Escherichia coli is one of the best studied living organisms and a model system for many biophysical investigations. Despite countless discoveries of the details of its physiology, we still lack a holistic understanding of how these bacteria react to changes in their environment. One of the most important examples is their response to osmotic shock. One of the mechanistic elements protecting cell integrity upon exposure to sudden changes of osmolarity is the presence of mechanosensitive channels in the cell membrane. These channels are believed to act as tension release valves protecting the inner membrane from rupturing. This thesis presents an experimental study of various aspects of mechanosensation in bacteria. We examine cell survival ...
Mechanosensitive (MS) channels allow cells to sense and respond to environmental changes. In bacteri...
Mechanosensitive (MS) channels allow cells to sense and respond to environmental changes. In bacteri...
We thank Frans Bianchi and Franz Ho for assistance with molecular cloning, Tim Rasmussen for providi...
Escherichia coli is one of the best studied living organisms and a model system for many biophysical...
Rapid changes in extracellular osmolarity are one of many insults microbial cells face on a daily ba...
Bacteria are subjected to a host of different environmental stresses. One such insult occurs when ce...
Bacteria are subjected to a host of different environmental stresses. One such insult occurs when ce...
<div><p>Bacteria are subjected to a host of different environmental stresses. One such insult occurs...
Bacterial mechanosensitive channels protect cells from structural damage during hypoosmotic shock. M...
Mechanosensitive (MS) channels allow cells to sense and respond to environmental changes. In bacteri...
Rapid changes in extracellular osmolarity are one of many insults microbial cells face on a daily ba...
Bacterial mechanosensitive channels protect cells from structural damage during hypoosmotic shock. M...
Bacterial mechanosensitive channels protect cells from structural damage during hypoosmotic shock. M...
Bacterial mechanosensitive channels protect cells from structural damage during hypoosmotic shock. M...
Mechanosensitive (MS) channels allow cells to sense and respond to environmental changes. In bacteri...
Mechanosensitive (MS) channels allow cells to sense and respond to environmental changes. In bacteri...
Mechanosensitive (MS) channels allow cells to sense and respond to environmental changes. In bacteri...
We thank Frans Bianchi and Franz Ho for assistance with molecular cloning, Tim Rasmussen for providi...
Escherichia coli is one of the best studied living organisms and a model system for many biophysical...
Rapid changes in extracellular osmolarity are one of many insults microbial cells face on a daily ba...
Bacteria are subjected to a host of different environmental stresses. One such insult occurs when ce...
Bacteria are subjected to a host of different environmental stresses. One such insult occurs when ce...
<div><p>Bacteria are subjected to a host of different environmental stresses. One such insult occurs...
Bacterial mechanosensitive channels protect cells from structural damage during hypoosmotic shock. M...
Mechanosensitive (MS) channels allow cells to sense and respond to environmental changes. In bacteri...
Rapid changes in extracellular osmolarity are one of many insults microbial cells face on a daily ba...
Bacterial mechanosensitive channels protect cells from structural damage during hypoosmotic shock. M...
Bacterial mechanosensitive channels protect cells from structural damage during hypoosmotic shock. M...
Bacterial mechanosensitive channels protect cells from structural damage during hypoosmotic shock. M...
Mechanosensitive (MS) channels allow cells to sense and respond to environmental changes. In bacteri...
Mechanosensitive (MS) channels allow cells to sense and respond to environmental changes. In bacteri...
Mechanosensitive (MS) channels allow cells to sense and respond to environmental changes. In bacteri...
We thank Frans Bianchi and Franz Ho for assistance with molecular cloning, Tim Rasmussen for providi...