Myosin motor proteins drive vigorous steady-state fluctuations in the actin cytoskeleton of cells. Endogenous embedded semiflexible filaments such as microtubules, or added filaments such as single-walled carbon nanotubes are used as novel tools to noninvasively track equilibrium and nonequilibrium fluctuations in such biopolymer networks. Here, we analytically calculate shape fluctuations of semiflexible probe filaments in a viscoelastic environment, driven out of equilibrium by motor activity. Transverse bending fluctuations of the probe filaments can be decomposed into dynamic normal modes. We find that these modes no longer evolve independently under nonequilibrium driving. This effective mode coupling results in nonzero circulatory cur...
International audienceBiofilaments like F-actin or microtubules, as well as cilia, flagella, or fila...
Microtubules are highly dynamic biopolymer filaments involved in a wide variety of biological proces...
Biological functions rely on ordered structures and intricately controlled collective dynamics. Such...
Myosin motor proteins drive vigorous steady-state fluctuations in the actin cytoskeleton of cells. E...
Biological activity gives rise to nonequilibrium fluctuations in the cytoplasm of cells; however, th...
Motor proteins actively contract the actin cytoskeleton of cells and thereby give rise to nonequilib...
Active networks of biopolymers and motor proteins in vitro self-organize and exhibit dynamic structu...
Recent experiments on molecular motor driven in vitro F-Actin networks have found anomalously large ...
The effect of myosin motor protein activity on the filamentous actin (F-actin) rheological response ...
In eukaryotic cells, motor proteins (MPs) bind to cytoskeletal filaments and move along them in a di...
AbstractMicroscope images of fluctuating biopolymers contain a wealth of information about their und...
The cytoskeleton of biological cells relies on a diverse population of motors, filaments, and bindin...
We present a generic theory for the dynamics of a stiff filament under tension, in an active medium ...
We study molecular motor-induced microtubule self-organization in dilute and semi-dilute f...
Abstract. We study molecular motor-induced microtubule self-organization in dilute and semi-dilute f...
International audienceBiofilaments like F-actin or microtubules, as well as cilia, flagella, or fila...
Microtubules are highly dynamic biopolymer filaments involved in a wide variety of biological proces...
Biological functions rely on ordered structures and intricately controlled collective dynamics. Such...
Myosin motor proteins drive vigorous steady-state fluctuations in the actin cytoskeleton of cells. E...
Biological activity gives rise to nonequilibrium fluctuations in the cytoplasm of cells; however, th...
Motor proteins actively contract the actin cytoskeleton of cells and thereby give rise to nonequilib...
Active networks of biopolymers and motor proteins in vitro self-organize and exhibit dynamic structu...
Recent experiments on molecular motor driven in vitro F-Actin networks have found anomalously large ...
The effect of myosin motor protein activity on the filamentous actin (F-actin) rheological response ...
In eukaryotic cells, motor proteins (MPs) bind to cytoskeletal filaments and move along them in a di...
AbstractMicroscope images of fluctuating biopolymers contain a wealth of information about their und...
The cytoskeleton of biological cells relies on a diverse population of motors, filaments, and bindin...
We present a generic theory for the dynamics of a stiff filament under tension, in an active medium ...
We study molecular motor-induced microtubule self-organization in dilute and semi-dilute f...
Abstract. We study molecular motor-induced microtubule self-organization in dilute and semi-dilute f...
International audienceBiofilaments like F-actin or microtubules, as well as cilia, flagella, or fila...
Microtubules are highly dynamic biopolymer filaments involved in a wide variety of biological proces...
Biological functions rely on ordered structures and intricately controlled collective dynamics. Such...