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Updated: Jun 17, 2026

Preparation of Oligomeric β-amyloid1-42 and Induction of Synaptic Plasticity Impairment on Hippocampal Slices
Published on: July 14, 2010
Inhibition of Abeta aggregation and neurotoxicity by the 39-kDa receptor-associated protein
Megan L Kerr1, Robert Gasperini, Marie E Gibbs
1Department of Biochemistry and Molecular Biology, School of Biomedical Sciences, Monash University, Victoria, Australia.
Abstract:
Aggregation of beta-amyloid protein (Abeta) to form oligomers is considered to be a key step in generating neurotoxicity in the Alzheimer's disease brain. Agents that bind to Abeta and inhibit oligomerization have been proposed as Alzheimer's disease therapeutics. In this study, we investigated the binding of fluorescein-labeled Abeta(1-42) (FluoAbeta(1-42)) to SH-SY5Y neuroblastoma cells and examined the effect of the 39-kDa receptor-associated protein (RAP), on the Abeta cell interaction. FluoAbeta(1-42) bound to the cells in a punctate pattern. Surprisingly, when RAP was added to the incubations, FluoAbeta(1-42) and RAP were found to be co-localized on the cell surface, suggesting that RAP and Abeta may bind to each other. Experiments using the purified proteins confirmed that a RAP-Abeta complex was stable and resistant to sodium dodecyl sulfate. RAP also inhibited Abeta oligomerization. We next examined whether RAP could inhibit the neurotoxic effects of Abeta. Addition of Abeta(1-42) to SH-SY5Y cells caused an increase in intracellular Ca2+ that was inhibited by treatment of the Abeta peptide with RAP. RAP also blocked an Abeta-induced inhibition of long-term memory consolidation in 1-day-old chicks. This study demonstrates that RAP binds to Abeta and is an inhibitor of the neurotoxic effects of Abeta.
Insights
Receptor-associated protein (RAP) binds to beta-amyloid (Abeta) and inhibits its toxic effects. This discovery offers a potential new therapeutic strategy for Alzheimer's disease by preventing Abeta aggregation and neurotoxicity.
Area of Science:
- Neuroscience
- Biochemistry
- Pharmacology
Background:
- Beta-amyloid (Abeta) oligomerization is a critical factor in Alzheimer's disease neurotoxicity.
- Inhibiting Abeta oligomerization is a therapeutic target for Alzheimer's disease.
Purpose of the Study:
- To investigate the interaction between receptor-associated protein (RAP) and Abeta.
- To determine if RAP can inhibit Abeta-induced neurotoxicity.
Main Methods:
- Fluorescently labeled Abeta(1-42) binding to SH-SY5Y neuroblastoma cells.
- Co-localization studies of RAP and Abeta.
- In vitro complex stability assays.
- Assessment of intracellular calcium increase and memory consolidation in response to Abeta and RAP.
Main Results:
- Fluorescently labeled Abeta(1-42) binds to neuroblastoma cells.
- RAP co-localizes with Abeta on the cell surface, indicating binding.
- A stable RAP-Abeta complex is formed.
- RAP inhibits Abeta oligomerization.
- RAP prevents Abeta-induced intracellular calcium increase.
- RAP blocks Abeta-induced inhibition of memory consolidation.
Conclusions:
- Receptor-associated protein (RAP) directly binds to beta-amyloid (Abeta).
- RAP inhibits Abeta oligomerization and its associated neurotoxic effects.
- RAP shows potential as a therapeutic agent for Alzheimer's disease.
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