The challenge of osmotic stress is something all living organisms must face as a result of environmental dynamics. Over the past three decades, innovative research and cooperation across disciplines have irrefutably established that cells utilize mechanically gated ion channels to release osmolytes and prevent cell lysis during hypoosmotic stress. Early electrophysiological analysis of the inner membrane of Escherichia coli identified the presence of three distinct mechanosensitive activities. The subsequent discoveries of the genes responsible for two of these activities, the mechanosensitive channels of large (MscL) and small (MscS) conductance, led to the identification of two diverse families of mechanosensitive channels. The latter of ...
Bacterial mechanosensitive channels protect cells from structural damage during hypoosmotic shock. M...
International audienceIn bacterial and animal systems, mechanosensitive (MS) ion channels are though...
Bacterial mechanosensitive channels protect cells from structural damage during hypoosmotic shock. M...
The challenge of osmotic stress is something all living organisms must face as a result of environme...
The bacterial mechanosensitive channel MscS provides an excellent model system for the study of mech...
The bacterial mechanosensitive channel MscS provides an excellent model system for the study of mech...
Mechanosensitive ion channels transduce physical force into electrochemical signaling that underlies...
Bacterial mechanosensitive channels gate in response to membrane tension, driven by shifts in enviro...
The ability to cope with and adapt to changes in the environment is essential for all organisms. Osm...
The ability to cope with and adapt to changes in the environment is essential for all organisms. Osm...
Bacterial mechanosensitive channels sense the changes in lateral tension in the bilayer of the cytop...
The bacterial mechanosensitive channels MscS and MscL have been shown to protect cells from hypo-osm...
SummaryIn bacterial and animal systems, mechanosensitive (MS) ion channels are thought to mediate th...
Bacterial mechanosensitive channels protect cells from structural damage during hypoosmotic shock. M...
AbstractBacterial responses to decreasing osmolality involve mechanosensitive channels. The crystal ...
Bacterial mechanosensitive channels protect cells from structural damage during hypoosmotic shock. M...
International audienceIn bacterial and animal systems, mechanosensitive (MS) ion channels are though...
Bacterial mechanosensitive channels protect cells from structural damage during hypoosmotic shock. M...
The challenge of osmotic stress is something all living organisms must face as a result of environme...
The bacterial mechanosensitive channel MscS provides an excellent model system for the study of mech...
The bacterial mechanosensitive channel MscS provides an excellent model system for the study of mech...
Mechanosensitive ion channels transduce physical force into electrochemical signaling that underlies...
Bacterial mechanosensitive channels gate in response to membrane tension, driven by shifts in enviro...
The ability to cope with and adapt to changes in the environment is essential for all organisms. Osm...
The ability to cope with and adapt to changes in the environment is essential for all organisms. Osm...
Bacterial mechanosensitive channels sense the changes in lateral tension in the bilayer of the cytop...
The bacterial mechanosensitive channels MscS and MscL have been shown to protect cells from hypo-osm...
SummaryIn bacterial and animal systems, mechanosensitive (MS) ion channels are thought to mediate th...
Bacterial mechanosensitive channels protect cells from structural damage during hypoosmotic shock. M...
AbstractBacterial responses to decreasing osmolality involve mechanosensitive channels. The crystal ...
Bacterial mechanosensitive channels protect cells from structural damage during hypoosmotic shock. M...
International audienceIn bacterial and animal systems, mechanosensitive (MS) ion channels are though...
Bacterial mechanosensitive channels protect cells from structural damage during hypoosmotic shock. M...