Developmental remodeling shapes neural circuits via activity-dependent pruning of synapses and axons. Regulation of the cytoskeleton is critical for this process, as microtubule loss via enzymatic severing is an early step of pruning across many circuits and species. However, how microtubule-severing enzymes, such as spastin, are activated in specific neuronal compartments remains unknown. Here, we reveal that polyglutamylation, a post-translational tubulin modification enriched in neurons, plays an instructive role in developmental remodeling by tagging microtubules for severing. Motor neuron-specific gene deletion of enzymes that add or remove tubulin polyglutamylation-TTLL glutamylases vs. CCP deglutamylases-accelerates or delays neuromuscular synapse remodeling in a neurotransmission-dependent manner. This mechanism is not specific to peripheral synapses but also operates in central circuits, e.g., the hippocampus. Thus, tubulin polyglutamylation acts as a cytoskeletal rheostat of remodeling that shapes neuronal morphology and connectivity.
Polyglutamylation of microtubules drives neuronal remodeling.
微管多聚谷氨酰化驱动神经元重塑
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作者:Gavoci Antoneta, Zhiti Anxhela, Rusková Michaela, Magiera Maria M, Wang Mengzhe, Ziegler Karin A, Hausrat Torben J, Ugwuja Anselm I, Chakraborty Shreyangi, Engelhardt Stefan, Kneussel Matthias, Balastik Martin, Janke Carsten, Misgeld Thomas, Brill Monika S
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 Jun 25; 16(1):5384 |
| doi: | 10.1038/s41467-025-60855-6 | 研究方向: | 神经科学 |
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