Journal of Cell Science · 2016 · 39 citations · 36 references
After being severed from the cell body, axons initiate an active degeneration program known as Wallerian degeneration. Although dendrites also seem to have an active injury-induced degeneration program, no endogenous regulators of this process are known. Because microtubule disassembly has been proposed to play a role in both pruning and injury-induced degeneration, we used a Drosophila model to identify microtubule regulators involved in dendrite degeneration. We found that, when levels of fidgetin were reduced using mutant or RNA interference (RNAi) strategies, dendrite degeneration was delayed, but axon degeneration and dendrite pruning proceeded with normal timing. We explored two possible ways in which fidgetin could promote dendrite degeneration: (1) by acting constitutively to moderate microtubule stability in dendrites, or (2) by acting specifically after injury to disassemble microtubules. When comparing microtubule dynamics and stability in uninjured neurons with and without fidgetin, we could not find evidence that fidgetin regulated microtubule stability constitutively. However, we identified a fidgetin-dependent increase in microtubule dynamics in severed dendrites. We conclude that fidgetin acts after injury to promote disassembly of microtubules in dendrites severed from the cell body.
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A genome-wide transgenic RNAi library for conditional gene inactivation in Drosophila
Georg Dietzl, Doris Chen, Frank Schnorrer et al. · Nature · 2007 · 2.7K citations
dSarm/Sarm1 Is Required for Activation of an Injury-Induced Axon Death Pathway
Jeannette M. Osterloh, Jing Yang, Timothy M. Rooney et al. · Science · 2012 · 706 citations · Full text
Jenny Slemmer, Casper C. Hoogenraad, Gideon Lansbergen et al. · Journal of Neuroscience · 2003 · 695 citations · Full text
Cultured Neurons, Developmental Biology, Intracellular Transport +14