The Microtubule-severing Proteins Spastin and Katanin Participate Differently in the Formation of Axonal Branches
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- 1 April 2008
- journal article
- Published by American Society for Cell Biology (ASCB) in Molecular Biology of the Cell
- Vol. 19 (4) , 1485-1498
- https://doi.org/10.1091/mbc.e07-09-0878
Abstract
Neurons express two different microtubule-severing proteins, namely P60-katanin and spastin. Here, we performed studies on cultured neurons to ascertain whether these two proteins participate differently in axonal branch formation. P60-katanin is more highly expressed in the neuron, but spastin is more concentrated at sites of branch formation. Overexpression of spastin dramatically enhances the formation of branches, whereas overexpression of P60-katanin does not. The excess spastin results in large numbers of short microtubules, whereas the excess P60-katanin results in short microtubules intermingled with longer microtubules. We hypothesized that these different microtubule-severing patterns may be due to the presence of molecules such as tau on the microtubules that more strongly shield them from being severed by P60-katanin than by spastin. Consistent with this hypothesis, we found that axons depleted of tau show a greater propensity to branch, and that this is true whether or not the axons are also depleted of spastin. We propose that there are two modes by which microtubule severing is orchestrated during axonal branch formation, one based on the local concentration of spastin at branch sites and the other based on local detachment from microtubules of molecules such as tau that regulate the severing properties of P60-katanin.Keywords
This publication has 36 references indexed in Scilit:
- Three microtubule severing enzymes contribute to the “Pacman-flux” machinery that moves chromosomesThe Journal of cell biology, 2007
- Recognition of C-terminal amino acids in tubulin by pore loops in Spastin is important for microtubule severingThe Journal of cell biology, 2007
- Making more microtubules by severing: a common theme of noncentrosomal microtubule arrays?The Journal of cell biology, 2006
- Spastin in the human and mouse central nervous system with special reference to its expression in the hippocampus of mouse pilocarpine model of status epilepticus and temporal lobe epilepsyNeurochemistry International, 2006
- Axonal Transport of Microtubules: the Long and Short of ItTraffic, 2006
- Human spastin has multiple microtubule‐related functionsJournal of Neurochemistry, 2005
- Regulation of Microtubule Severing by Katanin Subunits during Neuronal DevelopmentJournal of Neuroscience, 2005
- Linking axonal degeneration to microtubule remodeling by Spastin-mediated microtubule severingThe Journal of cell biology, 2005
- Drosophila Spastin Regulates Synaptic Microtubule Networks and Is Required for Normal Motor FunctionPLoS Biology, 2004
- Axonal Growth Is Sensitive to the Levels of Katanin, a Protein That Severs MicrotubulesJournal of Neuroscience, 2004