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Synaptic Tagging and Capture: Differential Role of Distinct Calcium/calmodulin Kinases in Protein Synthesis-dependent Long-term Potentiation

Overview
Journal J Neurosci
Specialty Neurology
Date 2010 Apr 8
PMID 20371818
Citations 82
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Abstract

Weakly tetanized synapses in area CA1 of the hippocampus that ordinarily display long-term potentiation lasting approximately 3 h (called early-LTP) will maintain a longer-lasting change in efficacy (late-LTP) if the weak tetanization occurs shortly before or after strong tetanization of an independent, but convergent, set of synapses in CA1. The synaptic tagging and capture hypothesis explains this heterosynaptic influence on persistence in terms of a distinction between local mechanisms of synaptic tagging and cell-wide mechanisms responsible for the synthesis, distribution, and capture of plasticity-related proteins (PRPs). We now present evidence that distinct CaM kinase (CaMK) pathways serve a dissociable role in these mechanisms. Using a hippocampal brain-slice preparation that permits stable long-term recordings in vitro for >10 h and using hippocampal cultures to validate the differential drug effects on distinct CaMK pathways, we show that tag setting is blocked by the CaMK inhibitor KN-93 (2-[N-(2-hydroxyethyl)]-N-(4-methoxybenzenesulfonyl)amino-N-(4-chlorocinnamyl)-N-methylbenzylamine) that, at low concentration, is more selective for CaMKII. In contrast, the CaMK kinase inhibitor STO-609 [7H-benzimidazo(2,1-a)benz(de)isoquinoline-7-one-3-carboxylic acid] specifically limits the synthesis and/or availability of PRPs. Analytically powerful three-pathway protocols using sequential strong and weak tetanization in varying orders and test stimulation over long periods of time after LTP induction enable a pharmacological dissociation of these distinct roles of the CaMK pathways in late-LTP and so provide a novel framework for the molecular mechanisms by which synaptic potentiation, and possibly memories, become stabilized.

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References
1.
Martin K, Casadio A, Zhu H, Yaping E, Rose J, Chen M . Synapse-specific, long-term facilitation of aplysia sensory to motor synapses: a function for local protein synthesis in memory storage. Cell. 1998; 91(7):927-38. DOI: 10.1016/s0092-8674(00)80484-5. View

2.
Moncada D, Viola H . Induction of long-term memory by exposure to novelty requires protein synthesis: evidence for a behavioral tagging. J Neurosci. 2007; 27(28):7476-81. PMC: 6672624. DOI: 10.1523/JNEUROSCI.1083-07.2007. View

3.
Malinow R, Schulman H, Tsien R . Inhibition of postsynaptic PKC or CaMKII blocks induction but not expression of LTP. Science. 1989; 245(4920):862-6. DOI: 10.1126/science.2549638. View

4.
Fonseca R, Nagerl U, Bonhoeffer T . Neuronal activity determines the protein synthesis dependence of long-term potentiation. Nat Neurosci. 2006; 9(4):478-80. DOI: 10.1038/nn1667. View

5.
Lisman J, Zhabotinsky A . A model of synaptic memory: a CaMKII/PP1 switch that potentiates transmission by organizing an AMPA receptor anchoring assembly. Neuron. 2001; 31(2):191-201. DOI: 10.1016/s0896-6273(01)00364-6. View