Arrival, Reversal, and Departure of Neurofilaments at the Tips of Growing AxonsV⃞
Open Access
- 1 September 2004
- journal article
- Published by American Society for Cell Biology (ASCB) in Molecular Biology of the Cell
- Vol. 15 (9), 4215-4225
- https://doi.org/10.1091/mbc.E04-05-0371
Abstract
We have investigated the movement of green fluorescent protein-tagged neurofilaments at the distal ends of growing axons by using time-lapse fluorescence imaging. The filaments moved in a rapid, infrequent, and asynchronous manner in either an anterograde or retrograde direction (60% anterograde, 40% retrograde). Most of the anterograde filaments entered the growth cone and most of the retrograde filaments originated in the growth cone. In a small number of cases we were able to observe neurofilaments reverse direction, and all of these reversals occurred in or close to the growth cone. We conclude that neurofilament polymers are delivered rapidly and infrequently to the tips of growing axons and that some of these polymers reverse direction in the growth cone and move back into the axon. We propose that 1) growth cones are a preferential site of neurofilament reversal in distal axons, 2) most retrograde neurofilaments in distal axons originate by reversal of anterograde filaments in the growth cone, 3) those anterograde filaments that do not reverse direction are recruited to form the neurofilament cytoskeleton of the newly forming axon, and 4) the net delivery of neurofilament polymers to growth cones may be controlled by regulating the reversal frequency.Keywords
This publication has 34 references indexed in Scilit:
- Rapid transport of neural intermediate filament proteinJournal of Cell Science, 2003
- Abnormal neurofilament transport caused by targeted disruption of neuronal kinesin heavy chain KIF5AThe Journal of cell biology, 2003
- Dynactin: Coordinating Motors with Opposite InclinationsCurrent Biology, 2003
- Axonal transport of membranous and nonmembranous cargoesThe Journal of cell biology, 2003
- Disruption of Dynein/Dynactin Inhibits Axonal Transport in Motor Neurons Causing Late-Onset Progressive DegenerationNeuron, 2002
- Subunit composition of neurofilaments specifies axonal diameter.The Journal of cell biology, 1996
- Slow axonal transport mechanisms move neurofilaments relentlessly in mouse optic axons.The Journal of cell biology, 1992
- Rapid growth cone translocation on laminin is supported by lamellipodial not filopodial structuresCell Motility, 1989
- Axonal growth in response to experimentally applied mechanical tensionDevelopmental Biology, 1984
- Neurofilament Accumulation Induced in Synapses by LeupeptinScience, 1983