Following injury, axons of the peripheral nervous system have retained the capacity for regeneration. While it is well established that injury signals require molecular motors for their transport from the injury site to the nucleus, whether kinesin and dynein motors play additional roles in peripheral nerve regeneration is not well understood. Here we use genetic mutants of motor proteins in a zebrafish peripheral nerve regeneration model to visualize and define in vivo roles for kinesin and dynein. We find that both kinesin-1 and dynein are required for zebrafish peripheral nerve regeneration. While loss of kinesin-1 reduced the overall robustness of axonal regrowth, loss of dynein dramatically impaired axonal regeneration and also reduced...
(A) ~10 rhodamine-labeled cells were transplanted from wild type blastulas to dync1h1-/- blastulas. ...
Neural damage is a devastating outcome of physical trauma. The glia are one of the main effectors of...
BACKGROUND: Dynactin subunit 1 is the largest subunit of the dynactin complex, an activator of the m...
Following injury, axons of the peripheral nervous system have retained the capacity for regeneration...
Following injury, axons of the peripheral nervous system have retained the capacity for regeneration...
Following injury, axons of the peripheral nervous system have retained the capacity for regeneration...
Vertebrate peripheral nerves can regenerate, enabling severed axons to reconnect with their original...
Vertebrate peripheral nerves can regenerate, enabling severed axons to reconnect with their original...
Following injury, peripheral nerves reestablish neuromuscular connections with their developmental t...
Axons of the peripheral nervous system have retained the remarkable ability to regenerate. However, ...
Abstract Background Understanding the cellular mechanisms regulating axon degeneration and regenerat...
Although it is known for long time that the peripheral nervous system has the capacity for self-rege...
BackgroundUnderstanding the cellular mechanisms regulating axon degeneration and regeneration is cru...
Axons of the peripheral nervous system have retained the remarkable ability to regenerate. However, ...
SummaryFunctional PNS regeneration requires injured axons to return to their original synaptic targe...
(A) ~10 rhodamine-labeled cells were transplanted from wild type blastulas to dync1h1-/- blastulas. ...
Neural damage is a devastating outcome of physical trauma. The glia are one of the main effectors of...
BACKGROUND: Dynactin subunit 1 is the largest subunit of the dynactin complex, an activator of the m...
Following injury, axons of the peripheral nervous system have retained the capacity for regeneration...
Following injury, axons of the peripheral nervous system have retained the capacity for regeneration...
Following injury, axons of the peripheral nervous system have retained the capacity for regeneration...
Vertebrate peripheral nerves can regenerate, enabling severed axons to reconnect with their original...
Vertebrate peripheral nerves can regenerate, enabling severed axons to reconnect with their original...
Following injury, peripheral nerves reestablish neuromuscular connections with their developmental t...
Axons of the peripheral nervous system have retained the remarkable ability to regenerate. However, ...
Abstract Background Understanding the cellular mechanisms regulating axon degeneration and regenerat...
Although it is known for long time that the peripheral nervous system has the capacity for self-rege...
BackgroundUnderstanding the cellular mechanisms regulating axon degeneration and regeneration is cru...
Axons of the peripheral nervous system have retained the remarkable ability to regenerate. However, ...
SummaryFunctional PNS regeneration requires injured axons to return to their original synaptic targe...
(A) ~10 rhodamine-labeled cells were transplanted from wild type blastulas to dync1h1-/- blastulas. ...
Neural damage is a devastating outcome of physical trauma. The glia are one of the main effectors of...
BACKGROUND: Dynactin subunit 1 is the largest subunit of the dynactin complex, an activator of the m...