The ability to sense mechanical force is vital to all organisms to interact with and respond to stimuli in their environment. Mechanosensation is critical to many physiological functions such as the senses of hearing and touch in animals, gravitropism in plants and osmoregulation in bacteria. Of these processes, the best understood at the molecular level involve bacterial mechanosensitive channels. Under hypo-osmotic stress, bacteria are able to alleviate turgor pressure through mechanosensitive channels that gate directly in response to tension in the membrane lipid bilayer. A key participant in this response is the mechanosensitive channel of large conductance (MscL), a non-selective channel with a high conductance of ~3 nS that gates at...
The ability of cells to sense and respond to mechanical force underlies diverse processes such as to...
AbstractBacterial responses to decreasing osmolality involve mechanosensitive channels. The crystal ...
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...
Mechanosensitive channels are integral components for the response of bacteria to osmotic shock. The...
The mechanosensitive channel of large conductance (MscL) is capable of transducing mechanical stimul...
The mechanosensitive channel of large conductance (MscL) is capable of transducing mechanical stimul...
AbstractMechanosensors are important for many life functions, including the senses of touch, balance...
<div><p>The mechanosensitive channel of large conductance (MscL) is capable of transducing mechanica...
To obtain a gene construct for making single substitutions per channel and to determine the quaterna...
To obtain a gene construct for making single substitutions per channel and to determine the quaterna...
To obtain a gene construct for making single substitutions per channel and to determine the quaterna...
To obtain a gene construct for making single substitutions per channel and to determine the quaterna...
MscL is a ubiquitous channel found in bacterial membranes. It provides a protective response to osmo...
The ability of cells to sense and respond to mechanical force underlies diverse processes such as to...
AbstractBacterial responses to decreasing osmolality involve mechanosensitive channels. The crystal ...
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...
Mechanosensitive channels are integral components for the response of bacteria to osmotic shock. The...
The mechanosensitive channel of large conductance (MscL) is capable of transducing mechanical stimul...
The mechanosensitive channel of large conductance (MscL) is capable of transducing mechanical stimul...
AbstractMechanosensors are important for many life functions, including the senses of touch, balance...
<div><p>The mechanosensitive channel of large conductance (MscL) is capable of transducing mechanica...
To obtain a gene construct for making single substitutions per channel and to determine the quaterna...
To obtain a gene construct for making single substitutions per channel and to determine the quaterna...
To obtain a gene construct for making single substitutions per channel and to determine the quaterna...
To obtain a gene construct for making single substitutions per channel and to determine the quaterna...
MscL is a ubiquitous channel found in bacterial membranes. It provides a protective response to osmo...
The ability of cells to sense and respond to mechanical force underlies diverse processes such as to...
AbstractBacterial responses to decreasing osmolality involve mechanosensitive channels. The crystal ...
Microbial survival in dynamic environments requires the ability to successfully respond to abrupt ch...