The regulatory network of the cell envelope stress response in Bacillus subtilis involves both extracytoplasmic function -factors and two-component signal transducing systems. One such system, LiaRS, responds to cell wall antibiotics that interfere with the undecaprenol cycle and to perturbation of the cytoplasmic membrane. It is encoded by the last two genes of the liaIHGFSR locus. Here, we analyzed the expression of two LiaR-dependent operons, liaIHGFSR and yhcYZ-yhdA, and characterized a palindromic sequence required for LiaR-dependent activation. Since induction of the strong liaI promoter leads to both liaIH and liaIHGFRS transcripts, LiaR is positively autoregulated. Systematic deletion analysis of the liaI operon revealed that LiaF i...
Bacteria thrive in many different habitats, and therefore will encounter a multitude of environmenta...
B. subtilis adapts to changing environments by reprogramming its genetic expression through a variet...
Bacteria have developed several evolutionary strategies to protect their cell membranes (CMs) from t...
The Lia system, a cell envelope stress response module of Bacillus subtilis, is comprised of the Lia...
<p>Arrows denote upregulation and T-shaped lines indicate inhibition. The LiaFSR system of <i>Bacill...
The liaIH operon of Bacillus subtilis is the main target of the envelope stress-inducible two-compon...
The LiaSR two-component signal transduction system regulates cellular responses to several environme...
The Bacillus subtilis two-component system (TCS) LiaSR responds to environmental stresses inducing c...
LiaR is a ‘master regulator’ of the cell envelope stress response in enterococci and many other Gram...
ABSTRACT LiaFSR is a gene regulatory system important for response to cell membrane stress in Gram-p...
The LiaSR two-component signal transduction system regulates cellular responses to sev-eral environm...
Two-component signal transduction systems are one means of bacteria to respond to external stimuli. ...
Background: Two-component signal transduction systems are one means of bacteria to respond to extern...
<div><h3>Background</h3><p>Two-component signal transduction systems are one means of bacteria to re...
The Gram-positive eubacterium Bacillus subtilis is well known for its high capacity to secrete prote...
Bacteria thrive in many different habitats, and therefore will encounter a multitude of environmenta...
B. subtilis adapts to changing environments by reprogramming its genetic expression through a variet...
Bacteria have developed several evolutionary strategies to protect their cell membranes (CMs) from t...
The Lia system, a cell envelope stress response module of Bacillus subtilis, is comprised of the Lia...
<p>Arrows denote upregulation and T-shaped lines indicate inhibition. The LiaFSR system of <i>Bacill...
The liaIH operon of Bacillus subtilis is the main target of the envelope stress-inducible two-compon...
The LiaSR two-component signal transduction system regulates cellular responses to several environme...
The Bacillus subtilis two-component system (TCS) LiaSR responds to environmental stresses inducing c...
LiaR is a ‘master regulator’ of the cell envelope stress response in enterococci and many other Gram...
ABSTRACT LiaFSR is a gene regulatory system important for response to cell membrane stress in Gram-p...
The LiaSR two-component signal transduction system regulates cellular responses to sev-eral environm...
Two-component signal transduction systems are one means of bacteria to respond to external stimuli. ...
Background: Two-component signal transduction systems are one means of bacteria to respond to extern...
<div><h3>Background</h3><p>Two-component signal transduction systems are one means of bacteria to re...
The Gram-positive eubacterium Bacillus subtilis is well known for its high capacity to secrete prote...
Bacteria thrive in many different habitats, and therefore will encounter a multitude of environmenta...
B. subtilis adapts to changing environments by reprogramming its genetic expression through a variet...
Bacteria have developed several evolutionary strategies to protect their cell membranes (CMs) from t...