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.

Journal of Neurochemistry
|December 17, 2009
PubMed

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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