SummaryLong-term potentiation (LTP) is accompanied by dendritic spine growth and changes in the composition of the postsynaptic density (PSD). We find that activity-dependent growth of apical spines of CA1 pyramidal neurons is accompanied by destabilization of the PSD that results in transient loss and rapid replacement of PSD-95 and SHANK2. Signaling through PSD-95 is required for activity-dependent spine growth and trafficking of SHANK2. N-terminal PDZ and C-terminal guanylate kinase domains of PSD-95 are required for both processes, indicating that PSD-95 coordinates multiple signals to regulate morphological plasticity. Activity-dependent trafficking of PSD-95 is triggered by phosphorylation at serine 73, a conserved calcium/calmodulin-...
Most excitatory synapses terminate on dendritic spines. Spines vary in size, and their volumes are p...
The correct rearrangement of postsynaptic components in dendritic spines is important for driving ch...
The correct rearrangement of postsynaptic components in dendritic spines is important for driving ch...
SummaryLong-term potentiation (LTP) is accompanied by dendritic spine growth and changes in the comp...
The appearance and disappearance of dendritic spines, accompanied by synapse formation and eliminati...
The appearance and disappearance of dendritic spines, accompanied by synapse formation and eliminati...
Postsynaptic density 95 (PSD-95) is an important regulator of synaptic structure and plasticity. How...
The roles of calcium-calmodulin-dependent protein kinase II-alpha (CaMKIIα) in the expression of lon...
AbstractThe PSD-95/SAP90 family of scaffold proteins organizes the postsynaptic density (PSD) and re...
The formation and stabilization of new dendritic spines is a key component of the experience-depende...
Postsynaptic density protein-95 (PSD-95) is a central element of the postsynaptic architecture of gl...
Postsynaptic density protein-95 (PSD-95) is a central element of the postsynaptic architecture of gl...
Postsynaptic density protein-95 (PSD-95) is a central element of the postsynaptic architecture of gl...
Protein kinase D (PKD) is a serine-threonine kinase which can be found in a variety of cell types at...
Actin turnover in dendritic spines influences spine development, morphology, and plasticity, with fu...
Most excitatory synapses terminate on dendritic spines. Spines vary in size, and their volumes are p...
The correct rearrangement of postsynaptic components in dendritic spines is important for driving ch...
The correct rearrangement of postsynaptic components in dendritic spines is important for driving ch...
SummaryLong-term potentiation (LTP) is accompanied by dendritic spine growth and changes in the comp...
The appearance and disappearance of dendritic spines, accompanied by synapse formation and eliminati...
The appearance and disappearance of dendritic spines, accompanied by synapse formation and eliminati...
Postsynaptic density 95 (PSD-95) is an important regulator of synaptic structure and plasticity. How...
The roles of calcium-calmodulin-dependent protein kinase II-alpha (CaMKIIα) in the expression of lon...
AbstractThe PSD-95/SAP90 family of scaffold proteins organizes the postsynaptic density (PSD) and re...
The formation and stabilization of new dendritic spines is a key component of the experience-depende...
Postsynaptic density protein-95 (PSD-95) is a central element of the postsynaptic architecture of gl...
Postsynaptic density protein-95 (PSD-95) is a central element of the postsynaptic architecture of gl...
Postsynaptic density protein-95 (PSD-95) is a central element of the postsynaptic architecture of gl...
Protein kinase D (PKD) is a serine-threonine kinase which can be found in a variety of cell types at...
Actin turnover in dendritic spines influences spine development, morphology, and plasticity, with fu...
Most excitatory synapses terminate on dendritic spines. Spines vary in size, and their volumes are p...
The correct rearrangement of postsynaptic components in dendritic spines is important for driving ch...
The correct rearrangement of postsynaptic components in dendritic spines is important for driving ch...