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Overexpression of ABCA1 reduces amyloid deposition in the PDAPP mouse model of Alzheimer disease
Suzanne E. Wahrle, Hong Jiang, Maia Parsadanian, Jungsu Kim, Aimin Li, Amanda Knoten, Sanjay Jain, Veronica Hirsch-Reinshagen, Cheryl L. Wellington, Kelly R. Bales, Steven M. Paul, David M. Holtzman
Suzanne E. Wahrle, Hong Jiang, Maia Parsadanian, Jungsu Kim, Aimin Li, Amanda Knoten, Sanjay Jain, Veronica Hirsch-Reinshagen, Cheryl L. Wellington, Kelly R. Bales, Steven M. Paul, David M. Holtzman
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Research Article Neuroscience

Overexpression of ABCA1 reduces amyloid deposition in the PDAPP mouse model of Alzheimer disease

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Abstract

APOE genotype is a major genetic risk factor for late-onset Alzheimer disease (AD). ABCA1, a member of the ATP-binding cassette family of active transporters, lipidates apoE in the CNS. Abca1–/– mice have decreased lipid associated with apoE and increased amyloid deposition in several AD mouse models. We hypothesized that mice overexpressing ABCA1 in the brain would have increased lipidation of apoE-containing lipoproteins and decreased amyloid deposition. To address these hypotheses, we created PrP-mAbca1 Tg mice that overexpress mouse Abca1 throughout the brain under the control of the mouse prion promoter. We bred the PrP-mAbca1 mice to the PDAPP AD mouse model, a transgenic line overexpressing a mutant human amyloid precursor protein. PDAPP/Abca1 Tg mice developed a phenotype remarkably similar to that seen in PDAPP/Apoe–/– mice: there was significantly less amyloid β-peptide (Aβ) deposition, a redistribution of Aβ to the hilus of the dentate gyrus in the hippocampus, and an almost complete absence of thioflavine S–positive amyloid plaques. Analyses of CSF from PrP-mAbca1 Tg mice and media conditioned by PrP-mAbca1 Tg primary astrocytes demonstrated increased lipidation of apoE-containing particles. These data support the conclusions that increased ABCA1-mediated lipidation of apoE in the CNS can reduce amyloid burden and that increasing ABCA1 function may have a therapeutic effect on AD.

Authors

Suzanne E. Wahrle, Hong Jiang, Maia Parsadanian, Jungsu Kim, Aimin Li, Amanda Knoten, Sanjay Jain, Veronica Hirsch-Reinshagen, Cheryl L. Wellington, Kelly R. Bales, Steven M. Paul, David M. Holtzman

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Figure 7

Analysis of apoE-containing lipoprotein particles derived from PrP-mAbca1 line E mice.

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Analysis of apoE-containing lipoprotein particles derived from PrP-mAbca...
(A) CSF (2 μl) from 3-month-old PrP-mAbca1 line E mice was run on a nondenaturing gradient gel, and Western blot analysis for mouse apoE was performed. (B) Media conditioned by primary astrocytes derived from PrP-mAbca1 line E mice was run on a nondenaturing gradient gel, and Western blot analysis for mouse apoE was performed. Samples containing equal amounts of apoE were loaded. (C and D) Primary astrocytes derived from PrP-mAbca1 line E mice secreted apoE-containing lipoprotein particles into the media over 72 hours. Lipoprotein particles in the ACM were separated by size using gel filtration chromatography. The levels of apoE and cholesterol were then measured in the fractions and normalized to total protein in the cell pellet. n = 3 for non-Tg and n = 5 for Tg. (E) The amount of cholesterol and apoE in lipoprotein fractions 20–50 was totaled, and lipoprotein cholesterol was divided by lipoprotein apoE. Two-tailed Student’s t test was performed to evaluate the statistical significance of differences between particles from Tg and non-Tg mice. ****P < 0.0001.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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