Central Presynapses Regulate Spontaneous Synaptic Vesicle Exocytosis Rate by Constraining Recycling Pool Density
Wilson, P.; Kim, N.; Cotter, R.; Parkes, M.; Reed, M. N.; Gramlich, M. W.
Show abstract
Synapses represent a fundamental unit of information transfer during cognition. They accomplish this via presynaptic vesicle exocytosis, which can occur either spontaneously or by an action potential leading to evoked release. It has been well established that evoked release is probabilistic in nature, but it has been less clear what mechanisms mediate spontaneous release. Understanding spontaneous release is important because it is an essential maintenance mechanism for synaptic connections. We propose a mechanistic framework and model of spontaneous release based on immobile vesicles in the reserve pool geometrically constraining mobile vesicles in the recycling pool, which provides a force leading to a spontaneous release rate. We experimentally support this framework using a combination of Scanning Electron Microscopy (SEM), high-resolution fluorescence microscopy techniques using pHluorin-VGlut1 and a single vesicle SGC5 reporter, and a computational model. We observe that the spontaneous release rate increases linearly with the number of vesicles but is constant in the absence of presynaptic actin. We then use an acute agent, Forskolin, to further constrain the volume of the recycling pool, leading to an increased spontaneous release rate. We show that our framework predicts the increasing spontaneous release rate experimentally observed. These results suggest that synapses constrain the density of the recycling pool to mediate spontaneous release rate via the entropic force.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Fully-primed slowly-recovering vesicles mediate presynaptic LTP at neocortical neurons 96%
- A sequential two-step priming scheme reproduces diversity in synaptic strength and short-term plasticity 95%
- Differential nanoscale organization of excitatory synapses onto excitatory vs inhibitory neurons 94%
Similar papers in this journal
- Nanophysiology Approach Reveals Diversity in Calcium Microdomains across Zebrafish Retinal Bipolar Ribbon Synapses 95%
- Plasticity-induced actin polymerization in the dendritic shaft regulates intracellular AMPA receptor trafficking 95%
- Synaptotagmin 7 docks synaptic vesicles to support facilitation and Doc2α-triggered asynchronous release 95%
Similar papers in this journal
- Confinement of unliganded EGFR by tetraspanin nanodomains gates EGFR ligand binding and signaling 94%
- Single-molecule imaging with cell-derived nanovesicles reveals early binding dynamics at a cyclic nucleotide-gated ion channel 94%
- Molecular mechanics underlying flat-to-round membrane budding in live secretory cells 94%
Similar papers in this journal
Similar papers in this journal
- End Binding protein 1 promotes specific motor-cargo association in the cell body prior to axonal delivery of Dense Core Vesicles 94%
- Doublecortin reinforces microtubules to promote growth cone advance in soft environments 94%
- Adhesion-induced cortical flows pattern E-cadherin-mediated cell contacts 94%
"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.