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Conditional inactivation of presenilin 1 prevents amyloid accumulation and temporarily rescues contextual and spatial working memory impairments in amyloid precursor protein transgenic mice

Saura, Carlos A. ; Chen, Guiquan ; Malkani, Seema ; Choi, Se Young ; Takahashi, Reisuke H. ; Zhang, Dawei ; Gouras, Gunnar K. LU orcid ; Kirkwood, Alfredo ; Morris, Richard G.M. and Shen, Jie (2005) In The Journal of Neuroscience 25(29). p.6755-6764
Abstract

Accumulation of β-amyloid (Aβ) peptides in the cerebral cortex is considered a key event in the pathogenesis of Alzheimer's disease (AD). Presenilin 1 (PS1) plays an essential role in the γ-secretase cleavage of the amyloid precursor protein (APP) and the generation of Aβ peptides. Reduction of Aβ generation via the inhibition of γ-secretase activity, therefore, has been proposed as a therapeutic approach for AD. In this study, we examined whether genetic inactivation of PS1 in postnatal forebrain-restricted conditional knock-out (PS1 cKO) mice can prevent the accumulation of Aβ peptides and ameliorate cognitive deficits exhibited by an amyloid mouse model that overexpresses human mutant APP. We found that conditional inactivation of... (More)

Accumulation of β-amyloid (Aβ) peptides in the cerebral cortex is considered a key event in the pathogenesis of Alzheimer's disease (AD). Presenilin 1 (PS1) plays an essential role in the γ-secretase cleavage of the amyloid precursor protein (APP) and the generation of Aβ peptides. Reduction of Aβ generation via the inhibition of γ-secretase activity, therefore, has been proposed as a therapeutic approach for AD. In this study, we examined whether genetic inactivation of PS1 in postnatal forebrain-restricted conditional knock-out (PS1 cKO) mice can prevent the accumulation of Aβ peptides and ameliorate cognitive deficits exhibited by an amyloid mouse model that overexpresses human mutant APP. We found that conditional inactivation of PS1 in APP transgenic mice (PS1 cKO;APP Tg) effectively prevented the accumulation of Aβ peptides and formation of amyloid plaques and inflammatory responses, although it also caused an age-related accumulation of C-terminal fragments of APP. Short-term PS1 inactivation in young PS1 cKO;APP Tg mice rescued deficits in contextual fear conditioning and serial spatial reversal learning in a water maze, which were associated with APP Tg mice. Longer-term PS1 inactivation in older PS1 cKO;APP Tg mice, however, failed to rescue the contextual memory and hippocampal synaptic deficits and had a decreasing ameliorative effect on the spatial memory impairment. These results reveal that in vivo reduction of Aβ via the inactivation of PS1 effectively prevents amyloid-associated neuropathological changes and can, but only temporarily, improve cognitive impairments in APP transgenic mice.

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author
; ; ; ; ; ; ; ; and
publishing date
type
Contribution to journal
publication status
published
subject
keywords
β-amyloid, γ-secretase, Alzheimer's disease, Behavior, Mouse, Synaptic plasticity
in
The Journal of Neuroscience
volume
25
issue
29
pages
6755 - 6764
publisher
Society for Neuroscience
external identifiers
  • scopus:22544434621
  • pmid:16033885
ISSN
0270-6474
DOI
10.1523/JNEUROSCI.1247-05.2005
language
English
LU publication?
no
id
b31175f1-da0d-45fb-a89c-3513f8e968d4
date added to LUP
2020-02-20 14:31:34
date last changed
2024-05-29 09:33:10
@article{b31175f1-da0d-45fb-a89c-3513f8e968d4,
  abstract     = {{<p>Accumulation of β-amyloid (Aβ) peptides in the cerebral cortex is considered a key event in the pathogenesis of Alzheimer's disease (AD). Presenilin 1 (PS1) plays an essential role in the γ-secretase cleavage of the amyloid precursor protein (APP) and the generation of Aβ peptides. Reduction of Aβ generation via the inhibition of γ-secretase activity, therefore, has been proposed as a therapeutic approach for AD. In this study, we examined whether genetic inactivation of PS1 in postnatal forebrain-restricted conditional knock-out (PS1 cKO) mice can prevent the accumulation of Aβ peptides and ameliorate cognitive deficits exhibited by an amyloid mouse model that overexpresses human mutant APP. We found that conditional inactivation of PS1 in APP transgenic mice (PS1 cKO;APP Tg) effectively prevented the accumulation of Aβ peptides and formation of amyloid plaques and inflammatory responses, although it also caused an age-related accumulation of C-terminal fragments of APP. Short-term PS1 inactivation in young PS1 cKO;APP Tg mice rescued deficits in contextual fear conditioning and serial spatial reversal learning in a water maze, which were associated with APP Tg mice. Longer-term PS1 inactivation in older PS1 cKO;APP Tg mice, however, failed to rescue the contextual memory and hippocampal synaptic deficits and had a decreasing ameliorative effect on the spatial memory impairment. These results reveal that in vivo reduction of Aβ via the inactivation of PS1 effectively prevents amyloid-associated neuropathological changes and can, but only temporarily, improve cognitive impairments in APP transgenic mice.</p>}},
  author       = {{Saura, Carlos A. and Chen, Guiquan and Malkani, Seema and Choi, Se Young and Takahashi, Reisuke H. and Zhang, Dawei and Gouras, Gunnar K. and Kirkwood, Alfredo and Morris, Richard G.M. and Shen, Jie}},
  issn         = {{0270-6474}},
  keywords     = {{β-amyloid; γ-secretase; Alzheimer's disease; Behavior; Mouse; Synaptic plasticity}},
  language     = {{eng}},
  month        = {{07}},
  number       = {{29}},
  pages        = {{6755--6764}},
  publisher    = {{Society for Neuroscience}},
  series       = {{The Journal of Neuroscience}},
  title        = {{Conditional inactivation of presenilin 1 prevents amyloid accumulation and temporarily rescues contextual and spatial working memory impairments in amyloid precursor protein transgenic mice}},
  url          = {{http://dx.doi.org/10.1523/JNEUROSCI.1247-05.2005}},
  doi          = {{10.1523/JNEUROSCI.1247-05.2005}},
  volume       = {{25}},
  year         = {{2005}},
}