SummaryNeuronal activity augments maturation of mushroom-shaped spines to form excitatory synapses, thereby strengthening synaptic transmission. We have delineated a Ca2+-signaling pathway downstream of the NMDA receptor that stimulates calmodulin-dependent kinase kinase (CaMKK) and CaMKI to promote formation of spines and synapses in hippocampal neurons. CaMKK and CaMKI form a multiprotein signaling complex with the guanine nucleotide exchange factor (GEF) βPIX and GIT1 that is localized in spines. CaMKI-mediated phosphorylation of Ser516 in βPIX enhances its GEF activity, resulting in activation of Rac1, an established enhancer of spinogenesis. Suppression of CaMKK or CaMKI by pharmacological inhibitors, dominant-negative (dn) constructs ...
Remodeling of synaptic networks through an activity-dependent formation or elimination of synaptic c...
AbstractCalcium/calmodulin-dependent protein kinase II (CaMKII) can be regulated by synaptic activit...
AbstractNeurite extension and branching are important neuronal plasticity mechanisms that can lead t...
SummaryNeuronal activity augments maturation of mushroom-shaped spines to form excitatory synapses, ...
Electrical activity plays a crucial role in neuronal circuit assembly. Activation of NMDA receptors ...
The roles of calcium-calmodulin-dependent protein kinase II-alpha (CaMKIIα) in the expression of lon...
SummarySynGAP is a Ras-GTPase activating protein highly enriched at excitatory synapses in the brain...
SummaryCalcium-calmodulin-dependent protein kinase II (CaMKII) is a key mediator of synaptic plastic...
In the nervous system, many intracellular responses to elevated calcium are mediated by CaM kinases ...
AbstractNeurite extension and branching are important neuronal plasticity mechanisms that can lead t...
SummaryThe molecular mechanisms regulating the ubiquitin proteasome system (UPS) at synapses are poo...
AbstractIn a neuron's dendritic spine, the location of CaMKII is controlled by a number of interacti...
The molecular mechanisms regulating the ubiquitin proteasome system (UPS) at synapses are poorly und...
While CaMKII has long been known to be essential for synaptic plasticity and learning, recent work p...
SummaryActivity-dependent remodeling of dendritic spines is essential for neural circuit development...
Remodeling of synaptic networks through an activity-dependent formation or elimination of synaptic c...
AbstractCalcium/calmodulin-dependent protein kinase II (CaMKII) can be regulated by synaptic activit...
AbstractNeurite extension and branching are important neuronal plasticity mechanisms that can lead t...
SummaryNeuronal activity augments maturation of mushroom-shaped spines to form excitatory synapses, ...
Electrical activity plays a crucial role in neuronal circuit assembly. Activation of NMDA receptors ...
The roles of calcium-calmodulin-dependent protein kinase II-alpha (CaMKIIα) in the expression of lon...
SummarySynGAP is a Ras-GTPase activating protein highly enriched at excitatory synapses in the brain...
SummaryCalcium-calmodulin-dependent protein kinase II (CaMKII) is a key mediator of synaptic plastic...
In the nervous system, many intracellular responses to elevated calcium are mediated by CaM kinases ...
AbstractNeurite extension and branching are important neuronal plasticity mechanisms that can lead t...
SummaryThe molecular mechanisms regulating the ubiquitin proteasome system (UPS) at synapses are poo...
AbstractIn a neuron's dendritic spine, the location of CaMKII is controlled by a number of interacti...
The molecular mechanisms regulating the ubiquitin proteasome system (UPS) at synapses are poorly und...
While CaMKII has long been known to be essential for synaptic plasticity and learning, recent work p...
SummaryActivity-dependent remodeling of dendritic spines is essential for neural circuit development...
Remodeling of synaptic networks through an activity-dependent formation or elimination of synaptic c...
AbstractCalcium/calmodulin-dependent protein kinase II (CaMKII) can be regulated by synaptic activit...
AbstractNeurite extension and branching are important neuronal plasticity mechanisms that can lead t...