The emergence of large-scale order in self-organized systems relies on local interactions between individual components. During bacterial cell division, FtsZ -- a prokaryotic homologue of the eukaryotic protein tubulin -- polymerizes into treadmilling filaments that further organize into a cytoskeletal ring. In vitro, FtsZ filaments can form dynamic chiral assemblies. However, how the active and passive properties of individual filaments relate to these large-scale self-organized structures remains poorly understood. Here, we connect single filament properties with the mesoscopic scale by combining minimal active matter simulations and biochemical reconstitution experiments. We show that density and flexibility of active chiral filaments de...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
<p>At low protein concentration and no GTP and Mg2+, FtsZ transiently binds to the membrane without ...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
The emergence of large-scale order in self-organized systems relies on local interactions between in...
The emergence of large-scale order in self-organized systems relies on local interactions between in...
Motor proteins drive persistent motion and self-organization of cytoskeletal filaments. However, sta...
Spontaneous self-organization of active matter has been demonstrated in a number of biological syste...
FtsZ, the primary protein of the bacterial Z ring guiding cell division, has been recently shown to ...
<div><p>FtsZ, the primary protein of the bacterial Z ring guiding cell division, has been recently s...
During bacterial cell division, the tubulin-homolog FtsZ forms a ring-like structure at the center o...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
During bacterial cell division, the tubulin-homolog FtsZ forms a ring-like structure at the center o...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
<p>At low protein concentration and no GTP and Mg2+, FtsZ transiently binds to the membrane without ...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
The emergence of large-scale order in self-organized systems relies on local interactions between in...
The emergence of large-scale order in self-organized systems relies on local interactions between in...
Motor proteins drive persistent motion and self-organization of cytoskeletal filaments. However, sta...
Spontaneous self-organization of active matter has been demonstrated in a number of biological syste...
FtsZ, the primary protein of the bacterial Z ring guiding cell division, has been recently shown to ...
<div><p>FtsZ, the primary protein of the bacterial Z ring guiding cell division, has been recently s...
During bacterial cell division, the tubulin-homolog FtsZ forms a ring-like structure at the center o...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
During bacterial cell division, the tubulin-homolog FtsZ forms a ring-like structure at the center o...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
<p>At low protein concentration and no GTP and Mg2+, FtsZ transiently binds to the membrane without ...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...