In Escherichia coli, the pole-to-pole oscillation of the Min proteins directs septum formation to midcell, which is required for symmetric cell division. In vitro, protein waves emerge from the self-organization of MinD, a membrane-binding ATPase, and its activator MinE. For wave propagation, the proteins need to cycle through states of collective membrane binding and unbinding. Although MinD presumably undergoes cooperative membrane attachment, it is unclear how synchronous detachment is coordinated. We used confocal and single-molecule microscopy to elucidate the order of events during Min wave propagation. We propose that protein detachment at the rear of the wave, and the formation of the E-ring, are accomplished by two complementary pr...
The rod-shaped bacterium Escherichia coli selects the cell center as site of division with the help ...
Min proteins in E. coli bacteria organize into a dynamic pattern oscillating between the two cell po...
The E. coli MinDE oscillator is a paradigm for protein self-organization and gradient formation. Pre...
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...
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 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...
Proper cell division requires an accurate definition of the division plane. In bacteria, this plane ...
One of the most fundamental features of biological systems is probably their ability to self-organiz...
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...
The rod-shaped bacterium Escherichia coli selects the cell center as site of division with the help ...
Min proteins in E. coli bacteria organize into a dynamic pattern oscillating between the two cell po...
The E. coli MinDE oscillator is a paradigm for protein self-organization and gradient formation. Pre...
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...
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 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...
Proper cell division requires an accurate definition of the division plane. In bacteria, this plane ...
One of the most fundamental features of biological systems is probably their ability to self-organiz...
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...
The rod-shaped bacterium Escherichia coli selects the cell center as site of division with the help ...
Min proteins in E. coli bacteria organize into a dynamic pattern oscillating between the two cell po...
The E. coli MinDE oscillator is a paradigm for protein self-organization and gradient formation. Pre...