<div><p>AIDA-1 is highly enriched in postsynaptic density (PSD) fractions and is considered a major component of the PSD complex. In the present study, immunogold electron microscopy was applied to determine localization as well as the activity-induced redistribution of AIDA-1 at the PSD using two antibodies that recognize two different epitopes. In cultured rat hippocampal neurons under basal conditions, immunogold label for AIDA-1 is mostly located within the dense core of the PSD, with a median distance of ~30 nm from the postsynaptic membrane. Under excitatory conditions, such as depolarization with high K<sup>+</sup> (90 mM, 2 min) or application of NMDA (50 μM, 2 min), AIDA-1 label density at the PSD core is reduced to 40% of controls...
Synaptic plasticity represents the long lasting activity-related strengthening or weakening of synap...
Strengthening and weakening of synapses are a fundamental information processing unit within the neu...
The development of the brain and its underlying circuitry is dependent on the formation of trillions...
AIDA-1 is highly enriched in postsynaptic density (PSD) fractions and is considered a major componen...
<p><b>(A)</b> The short AIDA-1 proteins (P0C6S7-2 or AIDA-1e, P0C6S7-3 or AIDA-1d in rat as designat...
<p>Histograms from a representative experiment depicting the distribution of AIDA-1 label, within an...
SummaryScaffolding molecules at the postsynaptic membrane form the foundation of excitatory synaptic...
Sustained activity-dependent synaptic modifications require protein synthesis. Although proteins can...
The postsynaptic density (PSD) is a large protein complex that clusters neurotransmitter receptors a...
PSD-95, a membrane-associated guanylate kinase, is the major scaffolding protein in the excitatory p...
Shank and GKAP are scaffold proteins and binding partners at the postsynaptic density (PSD). The dis...
IRSp53 (BAIAP2) is an abundant protein at the postsynaptic density (PSD) that binds to major PSD sca...
Excitatory synapses are characterized by an electron-dense thickening at the cytoplasmic surface of ...
<div><p>Postsynatptic density protein (PSD-95) is a 95 kDa scaffolding protein that assembles signal...
Postsynatptic density protein (PSD-95) is a 95 kDa scaffolding protein that assembles signaling comp...
Synaptic plasticity represents the long lasting activity-related strengthening or weakening of synap...
Strengthening and weakening of synapses are a fundamental information processing unit within the neu...
The development of the brain and its underlying circuitry is dependent on the formation of trillions...
AIDA-1 is highly enriched in postsynaptic density (PSD) fractions and is considered a major componen...
<p><b>(A)</b> The short AIDA-1 proteins (P0C6S7-2 or AIDA-1e, P0C6S7-3 or AIDA-1d in rat as designat...
<p>Histograms from a representative experiment depicting the distribution of AIDA-1 label, within an...
SummaryScaffolding molecules at the postsynaptic membrane form the foundation of excitatory synaptic...
Sustained activity-dependent synaptic modifications require protein synthesis. Although proteins can...
The postsynaptic density (PSD) is a large protein complex that clusters neurotransmitter receptors a...
PSD-95, a membrane-associated guanylate kinase, is the major scaffolding protein in the excitatory p...
Shank and GKAP are scaffold proteins and binding partners at the postsynaptic density (PSD). The dis...
IRSp53 (BAIAP2) is an abundant protein at the postsynaptic density (PSD) that binds to major PSD sca...
Excitatory synapses are characterized by an electron-dense thickening at the cytoplasmic surface of ...
<div><p>Postsynatptic density protein (PSD-95) is a 95 kDa scaffolding protein that assembles signal...
Postsynatptic density protein (PSD-95) is a 95 kDa scaffolding protein that assembles signaling comp...
Synaptic plasticity represents the long lasting activity-related strengthening or weakening of synap...
Strengthening and weakening of synapses are a fundamental information processing unit within the neu...
The development of the brain and its underlying circuitry is dependent on the formation of trillions...