To establish and maintain their complex morphology and function, neurons and other polarized cells exploit cytoskeletal motor proteins to distribute cargoes to specific compartments. Recent studies in cultured cells have used inducible motor protein recruitment to explore how different motors contribute to polarized transport and to control the subcellular positioning of organelles. Such approaches also seem promising avenues for studying motor activity and organelle positioning within more complex cellular assemblies, but their applicability to multicellular in vivo systems has so far remained unexplored. Here, we report the development of an optogenetic organelle transport strategy in the in vivo model system Caenorhabditis elegans. We de...
Cellular compartmentalization and intracellular transport mechanisms are important to establish and ...
Cellular compartmentalization and intracellular transport mechanisms are important to establish and ...
Background: To establish and maintain their polarized morphology, neurons employ active transport dr...
To establish and maintain their complex morphology and function, neurons and other polarized cells e...
Proper positioning of organelles by cytoskeleton-based motor proteins underlies cellular events such...
Cellular functioning relies on active transport of organelles by molecular motors. To explore how in...
Proper positioning of organelles by cytoskeleton-based motor proteins underlies cellular events such...
Neural circuits are dynamic, with activity-dependent changes in synapse density and connectivity pea...
Active transport is integral to organelle localization and their distribution within the cell. Kines...
Active transport is integral to organelle localization and their distribution within the cell. Kines...
AbstractThe sensory outer segments (OS) of vertebrate retinal photoreceptors, which detect photons o...
The heterotrimeric motor protein, kinesin-II, and its presumptive cargo, can be observed moving ante...
The unique architecture of neurons requires the establishment and maintenance of polarity, which rel...
The specific organization of the neuronal microtubule cytoskeleton in axons and dendrites is an evol...
Neurons are highly polarized cells with two distinct processes called axons and dendrites. To establ...
Cellular compartmentalization and intracellular transport mechanisms are important to establish and ...
Cellular compartmentalization and intracellular transport mechanisms are important to establish and ...
Background: To establish and maintain their polarized morphology, neurons employ active transport dr...
To establish and maintain their complex morphology and function, neurons and other polarized cells e...
Proper positioning of organelles by cytoskeleton-based motor proteins underlies cellular events such...
Cellular functioning relies on active transport of organelles by molecular motors. To explore how in...
Proper positioning of organelles by cytoskeleton-based motor proteins underlies cellular events such...
Neural circuits are dynamic, with activity-dependent changes in synapse density and connectivity pea...
Active transport is integral to organelle localization and their distribution within the cell. Kines...
Active transport is integral to organelle localization and their distribution within the cell. Kines...
AbstractThe sensory outer segments (OS) of vertebrate retinal photoreceptors, which detect photons o...
The heterotrimeric motor protein, kinesin-II, and its presumptive cargo, can be observed moving ante...
The unique architecture of neurons requires the establishment and maintenance of polarity, which rel...
The specific organization of the neuronal microtubule cytoskeleton in axons and dendrites is an evol...
Neurons are highly polarized cells with two distinct processes called axons and dendrites. To establ...
Cellular compartmentalization and intracellular transport mechanisms are important to establish and ...
Cellular compartmentalization and intracellular transport mechanisms are important to establish and ...
Background: To establish and maintain their polarized morphology, neurons employ active transport dr...