The growth and migration of neurons require continuous remodelling of the neuronal cytoskeleton, providing a versatile cellular framework for force generation and guided movement, in addition to structural support. Actin filaments and microtubules are central to the dynamic action of the cytoskeleton and rapid advances in imaging technologies are enabling ever more detailed visualisation of the dynamic intracellular networks that they form. However, these filaments do not act individually and an expanding body of evidence emphasises the importance of actin–microtubule crosstalk in orchestrating cytoskeletal dynamics. Here, we summarise our current understanding of the structure and dynamics of actin and microtubules in isolation, before rev...
Neurite outgrowth underlies the wiring of the nervous system during development and regeneration. De...
Microtubules originate at the centrosome of the neuron and are then released for transport down the ...
Neurons extend axons to form the complex circuitry of the mature brain. This depends on the coordin...
SummaryAlthough much evidence suggests that axon growth and guidance depend on well-coordinated cyto...
Often in biology, form follows function. For example, the ability of neurons to receive, process, an...
Often in biology, form follows function. For example, the ability of neurons to receive, process, an...
Sensory-motile cells fulfill various biological functions ranging from immune activity or wound heal...
AbstractRecent studies indicate the actin and microtubule cytoskeletons are a final common target of...
Interactions between dynamic microtubules and actin filaments are essential to a wide range of cell ...
SummaryThe Arp2/3 complex is essential for actin nucleation and filament elongation in a variety of ...
Neural connectivity requires proper polarization of neurons, guidance to appropriate target location...
Neural connectivity requires proper polarization of neurons, guidance to appropriate target location...
Microtubules are one of the major cytoskeletal components of neurons, essential for many fundamental...
Microtubules are one of the major cytoskeletal components of neurons, essential for many fundamental...
The human body is composed of about 3−4×1013 (30-40 trillion) cells [1]. These cells are all functio...
Neurite outgrowth underlies the wiring of the nervous system during development and regeneration. De...
Microtubules originate at the centrosome of the neuron and are then released for transport down the ...
Neurons extend axons to form the complex circuitry of the mature brain. This depends on the coordin...
SummaryAlthough much evidence suggests that axon growth and guidance depend on well-coordinated cyto...
Often in biology, form follows function. For example, the ability of neurons to receive, process, an...
Often in biology, form follows function. For example, the ability of neurons to receive, process, an...
Sensory-motile cells fulfill various biological functions ranging from immune activity or wound heal...
AbstractRecent studies indicate the actin and microtubule cytoskeletons are a final common target of...
Interactions between dynamic microtubules and actin filaments are essential to a wide range of cell ...
SummaryThe Arp2/3 complex is essential for actin nucleation and filament elongation in a variety of ...
Neural connectivity requires proper polarization of neurons, guidance to appropriate target location...
Neural connectivity requires proper polarization of neurons, guidance to appropriate target location...
Microtubules are one of the major cytoskeletal components of neurons, essential for many fundamental...
Microtubules are one of the major cytoskeletal components of neurons, essential for many fundamental...
The human body is composed of about 3−4×1013 (30-40 trillion) cells [1]. These cells are all functio...
Neurite outgrowth underlies the wiring of the nervous system during development and regeneration. De...
Microtubules originate at the centrosome of the neuron and are then released for transport down the ...
Neurons extend axons to form the complex circuitry of the mature brain. This depends on the coordin...