AbstractThe intermittent transition between slow growth and rapid shrinkage in polymeric assemblies is termed “dynamic instability”, a feature observed in a variety of biochemically distinct assemblies including microtubules, actin, and their bacterial analogs. The existence of this labile phase of a polymer has many functional consequences in cytoskeletal dynamics, and its repeated appearance suggests that it is relatively easy to evolve. Here, we consider the minimal ingredients for the existence of dynamic instability by considering a single polymorphic filament that grows by binding to a substrate, undergoes a conformation change, and may unbind as a consequence of the residual strains induced by this change. We identify two parameters ...
International audienceMicrotubules assembled in vitro from pure tubulin can switch occasionally from...
We present a generic theory for the dynamics of a stiff filament under tension, in an active medium ...
We propose a simple phenomenological model for describing the conformational dynamics of biopolymers...
The intermittent transition between slow growth and rapid shrinkage in polymeric assemblies is terme...
AbstractThe intermittent transition between slow growth and rapid shrinkage in polymeric assemblies ...
Characterising complex kinetics of non-equilibrium self-assembly of bio-filaments is of general inte...
International audienceWe study the stochastic dynamics of growth and shrinkage of single actin filam...
ABSTRACT We study the stochastic dynamics of growth and shrinkage of single actin filaments or micro...
AbstractWe study the stochastic dynamics of growth and shrinkage of single actin filaments or microt...
The concept of critical concentration (CC) is central to understanding the behavior of microtubules ...
Dynamic instability—the switching of a two-state polymer between phases of steady elongation and rap...
Microtubules are dynamic cytoskeletal polymers that spontaneously switch between phases of growth an...
PACS. 87.15.-v – Biomolecules: structure and physical properties. Abstract. – We investigate, by a B...
35 pages, 12 .ps figures.We investigate, using numerical simulations and analytical arguments, a sim...
We propose a simple phenomenological model for describing the conformational dynamics of biopolymers...
International audienceMicrotubules assembled in vitro from pure tubulin can switch occasionally from...
We present a generic theory for the dynamics of a stiff filament under tension, in an active medium ...
We propose a simple phenomenological model for describing the conformational dynamics of biopolymers...
The intermittent transition between slow growth and rapid shrinkage in polymeric assemblies is terme...
AbstractThe intermittent transition between slow growth and rapid shrinkage in polymeric assemblies ...
Characterising complex kinetics of non-equilibrium self-assembly of bio-filaments is of general inte...
International audienceWe study the stochastic dynamics of growth and shrinkage of single actin filam...
ABSTRACT We study the stochastic dynamics of growth and shrinkage of single actin filaments or micro...
AbstractWe study the stochastic dynamics of growth and shrinkage of single actin filaments or microt...
The concept of critical concentration (CC) is central to understanding the behavior of microtubules ...
Dynamic instability—the switching of a two-state polymer between phases of steady elongation and rap...
Microtubules are dynamic cytoskeletal polymers that spontaneously switch between phases of growth an...
PACS. 87.15.-v – Biomolecules: structure and physical properties. Abstract. – We investigate, by a B...
35 pages, 12 .ps figures.We investigate, using numerical simulations and analytical arguments, a sim...
We propose a simple phenomenological model for describing the conformational dynamics of biopolymers...
International audienceMicrotubules assembled in vitro from pure tubulin can switch occasionally from...
We present a generic theory for the dynamics of a stiff filament under tension, in an active medium ...
We propose a simple phenomenological model for describing the conformational dynamics of biopolymers...