Forebrain-Specific Calcineurin Knockout Selectively Impairs Bidirectional Synaptic Plasticity and Working/Episodic-like Memory

Calcineurin is a calcium-dependent protein phosphatase that has been implicated in various aspects of synaptic plasticity. By using conditional gene-targeting techniques, we created mice in which calcineurin activity is disrupted specifically in the adult forebrain. At hippocampal Schaffer collatera...

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Veröffentlicht in:Cell 2001-11, Vol.107 (5), p.617-629
Hauptverfasser: Zeng, Hongkui, Chattarji, Sumantra, Barbarosie, Michaela, Rondi-Reig, Laure, Philpot, Benjamin D., Miyakawa, Tsuyoshi, Bear, Mark F., Tonegawa, Susumu
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Sprache:eng
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Zusammenfassung:Calcineurin is a calcium-dependent protein phosphatase that has been implicated in various aspects of synaptic plasticity. By using conditional gene-targeting techniques, we created mice in which calcineurin activity is disrupted specifically in the adult forebrain. At hippocampal Schaffer collateral-CA1 synapses, LTD was significantly diminished, and there was a significant shift in the LTD/LTP modification threshold in mutant mice. Strikingly, although performance was normal in hippocampus-dependent reference memory tasks, including contextual fear conditioning and the Morris water maze, the mutant mice were impaired in hippocampus-dependent working and episodic-like memory tasks, including the delayed matching-to-place task and the radial maze task. Our results define a critical role for calcineurin in bidirectional synaptic plasticity and suggest a novel mechanistic distinction between working/episodic-like memory and reference memory.
ISSN:0092-8674
1097-4172
DOI:10.1016/S0092-8674(01)00585-2