Mechanosensitive channels are integral components for the response of bacteria to osmotic shock. The mechanosensitive channel of large conductance (MscL) responds to extreme turgor pressure increase that would otherwise lyse the cellular membrane. MscL has been studied as a model mechanosensitive channel using both structural and functional approaches. We will summarize the structural data and discuss outstanding questions surrounding the gating mechanism of this homo-oligomeric channel that has ~3 nS conductance. Specifically, we will explore the following: (1) the variability in oligomeric state that has been observed, (2) the open pore size measurements, and (3) the role of the C-terminal coiled coil domain for channel function. The olig...
Microbial survival in dynamic environments requires the ability to successfully respond to abrupt ch...
The ability of cells to sense and respond to mechanical force underlies diverse processes such as to...
Microbial survival in dynamic environments requires the ability to successfully respond to abrupt ch...
Mechanosensitive channels are integral components for the response of bacteria to osmotic shock. The...
Mechanosensitive channels are integral components for the response of bacteria to osmotic shock. The...
AbstractMechanosensors are important for many life functions, including the senses of touch, balance...
AbstractMechanosensors are important for many life functions, including the senses of touch, balance...
Bacterial mechanosensitive channels sense the changes in lateral tension in the bilayer of the cytop...
AbstractMechanosensitive channel large (MscL) encodes the large conductance mechanosensitive channel...
AbstractSteered molecular dynamics simulations of the mechanosensitive channel of large conductance,...
AbstractBacterial responses to decreasing osmolality involve mechanosensitive channels. The crystal ...
The bacterial mechanosensitive channel MscL gates in response to membrane tension as a result of mec...
The 'small' mechanosensitive channel, MscS, resides in cytoplasmic membranes of most free-living bac...
The ability to sense mechanical force is vital to all organisms to interact with and respond to stim...
The bacterial mechanosensitive channel MscL gates in response to membrane tension as a result of mec...
Microbial survival in dynamic environments requires the ability to successfully respond to abrupt ch...
The ability of cells to sense and respond to mechanical force underlies diverse processes such as to...
Microbial survival in dynamic environments requires the ability to successfully respond to abrupt ch...
Mechanosensitive channels are integral components for the response of bacteria to osmotic shock. The...
Mechanosensitive channels are integral components for the response of bacteria to osmotic shock. The...
AbstractMechanosensors are important for many life functions, including the senses of touch, balance...
AbstractMechanosensors are important for many life functions, including the senses of touch, balance...
Bacterial mechanosensitive channels sense the changes in lateral tension in the bilayer of the cytop...
AbstractMechanosensitive channel large (MscL) encodes the large conductance mechanosensitive channel...
AbstractSteered molecular dynamics simulations of the mechanosensitive channel of large conductance,...
AbstractBacterial responses to decreasing osmolality involve mechanosensitive channels. The crystal ...
The bacterial mechanosensitive channel MscL gates in response to membrane tension as a result of mec...
The 'small' mechanosensitive channel, MscS, resides in cytoplasmic membranes of most free-living bac...
The ability to sense mechanical force is vital to all organisms to interact with and respond to stim...
The bacterial mechanosensitive channel MscL gates in response to membrane tension as a result of mec...
Microbial survival in dynamic environments requires the ability to successfully respond to abrupt ch...
The ability of cells to sense and respond to mechanical force underlies diverse processes such as to...
Microbial survival in dynamic environments requires the ability to successfully respond to abrupt ch...