Functional and ultrastructural investigations support the concept that altered brain connectivity, exhausted neural plasticity, and synaptic loss are the strongest correlates of cognitive decline in age-related neurodegenerative dementia of Alzheimer's type. We have previously demonstrated that in transgenic mice, expressing amyloid-β precursor protein-Swedish mutation active caspase-3 accumulates in hippocampal postsynaptic compartments leading to altered postsynaptic density (PSD) composition, increased long-term depression (LTD), and dendritic spine loss. Furthermore, we found strong evidence that dendritic spine alteration is mediated by calcineurin activation, a calcium-dependent phosphatase involved in synapse signaling. In the present work, we analyzed the molecular mechanism linking alteration of synaptic plasticity to the increase of calcineurin activity. We found that acute treatment of young and plaque-free transgenic mice with the calcineurin inhibitor FK506 leads to a complete rescue of LTD and PSD composition. Our findings are in agreement with other results reporting that calcineurin inhibition improves memory function and restores dendritic spine density, confirming that calcineurin inhibition may be explored as a neuroprotective treatment to stop or slowdown synaptic alterations in Alzheimer's disease.

Cavallucci, V., Berretta, N., Nobili, A., Nistico', R.g., Mercuri, N.b., D'Amelio, M. (2013). Calcineurin inhibition rescues early synaptic plasticity deficits in a mouse model of Alzheimer's disease. NEUROMOLECULAR MEDICINE, 15(3), 541-548 [10.1007/s12017-013-8241-2].

Calcineurin inhibition rescues early synaptic plasticity deficits in a mouse model of Alzheimer's disease

NISTICO', ROBERT GIOVANNI;MERCURI, NICOLA BIAGIO;
2013-09-01

Abstract

Functional and ultrastructural investigations support the concept that altered brain connectivity, exhausted neural plasticity, and synaptic loss are the strongest correlates of cognitive decline in age-related neurodegenerative dementia of Alzheimer's type. We have previously demonstrated that in transgenic mice, expressing amyloid-β precursor protein-Swedish mutation active caspase-3 accumulates in hippocampal postsynaptic compartments leading to altered postsynaptic density (PSD) composition, increased long-term depression (LTD), and dendritic spine loss. Furthermore, we found strong evidence that dendritic spine alteration is mediated by calcineurin activation, a calcium-dependent phosphatase involved in synapse signaling. In the present work, we analyzed the molecular mechanism linking alteration of synaptic plasticity to the increase of calcineurin activity. We found that acute treatment of young and plaque-free transgenic mice with the calcineurin inhibitor FK506 leads to a complete rescue of LTD and PSD composition. Our findings are in agreement with other results reporting that calcineurin inhibition improves memory function and restores dendritic spine density, confirming that calcineurin inhibition may be explored as a neuroprotective treatment to stop or slowdown synaptic alterations in Alzheimer's disease.
set-2013
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore BIO/14 - FARMACOLOGIA
English
Long-Term Synaptic Depression; Post-Synaptic Density; Animals; Protein Processing, Post-Translational; Alzheimer Disease; Calcineurin; Caspase 3; Disease Models, Animal; Mice; Tacrolimus; Dendrites; Mice, Transgenic; Guanylate Kinase; Neuroprotective Agents; Membrane Proteins; CA1 Region, Hippocampal; Receptors, Metabotropic Glutamate; Phosphorylation; Excitatory Postsynaptic Potentials; Phosphoserine; Methoxyhydroxyphenylglycol; Receptors, AMPA; Drug Evaluation, Preclinical; Male
Cavallucci, V., Berretta, N., Nobili, A., Nistico', R.g., Mercuri, N.b., D'Amelio, M. (2013). Calcineurin inhibition rescues early synaptic plasticity deficits in a mouse model of Alzheimer's disease. NEUROMOLECULAR MEDICINE, 15(3), 541-548 [10.1007/s12017-013-8241-2].
Cavallucci, V; Berretta, N; Nobili, A; Nistico', Rg; Mercuri, Nb; D'Amelio, M
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/101303
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