Understanding the mechanisms responsible for the formation and growth of FtsZ polymers and their subsequent formation of the Z -ring is important for gaining insight into the cell division in prokaryotic cells. In this work, we present a minimal stochastic model that qualitatively reproduces in vitro observations of polymerization, formation of dynamic contractile ring that is stable for a long time and depolymerization shown by FtsZ polymer filaments. In this stochastic model, we explore different mechanisms for ring breaking and hydrolysis. In addition to hydrolysis, which is known to regulate the dynamics of other tubulin polymers like microtubules, we find that the presence of the ring allows for an additional mechanism for regulating t...
Bacterial cell division involves a complex and dynamic sequence of events whereby polymers of the pr...
The first step in bacterial cytokinesis is the assembly of a stable but dynamic cytokinetic ring mad...
Uncovering mechanisms that control the dynamics of microtubules is fundamental for our understanding...
ABSTRACT FtsZ is a tubulin homolog essential for prokaryotic cell division. In living bacteria, FtsZ...
AbstractFtsZ is a tubulin homolog essential for prokaryotic cell division. In living bacteria, FtsZ ...
Prokaryotic cell division is one of the most fundamental processes in biology, but the dynamics and ...
We study the stochastic dynamics of growth and shrinkage of single actin filaments taking into accou...
International audienceWe study the stochastic dynamics of growth and shrinkage of single actin filam...
AbstractWe study the stochastic dynamics of growth and shrinkage of single actin filaments taking in...
Bacteria and archaea usually divide symmetrically by formation of a septum in the middle of the cell...
A simulation model of prokaryotic Z-ring assembly, based on the observed behavior of FtsZ in vitro a...
Bacterial cytokinesis is commonly initiated by the Z-ring, a dynamic cytoskeletal structure that ass...
AbstractBacteria and archaea usually divide symmetrically by formation of a septum in the middle of ...
ABSTRACT Polymerization dynamics of single actin filaments is investigated theoretically using a sto...
AbstractPolymerization dynamics of single actin filaments is investigated theoretically using a stoc...
Bacterial cell division involves a complex and dynamic sequence of events whereby polymers of the pr...
The first step in bacterial cytokinesis is the assembly of a stable but dynamic cytokinetic ring mad...
Uncovering mechanisms that control the dynamics of microtubules is fundamental for our understanding...
ABSTRACT FtsZ is a tubulin homolog essential for prokaryotic cell division. In living bacteria, FtsZ...
AbstractFtsZ is a tubulin homolog essential for prokaryotic cell division. In living bacteria, FtsZ ...
Prokaryotic cell division is one of the most fundamental processes in biology, but the dynamics and ...
We study the stochastic dynamics of growth and shrinkage of single actin filaments taking into accou...
International audienceWe study the stochastic dynamics of growth and shrinkage of single actin filam...
AbstractWe study the stochastic dynamics of growth and shrinkage of single actin filaments taking in...
Bacteria and archaea usually divide symmetrically by formation of a septum in the middle of the cell...
A simulation model of prokaryotic Z-ring assembly, based on the observed behavior of FtsZ in vitro a...
Bacterial cytokinesis is commonly initiated by the Z-ring, a dynamic cytoskeletal structure that ass...
AbstractBacteria and archaea usually divide symmetrically by formation of a septum in the middle of ...
ABSTRACT Polymerization dynamics of single actin filaments is investigated theoretically using a sto...
AbstractPolymerization dynamics of single actin filaments is investigated theoretically using a stoc...
Bacterial cell division involves a complex and dynamic sequence of events whereby polymers of the pr...
The first step in bacterial cytokinesis is the assembly of a stable but dynamic cytokinetic ring mad...
Uncovering mechanisms that control the dynamics of microtubules is fundamental for our understanding...