Abstract Background Microtubules (MTs) are highly dynamic tubular cytoskeleton filaments that are essential for cellular morphology and intracellular transport. In vivo, the flexural rigidity of MTs can be dynamically regulated depending on their intracellular function. In the in vitro reconstructed MT-motor system, flexural rigidity affects MT gliding behaviors and trajectories. Despite the importance of flexural rigidity for both biological functions and in vitro applications, there is no clear interpretation of the regulation of MT flexural rigidity, and the results of many studies are contradictory. These discrepancies impede our understanding of the regulation of MT flexural rigidity, thereby challenging its precise manipulation. Resul...
Microtubules, which are flexible biopolymers, can be used for nanotechnology applications (e.g., nan...
International audienceMotility assays use surface-immobilized molecular motors to propel cytoskeleta...
ABSTRACT Microtubules (MT), along with a variety of associated motor proteins, are involved in a ran...
[Background] Microtubules (MTs) are highly dynamic tubular cytoskeleton filaments that are essential...
AbstractMicrotubules are dynamic protein polymers that continuously switch between elongation and ra...
Collective motion is a fascinating example of coordinated behavior of self-propelled objects, which ...
Microtubules are cytoskeletal polymers which play a role in cell division, cell mechanics, and intra...
Microtubules are cytoskeletal protein polymers relevant to a wide range of cell functions. In order ...
Collective motion is a ubiquitous phenomenon in nature. The collective motion of cytoskeleton filame...
Microtubules are highly dynamic biopolymer filaments involved in a wide variety of biological proces...
Abstract. Microtubules are long, proteinaceous filaments that perform structural functions in eukary...
Microtubules are rigid cytoskeletal filaments, and their mechanics affect cell morphology and cellul...
Collective motion is a ubiquitous phenomenon in nature. The collective motion of cytoskeleton filame...
The microtubule cytoskeleton is an intracellular polymer network involved in cell shape, cell motili...
The microtubule (MT) is the stiffest cytoskeletal filamentous protein that takes part in a wide rang...
Microtubules, which are flexible biopolymers, can be used for nanotechnology applications (e.g., nan...
International audienceMotility assays use surface-immobilized molecular motors to propel cytoskeleta...
ABSTRACT Microtubules (MT), along with a variety of associated motor proteins, are involved in a ran...
[Background] Microtubules (MTs) are highly dynamic tubular cytoskeleton filaments that are essential...
AbstractMicrotubules are dynamic protein polymers that continuously switch between elongation and ra...
Collective motion is a fascinating example of coordinated behavior of self-propelled objects, which ...
Microtubules are cytoskeletal polymers which play a role in cell division, cell mechanics, and intra...
Microtubules are cytoskeletal protein polymers relevant to a wide range of cell functions. In order ...
Collective motion is a ubiquitous phenomenon in nature. The collective motion of cytoskeleton filame...
Microtubules are highly dynamic biopolymer filaments involved in a wide variety of biological proces...
Abstract. Microtubules are long, proteinaceous filaments that perform structural functions in eukary...
Microtubules are rigid cytoskeletal filaments, and their mechanics affect cell morphology and cellul...
Collective motion is a ubiquitous phenomenon in nature. The collective motion of cytoskeleton filame...
The microtubule cytoskeleton is an intracellular polymer network involved in cell shape, cell motili...
The microtubule (MT) is the stiffest cytoskeletal filamentous protein that takes part in a wide rang...
Microtubules, which are flexible biopolymers, can be used for nanotechnology applications (e.g., nan...
International audienceMotility assays use surface-immobilized molecular motors to propel cytoskeleta...
ABSTRACT Microtubules (MT), along with a variety of associated motor proteins, are involved in a ran...