Title | Diminished CRE-Induced Plasticity is Linked to Memory Deficits in Familial Alzheimer's Disease Mice. |
Publication Type | Journal Article |
Year of Publication | 2016 |
Authors | Bartolotti, N, Segura, L, Lazarov, O |
Journal | J Alzheimers Dis |
Volume | 50 |
Issue | 2 |
Pagination | 477-89 |
Date Published | 2016 |
ISSN | 1875-8908 |
Keywords | Alzheimer Disease, Animals, Cyclic AMP Response Element-Binding Protein, Disease Models, Animal, Hippocampus, Maze Learning, Memory Disorders, Mice, Neuronal Plasticity, Neurons, Phosphorylation |
Abstract | The mechanism underlying impaired learning and memory in Alzheimer's disease is not fully elucidated. The phosphorylation of cyclic-AMP response element binding protein (pCREB) in the hippocampus is thought to be a critical initiating step in the formation of long-term memories. Here, we tested CRE-driven gene expression following learning in mice harboring the familial Alzheimer's disease-linked APPswe/PS1ΔE9 mutations using CRE-β galactosidase reporter. We show that young adult APPswe/PS1ΔE9 mice exhibit impaired recognition memory and reduced levels of pCREB, and its cofactors CREB binding protein (CBP) and p-300 following a learning task, compared to their wild type littermate counterparts. Impairments in learning-induced activation of CREB in these mice are manifested by reduced CRE-driven gene transcription. Importantly, expression of the CRE-driven immediate early gene, Egr-1 (Zif268) is decreased in the CA1 region of the hippocampus. These studies implicate defective CREB-dependent plasticity in the mechanism underlying learning and memory deficits in Alzheimer's disease. |
DOI | 10.3233/JAD-150650 |
Alternate Journal | J. Alzheimers Dis. |
PubMed ID | 26682682 |
PubMed Central ID | PMC4927858 |
Grant List | R01 AG033570 / AG / NIA NIH HHS / United States AG033570 / AG / NIA NIH HHS / United States |