Beta-amyloid peptide binding protein does not couple to G protein in a heterologous Xenopus expression system

  • J Neurosci Res. 2003 Jul 15;73(2):255-9. doi: 10.1002/jnr.10652.
Yong Lee  1 ,  Deok-Jin Chang ,  Yong-Seok Lee ,  Keun-A Chang ,  Hyoung Kim ,  Jeung-Sook Yoon ,  Seungbok Lee ,  Yoo-Hun Suh ,  Bong-Kiun Kaang
Affiliations
  • 1. National Research Laboratory of Neurobiology, School of Biological Sciences, Seoul National University, Seoul, Korea.
Abstract

Alzheimer's Disease is a neurodegenerative disorder related to the formation of protein aggregates. beta-Amyloid protein (A beta), generated by enzymatic cleavage of amyloid precursor protein (APP), can cause such aggregation, and these aggregates may cause neuronal cell death by inducing Apoptosis. However, A beta-induced intracellular signaling pathways involved in the neuronal death are not well understood. Recently it was shown that A beta aggregates induce neuronal cell death via beta-amyloid peptide-binding protein (BBP), a receptor for A beta in BBP-transfected cells, which is known to be sensitive to pertussis toxin, a G Alpha(i/o) family inhibitor. However, the actual coupling of BBP to the pertussis-sensitive G protein was not demonstrated. In this study, we performed electrophysiological recordings using the two-electrode voltage-clamp technique to test whether human or Drosophila BBPs, singly or in combination with APP, are coupled to a specific type of G protein. Our results suggest that BBP is not directly coupled to G Alpha(i/o), G Alpha(s), or G Alpha(q) proteins and that BBP may need a component other than APP to exert its toxic effect in concert with A beta.