Auxin-inducible degradation of UNC-116 in C. elegans inhibits bidirectional dense core vesicle transport and worm locomotion on different timescales
Boström, A. H.; Gavrilova, A.; Poulin, G. B.; Allan, V. J.
Show abstract
The microtubule motor kinesin-1 is vital in neurons, with mutations being associated with neurological diseases. Deletion of the Caenorhabditis elegans kinesin-1 gene unc-116 is lethal, and viable mutants are uncoordinated. Here, we use auxin-mediated degradation to deplete UNC-116 protein at different developmental stages and monitor the effects on cargo transport and locomotion. UNC-116 is substantially degraded within 1 hour of auxin treatment, by which time bidirectional dense core vesicle (DCV) motility is affected. After 4 hours, dynein-driven DCV movement is lost and only limited plus-end-directed DCV motility remains, likely driven by kinesin-3 (UNC-104). DCV movement recovers substantially after rescue from auxin for 24 hours. There is a time-lag between loss of protein and effects on locomotion, as crawling and swimming/thrashing is unaffected until 6-14 hours on auxin. By 18-24 hours, animals are as uncoordinated as the unc-116(rh24sb79) mutant. Notably, degradation of UNC-116 in neurons alone inhibits crawling and swimming, revealing the importance of neuronal kinesin-1 for locomotion. Overall, by bypassing early developmental UNC-116 functions, we reveal that UNC-116 is essential for bidirectional DCV transport and crucial for locomotion.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Lamin regulates the dietary restriction response via the mTOR pathway in Caenorhabditis elegans 96%
- Wash and the WASH Regulatory Complex function in Nuclear Envelope budding 95%
- Nuclear translocation of tagged endogenous ERK/MPK-1 MAP Kinase denotes a subset of activation events in C. elegans development 95%
Similar papers in this journal
- Centrosomal Enrichment and Proteasomal Degradation of SYS-1/-β-catenin Requires the Microtubule Motor Dynein 96%
- Ninein domains required for its localization, association with partners dynein and ensconsin, and microtubule organization 95%
- A large reverse-genetic screen identifies numerous regulators of testis nascent myotube collective cell migration and collective organ sculpting 95%
Similar papers in this journal
- Editing of endogenous tubulins reveals varying effects of tubulin posttranslational modifications on axonal growth and regeneration 97%
- The enteric nervous system of C. elegans is specified by the Sine Oculis-like homeobox gene ceh-34 96%
- Epidermal PAR-6 and PKC-3 are essential for postembryonic development of Caenorhabditis elegans and control non-centrosomal microtubule organization 96%
Similar papers in this journal
- The Kinetochore Protein KNL-1 Regulates the Actin Cytoskeleton to Control Dendrite Branching 97%
- Loss of the GARP but not EARP protein complex drives Golgi sterol overload during dendrite remodeling 96%
- Drosophila SPG12 ortholog, reticulon-like 1, governs presynapticER organization and Ca2+ dynamics 96%
Similar papers in this journal
- In vivo control of the ezrin/radixin/moesin protein ERM-1 in C. elegans 96%
- NHR-23 activity is necessary for C. elegans developmental progression and apical extracellular matrix structure and function 96%
- Harmonization of L1CAM Expression Facilitates Axon Outgrowth and Guidance of a Motor Neuron 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.