Dynamics and nanoscale organization of the postsynaptic endocytic zone at excitatory synapses

Publication date

2022-01-24

Authors

Catsburg, LisaISNI 0000000492859946
Westra, ManonISNI 0000000512658886
van Schaik, Annemarie Ml
MacGillavry, Harold DISNI 0000000390498692

Editors

Advisors

Supervisors

Document Type

Article
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cc_by

Abstract

At postsynaptic sites of neurons, a prominent clathrin-coated structure, the endocytic zone (EZ), controls the trafficking of glutamate receptors and is essential for synaptic plasticity. Despite its importance, little is known about how this clathrin structure is organized to mediate endocytosis. We used live-cell and super-resolution microscopy to reveal the dynamic organization of this poorly understood clathrin structure in rat hippocampal neurons. We found that a subset of endocytic proteins only transiently appeared at postsynaptic sites. In contrast, other proteins were persistently enriched and partitioned at the edge of the EZ. We found that uncoupling the EZ from the synapse led to the loss of most of these components, while disrupting interactions with the actin cytoskeleton or membrane did not alter EZ positioning. Finally, we found that plasticity-inducing stimuli promoted the reorganization of the EZ. We conclude that the EZ is a stable, highly organized molecular platform where components are differentially recruited and positioned to orchestrate the endocytosis of synaptic receptors.

Keywords

Animals, Clathrin/metabolism, Endocytosis/physiology, Hippocampus/metabolism, Neuronal Plasticity/physiology, Neurons/metabolism, Rats, Rats, Wistar, Receptors, Glutamate/metabolism, Synapses/physiology, Synaptic Transmission/physiology, Super-resolution microscopy, Clathrin, Rat, Dendrite, Synapse, Neuron, General Biochemistry,Genetics and Molecular Biology, General Immunology and Microbiology, General Neuroscience

Citation

Catsburg, L, Westra, M, van Schaik, A M & MacGillavry, H D 2022, 'Dynamics and nanoscale organization of the postsynaptic endocytic zone at excitatory synapses', eLife, vol. 11, e74387. https://doi.org/10.7554/eLife.74387