The Lia system, a cell envelope stress response module of Bacillus subtilis, is comprised of the LiaRS two-component system and a membrane-anchored inhibitor protein, LiaF. It is highly conserved in the Firmicutes bacteria, and all orthologs investigated so far are activated by cell wall antibiotics. In response to envelope stress, the systems in Firmicutes cocci induce the expression of a number of genes that are involved in conferring resistance against its inducers. In contrast, a complete picture of the LiaR regulon of B. subtilis is still missing and no phenotypes could be associated with mutants lacking LiaRS. Here, we performed genome-wide transcriptomic, proteomic, and in-depth phenotypic profiling of constitutive “Lia ON ” and “Lia...
The stressosome is a multiprotein, 1.8-MDa icosahedral complex that transmits diverse environmental ...
The Gram-positive eubacterium Bacillus subtilis is well known for its high capacity to secrete prote...
Abstract Background Bacillus subtilis is a favorable host for the production of industrially relevan...
The regulatory network of the cell envelope stress response in Bacillus subtilis involves both extra...
The liaIH operon of Bacillus subtilis is the main target of the envelope stress-inducible two-compon...
<p>Arrows denote upregulation and T-shaped lines indicate inhibition. The LiaFSR system of <i>Bacill...
The Bacillus subtilis two-component system (TCS) LiaSR responds to environmental stresses inducing c...
The LiaSR two-component signal transduction system regulates cellular responses to several environme...
Background: Bacillus subtilis is a very important Gram-positive model organism of high biotechnologi...
LiaR is a ‘master regulator’ of the cell envelope stress response in enterococci and many other Gram...
Background: Two-component signal transduction systems are one means of bacteria to respond to extern...
The bacterial twin-arginine (Tat) pathway serves in the exclusive secretion of folded proteins with ...
Bacteria thrive in many different habitats, and therefore will encounter a multitude of environmenta...
Two-component signal transduction systems are one means of bacteria to respond to external stimuli. ...
Background: Bacillus subtilis is a favorable host for the production of industrially relevant protei...
The stressosome is a multiprotein, 1.8-MDa icosahedral complex that transmits diverse environmental ...
The Gram-positive eubacterium Bacillus subtilis is well known for its high capacity to secrete prote...
Abstract Background Bacillus subtilis is a favorable host for the production of industrially relevan...
The regulatory network of the cell envelope stress response in Bacillus subtilis involves both extra...
The liaIH operon of Bacillus subtilis is the main target of the envelope stress-inducible two-compon...
<p>Arrows denote upregulation and T-shaped lines indicate inhibition. The LiaFSR system of <i>Bacill...
The Bacillus subtilis two-component system (TCS) LiaSR responds to environmental stresses inducing c...
The LiaSR two-component signal transduction system regulates cellular responses to several environme...
Background: Bacillus subtilis is a very important Gram-positive model organism of high biotechnologi...
LiaR is a ‘master regulator’ of the cell envelope stress response in enterococci and many other Gram...
Background: Two-component signal transduction systems are one means of bacteria to respond to extern...
The bacterial twin-arginine (Tat) pathway serves in the exclusive secretion of folded proteins with ...
Bacteria thrive in many different habitats, and therefore will encounter a multitude of environmenta...
Two-component signal transduction systems are one means of bacteria to respond to external stimuli. ...
Background: Bacillus subtilis is a favorable host for the production of industrially relevant protei...
The stressosome is a multiprotein, 1.8-MDa icosahedral complex that transmits diverse environmental ...
The Gram-positive eubacterium Bacillus subtilis is well known for its high capacity to secrete prote...
Abstract Background Bacillus subtilis is a favorable host for the production of industrially relevan...