Title of article :
Inducible and Reversible Enhancement of Learning, Memory, and Long-Term Potentiation by Genetic Inhibition of Calcineurin
Author/Authors :
Gaël Malleret، نويسنده , , Ursula Haditsch، نويسنده , , David Genoux، نويسنده , , Matthew W. Jones، نويسنده , , Tim V.P. Bliss، نويسنده , , Amanda M. Vanhoose، نويسنده , , Carl Weitlauf، نويسنده , , Eric R. Kandel، نويسنده , , Danny G. Winder، نويسنده , , Isabelle M. Mansuy، نويسنده ,
Issue Information :
هفته نامه با شماره پیاپی سال 2001
Pages :
12
From page :
675
To page :
686
Abstract :
The threshold for hippocampal-dependent synaptic plasticity and memory storage is thought to be determined by the balance between protein phosphorylation and dephosphorylation mediated by the kinase PKA and the phosphatase calcineurin. To establish whether endogenous calcineurin acts as an inhibitory constraint in this balance, we examined the effect of genetically inhibiting calcineurin on plasticity and memory. Using the doxycycline-dependent rtTA system to express a calcineurin inhibitor reversibly in the mouse brain, we find that the transient reduction of calcineurin activity facilitates LTP in vitro and in vivo. This facilitation is PKA dependent and persists over several days in vivo. It is accompanied by enhanced learning and strengthened short- and long-term memory in several hippocampal-dependent spatial and nonspatial tasks. The LTP and memory improvements are reversed fully by suppression of transgene expression. These results demonstrate that endogenous calcineurin constrains LTP and memory.
Journal title :
CELL
Serial Year :
2001
Journal title :
CELL
Record number :
1017300
Link To Document :
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