Self-organisation of Min proteins is responsible for the spatial control of cell division in Escherichia coli, and has been studied both in vivo and in vitro. Intriguingly, the protein patterns observed in these settings differ qualitatively and quantitatively. This puzzling dichotomy has not been resolved to date. Using reconstituted proteins in laterally wide microchambers with a well-controlled height, we experimentally show that the Min protein dynamics on the membrane crucially depend on the micro chamber height due to bulk concentration gradients orthogonal to the membrane. A theoretical analysis shows that in vitro patterns at low microchamber height are driven by the same lateral oscillation mode as pole-to-pole oscillations in vivo...
The bacterial Min protein system provides a major model system for studying reaction-diffusion proce...
Oscillations of the Min protein system are involved in the correct midcell placement of the divisome...
The bacterial Min protein system provides a major model system for studying reaction-diffusion proce...
Self-organisation of Min proteins is responsible for the spatial control of cell division in Escheri...
The MinCDE protein system from Escherichia coli has become one of the most striking paradigms of pro...
The MinCDE protein system from Escherichia coli has become one of the most striking paradigms of pro...
<div><p>The rod-shaped bacterium <i>Escherichia coli</i> selects the cell center as site of division...
The rod-shaped bacterium Escherichia coli selects the cell center as site of division with the help ...
The rod-shaped bacterium Escherichia coli selects the cell center as site of division with the help ...
The rod-shaped bacterium Escherichia coli selects the cell center as site of division with the help ...
One of the most fundamental features of biological systems is probably their ability to self-organiz...
In the rod-shaped bacterium Escherichia coli, the center is selected by the Min-proteins as the site...
One of the most fundamental features of biological systems is probably their ability to self-organiz...
The rod-shaped bacterium Escherichia coli selects the cell center as site of division with the help ...
Proper cell division requires an accurate definition of the division plane. In bacteria, this plane ...
The bacterial Min protein system provides a major model system for studying reaction-diffusion proce...
Oscillations of the Min protein system are involved in the correct midcell placement of the divisome...
The bacterial Min protein system provides a major model system for studying reaction-diffusion proce...
Self-organisation of Min proteins is responsible for the spatial control of cell division in Escheri...
The MinCDE protein system from Escherichia coli has become one of the most striking paradigms of pro...
The MinCDE protein system from Escherichia coli has become one of the most striking paradigms of pro...
<div><p>The rod-shaped bacterium <i>Escherichia coli</i> selects the cell center as site of division...
The rod-shaped bacterium Escherichia coli selects the cell center as site of division with the help ...
The rod-shaped bacterium Escherichia coli selects the cell center as site of division with the help ...
The rod-shaped bacterium Escherichia coli selects the cell center as site of division with the help ...
One of the most fundamental features of biological systems is probably their ability to self-organiz...
In the rod-shaped bacterium Escherichia coli, the center is selected by the Min-proteins as the site...
One of the most fundamental features of biological systems is probably their ability to self-organiz...
The rod-shaped bacterium Escherichia coli selects the cell center as site of division with the help ...
Proper cell division requires an accurate definition of the division plane. In bacteria, this plane ...
The bacterial Min protein system provides a major model system for studying reaction-diffusion proce...
Oscillations of the Min protein system are involved in the correct midcell placement of the divisome...
The bacterial Min protein system provides a major model system for studying reaction-diffusion proce...