Septin Complexes Regulate Microtubule Organization and Synaptic Function at the Neuromuscular Junction
Larti, F.; Akkülah, T.; Samancıoglu, A.; Polat, G. K.; Sardag, I.; Erdogan, R.; Celik, A.
Show abstract
Septins are conserved filamentous GTP-binding proteins that assemble at membranes and cytoskeletal interfaces, yet how they organize neuronal architecture in vivo remains incompletely understood. In neurons, microtubule organization is central to polarity, transport, and synaptic function, but the contribution of septin complexes to microtubule-dependent synaptic architecture remains unclear. Using the genetically tractable and paralog-restricted septin system of Drosophila melanogaster, we dissect the roles of Sep2 and Sep5 at larval neuromuscular junctions. Through integrated genetic, behavioral, immunostaining, and transcriptomic analyses, we show that septin loss disrupts pre- and postsynaptic organization and vesicle recycling while altering microtubule architecture. Notably, loss of septins shifts microtubules toward an acetylated and stabilized state, accompanied by increased expression of microtubule-associated and stabilization-linked factors, including tau, among the most upregulated genes and ringmaker, consistent with enhanced microtubule stabilization. Together, these findings position septin complexes as structural organizers that buffer microtubule state to preserve synaptic architecture, establishing septin composition as a key determinant of neuronal cytoskeletal organization in vivo.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- DYF-5 regulates intraflagellar transport by affecting train turnaround 95%
- 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
Similar papers in this journal
- Maintenance of cell type-specific connectivity and circuit function requires Tao kinase 97%
- The homeodomain transcriptional regulator DVE-1 directs a program for synapse elimination during circuit remodeling 96%
- The deubiquitylating enzyme Fat Facets promotes Fat signalling and restricts tissue growth 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.