In the bacterium Escherichia coli, the Min proteins oscillate between the cell poles to select the cell center as division site. This dynamic pattern has been proposed to arise by self-organization of these proteins, and several models have suggested a reaction-diffusion type mechanism. Here, we found that the Min proteins spontaneously formed planar surface waves on a flat membrane in vitro. The formation and maintenance of these patterns, which extended for hundreds of micrometers, required adenosine 5′-triphosphate (ATP), and they persisted for hours. We present a reaction-diffusion model of the MinD and MinE dynamics that accounts for our experimental observations and also captures the in vivo oscillations
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 ...
In the rod-shaped bacterium Escherichia coli, the center is selected by the Min-proteins as the site...
In the bacterium Escherichia coli, the Min proteins oscillate between the cell poles to select the c...
Proper cell division requires an accurate definition of the division plane. In bacteria, this plane ...
Min proteins in E. coli bacteria organize into a dynamic pattern oscillating between the two cell po...
In Escherichia coli, the pole-to-pole oscillation of the Min proteins directs septum formation to mi...
In Escherichia coli, the pole-to-pole oscillation of the Min proteins directs septum formation to mi...
The MinCDE protein system from Escherichia coli has become one of the most striking paradigms of pro...
In Escherichia coli, the pole-to-pole oscillation of the Min proteins directs septum formation to mi...
In Escherichia coli, the pole-to-pole oscillation of the Min proteins directs septum formation to mi...
<div><p>The rod-shaped bacterium <i>Escherichia coli</i> selects the cell center as site of division...
The MinCDE protein system from Escherichia coli has become one of the most striking paradigms of pro...
As a spatial modulator of cytokinesis in Escherichia coli, the Min system cooperates with the nucleo...
Oscillations of the Min protein system are involved in the correct midcell placement of the divisome...
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 ...
In the rod-shaped bacterium Escherichia coli, the center is selected by the Min-proteins as the site...
In the bacterium Escherichia coli, the Min proteins oscillate between the cell poles to select the c...
Proper cell division requires an accurate definition of the division plane. In bacteria, this plane ...
Min proteins in E. coli bacteria organize into a dynamic pattern oscillating between the two cell po...
In Escherichia coli, the pole-to-pole oscillation of the Min proteins directs septum formation to mi...
In Escherichia coli, the pole-to-pole oscillation of the Min proteins directs septum formation to mi...
The MinCDE protein system from Escherichia coli has become one of the most striking paradigms of pro...
In Escherichia coli, the pole-to-pole oscillation of the Min proteins directs septum formation to mi...
In Escherichia coli, the pole-to-pole oscillation of the Min proteins directs septum formation to mi...
<div><p>The rod-shaped bacterium <i>Escherichia coli</i> selects the cell center as site of division...
The MinCDE protein system from Escherichia coli has become one of the most striking paradigms of pro...
As a spatial modulator of cytokinesis in Escherichia coli, the Min system cooperates with the nucleo...
Oscillations of the Min protein system are involved in the correct midcell placement of the divisome...
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 ...
In the rod-shaped bacterium Escherichia coli, the center is selected by the Min-proteins as the site...