Bacterial cell division is arguably one of the most central processes in biology. Despite the identification of many important molecular players, surprisingly little is yet known about the underlying physicochemical mechanisms. However, self-organized protein patterns play key roles during division of Escherichia coli, where division is initiated by the directed localization of FtsZ to the cell middle by an inhibitor gradient arising from pole-to-pole oscillations of MinCDE proteins. In vitro reconstitution studies have established that both the Min system and FtsZ with its membrane adaptor FtsA form dynamic energy-dependent patterns on membranes. Furthermore, recent in vivo and in vitro approaches have shown that Min patterns display rich ...
The rod-shaped bacterium Escherichia coli selects the cell center as site of division with the help ...
The Min biochemical network regulates bacterial cell division and is a prototypical example of self-...
Cell division requires the precise placement of the division ring at mid-cell to ensure both daughte...
Proper cell division requires an accurate definition of the division plane. In bacteria, this plane ...
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...
Although the essential proteins that drive bacterial cytokinesis have been identified, the precise m...
Intracellular protein gradients are significant determinants of spatial organization. However, littl...
Although the essential proteins that drive bacterial cytokinesis have been identified, the precise m...
For reconstruction of controlled cell division in a minimal cell model, or protocell, a positioning ...
For reconstruction of controlled cell division in a minimal cell model, or protocell, a positioning ...
Cytokinesis is a fundamental process that is essential for bacterial proliferation. The cytokinetic ...
<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 ...
The Min biochemical network regulates bacterial cell division and is a prototypical example of self-...
Cell division requires the precise placement of the division ring at mid-cell to ensure both daughte...
Proper cell division requires an accurate definition of the division plane. In bacteria, this plane ...
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...
Although the essential proteins that drive bacterial cytokinesis have been identified, the precise m...
Intracellular protein gradients are significant determinants of spatial organization. However, littl...
Although the essential proteins that drive bacterial cytokinesis have been identified, the precise m...
For reconstruction of controlled cell division in a minimal cell model, or protocell, a positioning ...
For reconstruction of controlled cell division in a minimal cell model, or protocell, a positioning ...
Cytokinesis is a fundamental process that is essential for bacterial proliferation. The cytokinetic ...
<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 ...
The Min biochemical network regulates bacterial cell division and is a prototypical example of self-...
Cell division requires the precise placement of the division ring at mid-cell to ensure both daughte...