Proceedings of the National Academy of Sciences · 2007 · 328 citations · 31 references
Spine HeadCell AdhesionSynaptic TransmissionMolecular BiologyCytoskeletonNeurotransmissionStructural PlasticitySynaptic SignalingCellular PhysiologyDendritic Spine HeadSignaling PathwayDendritic Spine StructureCell SignalingProtein FunctionMolecular PhysiologyKinase SignalingCell BiologyF-actin-bundling Protein CrucialSynaptic PlasticitySignal TransductionNatural SciencesCell MotilityNeuroscienceCellular BiochemistrySystems BiologyMedicineExtracellular Matrix
Ca(2+)-calmodulin-dependent protein kinase II (CaMKII) is a serine/threonine protein kinase critically involved in synaptic plasticity in the brain. It is highly concentrated in the postsynaptic density fraction, exceeding the amount of any other signal transduction molecules. Because kinase signaling can be amplified by catalytic reaction, why CaMKII exists in such a large quantity has been a mystery. Here, we provide biochemical evidence that CaMKII is capable of bundling F-actin through a stoichiometric interaction. Consistent with this evidence, in hippocampal neurons, RNAi-mediated down-regulation of CaMKII leads to a reduction in the volume of dendritic spine head that is mediated by F-actin dynamics. An overexpression of CaMKII slowed down the actin turnover in the spine head. This activity was associated with beta subunit of CaMKII in a manner requiring its actin-binding and association domains but not the kinase domain. This finding indicates that CaMKII serves as a central signaling molecule in both functional and structural changes during synaptic plasticity.
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Structural basis of long-term potentiation in single dendritic spines
M Matsuzaki, Naoki Honkura, Graham C. R. Ellis‐Davies et al. · Nature · 2004 · 2.4K citations · Full text
Rapid Spine Delivery and Redistribution of AMPA Receptors After Synaptic NMDA Receptor Activation
Song‐Hai Shi, Yasunori Hayashi, Ronald S. Petralia et al. · Science · 1999 · 1.3K citations