SummaryNeural activity regulates dendrite and synapse development, but the underlying molecular mechanisms are unclear. Ca2+/calmodulin-dependent protein kinase II (CaMKII) is an important sensor of synaptic activity, and the scaffold protein liprinα1 is involved in pre- and postsynaptic maturation. Here we show that synaptic activity can suppress liprinα1 protein level by two pathways: CaMKII-mediated degradation and the ubiquitin-proteasome system. In hippocampal neurons, liprinα1 mutants that are immune to CaMKII degradation impair dendrite arborization, reduce spine and synapse number, and inhibit dendritic targeting of receptor tyrosine phosphatase LAR, which is important for dendrite development. Thus, regulated degradation of liprinα...
AbstractNeurite extension and branching are important neuronal plasticity mechanisms that can lead t...
Interaction with the multi-PDZ protein GRIP is required for the synaptic targeting of AMPA receptors...
Activity-dependent synaptic plasticity underlies, at least in part, learning and memory processes. N...
SummaryNeural activity regulates dendrite and synapse development, but the underlying molecular mech...
The presynaptic active zone mediates synaptic vesicle exocytosis, and modulation of its molecular co...
Ca2+/calmodulin-dependent protein kinase II (CaMKII) is essential for long-term potentiation (LTP) o...
The presynaptic active zone provides sites for vesicle docking and release at central nervous synaps...
textabstractSynapses are specialized communication junctions between neurons whose plasticity provid...
SummaryCa2+ signaling plays a central role in activity-dependent regulation of dendritic arborizatio...
AbstractInteraction with the multi-PDZ protein GRIP is required for the synaptic targeting of AMPA r...
The presynaptic active zone mediates synaptic vesicle exocytosis, and modulation of its molecular co...
In a neuron's dendritic spine, the location of CaMKII is controlled by a number of interacting facto...
Lysophosphatidic acid (LPA) is a natural lysophospholipid that regulates neuronal maturation. In mic...
AbstractTwo papers in this issue of Neuron add a new dimension to our understanding of liprin and LA...
The active zone of a presynaptic nerve terminal defines sites for neurotransmitter release. Its prot...
AbstractNeurite extension and branching are important neuronal plasticity mechanisms that can lead t...
Interaction with the multi-PDZ protein GRIP is required for the synaptic targeting of AMPA receptors...
Activity-dependent synaptic plasticity underlies, at least in part, learning and memory processes. N...
SummaryNeural activity regulates dendrite and synapse development, but the underlying molecular mech...
The presynaptic active zone mediates synaptic vesicle exocytosis, and modulation of its molecular co...
Ca2+/calmodulin-dependent protein kinase II (CaMKII) is essential for long-term potentiation (LTP) o...
The presynaptic active zone provides sites for vesicle docking and release at central nervous synaps...
textabstractSynapses are specialized communication junctions between neurons whose plasticity provid...
SummaryCa2+ signaling plays a central role in activity-dependent regulation of dendritic arborizatio...
AbstractInteraction with the multi-PDZ protein GRIP is required for the synaptic targeting of AMPA r...
The presynaptic active zone mediates synaptic vesicle exocytosis, and modulation of its molecular co...
In a neuron's dendritic spine, the location of CaMKII is controlled by a number of interacting facto...
Lysophosphatidic acid (LPA) is a natural lysophospholipid that regulates neuronal maturation. In mic...
AbstractTwo papers in this issue of Neuron add a new dimension to our understanding of liprin and LA...
The active zone of a presynaptic nerve terminal defines sites for neurotransmitter release. Its prot...
AbstractNeurite extension and branching are important neuronal plasticity mechanisms that can lead t...
Interaction with the multi-PDZ protein GRIP is required for the synaptic targeting of AMPA receptors...
Activity-dependent synaptic plasticity underlies, at least in part, learning and memory processes. N...