SummaryScaffolding molecules at the postsynaptic membrane form the foundation of excitatory synaptic transmission by establishing the architecture of the postsynaptic density (PSD), but the small size of the synapse has precluded measurement of PSD organization in live cells. We measured the internal structure of the PSD in live neurons at approximately 25 nm resolution using photoactivated localization microscopy (PALM). We found that four major PSD scaffold proteins were each organized in distinctive ∼80 nm ensembles able to undergo striking changes over time. Bidirectional PALM and single-molecule immunolabeling showed that dense nanodomains of PSD-95 were preferentially enriched in AMPA receptors more than NMDA receptors. Chronic suppre...
Excitatory synapses are characterized by an electron-dense thickening at the cytoplasmic surface of ...
Excitatory synapses are characterized by an electron-dense thickening at the cytoplasmic surface of ...
Excitatory synapses are characterized by an electron-dense thickening at the cytoplasmic surface of ...
SummaryScaffolding molecules at the postsynaptic membrane form the foundation of excitatory synaptic...
Strengthening and weakening of synapses are a fundamental information processing unit within the neu...
PSD-95, a membrane-associated guanylate kinase, is the major scaffolding protein in the excitatory p...
Neurons are the basic building blocks in the nervous system. They communicate with each other via sy...
The postsynaptic density (PSD) is a large protein complex that clusters neurotransmitter receptors a...
Synaptic plasticity represents the long lasting activity-related strengthening or weakening of synap...
Synaptic plasticity represents the long lasting activity-related strengthening or weakening of synap...
Most excitatory synapses terminate on dendritic spines. Spines vary in size, and their volumes are p...
Synaptic transmission is maintained by a delicate, sub-synaptic molecular architecture, and even mil...
Synaptic transmission is maintained by a delicate, sub-synaptic molecular architecture, and even mil...
Excitatory synapses are characterized by an electron-dense thickening at the cytoplasmic surface of ...
Synaptic transmission is maintained by a delicate, sub-synaptic molecular architecture, and even mil...
Excitatory synapses are characterized by an electron-dense thickening at the cytoplasmic surface of ...
Excitatory synapses are characterized by an electron-dense thickening at the cytoplasmic surface of ...
Excitatory synapses are characterized by an electron-dense thickening at the cytoplasmic surface of ...
SummaryScaffolding molecules at the postsynaptic membrane form the foundation of excitatory synaptic...
Strengthening and weakening of synapses are a fundamental information processing unit within the neu...
PSD-95, a membrane-associated guanylate kinase, is the major scaffolding protein in the excitatory p...
Neurons are the basic building blocks in the nervous system. They communicate with each other via sy...
The postsynaptic density (PSD) is a large protein complex that clusters neurotransmitter receptors a...
Synaptic plasticity represents the long lasting activity-related strengthening or weakening of synap...
Synaptic plasticity represents the long lasting activity-related strengthening or weakening of synap...
Most excitatory synapses terminate on dendritic spines. Spines vary in size, and their volumes are p...
Synaptic transmission is maintained by a delicate, sub-synaptic molecular architecture, and even mil...
Synaptic transmission is maintained by a delicate, sub-synaptic molecular architecture, and even mil...
Excitatory synapses are characterized by an electron-dense thickening at the cytoplasmic surface of ...
Synaptic transmission is maintained by a delicate, sub-synaptic molecular architecture, and even mil...
Excitatory synapses are characterized by an electron-dense thickening at the cytoplasmic surface of ...
Excitatory synapses are characterized by an electron-dense thickening at the cytoplasmic surface of ...
Excitatory synapses are characterized by an electron-dense thickening at the cytoplasmic surface of ...