enteric bacteria, adaptation to a number of different stresses is mediated by the RpoS protein, o...
Bacterial dormancy phenotypes are induced by stress and produced stochastically to counteract harsh ...
The universal stress protein A (UspA) of Escherichia coli is involved in coordinating the bacterium\...
Pathogenic bacteria employ a variety of mechanisms to resist a barrage of stresses they encounter du...
The RpoS sigma factor protein of Escherichia coli RNA polymerase is the master transcriptional regul...
Biogenesis of ribosomes is one of the most cost- and resource-intensive processes in all living cell...
Under conditions of nutrient deprivation or stress, or as cells enter stationary phase, Escherichia ...
The universal stress protein A (uspA), gene in Escherichia coli is expressed in response to many dif...
The synthesis of the small, cytoplasmic protein UspA universal stress protein A) of Escherichia coli...
The bacterial stress response systems have developed and evolved over the millennia to deal with the...
Like all organisms that live in variable environments, bacteria must sense and respond to environmen...
The Universal stress proteins A and C are small, cytoplasmic proteins that are expressed during stas...
The response of non-differentiating bacteria to nutrient starvation is complex and includes the sequ...
Summary: To thrive in nature, bacteria have to reproduce efficiently under favorable conditions and ...
The universal stress protein A (UspA) of E. coli is induced by a wide variety of stressful condition...
In enteric bacteria, adaptation to a number of different stresses is mediated by the RpoS protein, o...
Bacterial dormancy phenotypes are induced by stress and produced stochastically to counteract harsh ...
The universal stress protein A (UspA) of Escherichia coli is involved in coordinating the bacterium\...
Pathogenic bacteria employ a variety of mechanisms to resist a barrage of stresses they encounter du...
The RpoS sigma factor protein of Escherichia coli RNA polymerase is the master transcriptional regul...
Biogenesis of ribosomes is one of the most cost- and resource-intensive processes in all living cell...