Physiologic and nanoscale distinctions define glutamatergic synapses in tonic vs phasic neurons
He, K.; Han, Y.; Li, X.; Hernandez, R. X.; Riboul, D. V.; Feghhi, T.; Justs, K. A.; Mahneva, O.; Perry, S.; Macleod, G. T.; Dickman, D.
Show abstract
Neurons exhibit a striking degree of functional diversity, each one tuned to the needs of the circuitry in which it is embedded. A fundamental functional dichotomy occurs in activity patterns, with some neurons firing at a relatively constant "tonic" rate, while others fire in bursts - a "phasic" pattern. Synapses formed by tonic vs phasic neurons are also functionally differentiated, yet the bases of their distinctive properties remain enigmatic. A major challenge towards illuminating the synaptic differences between tonic and phasic neurons is the difficulty in isolating their physiological properties. At the Drosophila neuromuscular junction (NMJ), most muscle fibers are co-innervated by two motor neurons, the tonic "MN-Ib" and phasic "MN-Is". Here, we employed selective expression of a newly developed botulinum neurotoxin (BoNT-C) transgene to silence tonic or phasic motor neurons. This approach revealed major differences in their neurotransmitter release properties, including probability, short-term plasticity, and vesicle pools. Furthermore, Ca2+ imaging demonstrated ~two-fold greater Ca2+ influx at phasic neuron release sites relative to tonic, along with enhanced synaptic vesicle coupling. Finally, confocal and super resolution imaging revealed that phasic neuron release sites are organized in a more compact arrangement, with enhanced stoichiometry of voltage-gated Ca2+ channels relative to other active zone scaffolds. These data suggest that distinctions in active zone nano-architecture and Ca2+ influx collaborate to differentially tune glutamate release at synapses of tonic vs phasic neuronal subtypes.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Botulinum neurotoxin accurately separates tonic vs phasic transmission and reveals heterosynaptic plasticity rules in Drosophila 98%
- Ca2+ channel and active zone protein abundance intersects with input-specific synapse organization to shape functional synaptic diversity 98%
- Specific presynaptic functions require distinct Drosophila Cav2 splice isoforms 97%
Similar papers in this journal
- Structural and functional synaptic plasticity induced by convergent synapse loss requires co-innervation in the Drosophila neuromuscular circuit 97%
- Unravelling the molecular players at the cholinergic efferent synapse of the zebrafish lateral line 97%
- Reactive Oxygen Species Modulate Activity-Dependent AMPA Receptor Transport in C. elegans 96%
Similar papers in this journal
- Distinct target-specific mechanisms homeostatically stabilize transmission at pre-and post-synaptic compartments 98%
- Endogenous tagging of Unc-13 reveals nanocluster reorganization at active zones during presynaptic homeostatic potentiation 97%
- Homeostatic depression shows heightened sensitivity to synaptic calcium 96%
Similar papers in this journal
- Functional dynamics and selectivity of two parallel corticocortical pathways from motor cortex to layer 5 circuits in somatosensory cortex 96%
- Optical manipulations reveal strong reciprocal inhibition but limited recurrent excitation within olfactory bulb glomeruli 95%
- Inter-animal variability in activity phase is constrained by synaptic dynamics in an oscillatory network 95%
"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.