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The neuron-intrinsic membrane skeleton is required for motor neuron integrity throughout lifespan

Davison, C. A.; Garcia, D.; Feng, C.; Hao, H.; Jorgensen, E. M.; Hammarlund, M.

2025-02-24 neuroscience
10.1101/2025.02.23.639536 bioRxiv
Show abstract

Axons experience physical stress throughout an organisms lifetime, and disruptions in axonal integrity are hallmarks of both neurodegenerative diseases and traumatic injuries. The spectrin-based membrane periodic skeleton (MPS) is proposed to have a crucial role in maintaining axonal strength, flexibility, and resilience. To investigate the importance of the intrinsic MPS for GABAergic motor neuron integrity in C. elegans, we employed the auxin-inducible degron system to degrade {beta}-spectrin/UNC-70 in a cell-type specific and time-dependent manner. Degradation of {beta}-spectrin from all neurons beginning at larval development resulted in widespread axon breakage and regeneration in VD/DD GABAergic motor neurons in both larval and adult animals. Similarly, targeted degradation of {beta}-spectrin in GABA neurons alone resulted in extensive breakage. Moreover, we found that depleting {beta}-spectrin from the mature nervous system also induced axon breaks. By contrast, epidermal {beta}-spectrin was not required for axon integrity of VD/DD neurons. These findings demonstrate the cell-intrinsic importance of neuronal {beta}-spectrin/UNC-70 for axon integrity both during development and in adulthood.

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