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November 29, 1993FEBS Letters104 citations

Generation of βA4 from the amyloid protein precursor and fragments thereof

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TDThomas DyrksBayer (Germany)EDElke DyrksHeidelberg UniversityUMU. MönningBayer (Germany)

Key Points

  • This report investigates how beta A4 is generated from the amyloid protein precursor (APP) in Alzheimer's disease.
  • Expression of C-terminal 100 residues of APP (SPA4CT and A4CT) in human neuroblastoma cells.
  • Assessment of inhibition of beta A4 generation using various compounds like brefeldin A and monensin.
  • Comparison of effects from lysosomotropic agents to identify compartmental cleavage mechanisms.
  • Beta A4-like peptide secretion occurs from SPA4CT and A4CT cells.
  • Inhibition of beta A4 generation by brefeldin A and monensin indicates specific compartment involvement.
  • Differential effects of chloroquine and ammonium chloride suggest cleavage operates in distinct cellular compartments.

Abstract

The cellular mechanisms underlying the generation of beta A4 in Alzheimer's disease and its relationship to the normal metabolism of the amyloid protein precursor (APP) are unknown. In this report, we show that expression of the C-terminal 100 residues of APP, with (SPA4CT) or without (A4CT) a signal sequence in the N-terminal position, in human neuroblastoma cells results in secretion of a 4 kDa beta A4-like peptide. In A4CT and SPA4CT expressing SY5Y cells, beta A4 generation could not be inhibited by the lysosomotropic amines chloroquine and ammonium chloride but was inhibited by brefeldin A, monensin and methylamine. The last also selectively inhibits APP secretion in neuroblastoma cells 1. The finding that chloroquine and ammonium chloride inhibit beta A4 generation from full length APP but not from A4CT and SPA4CT are consistent with the assumption that the two cleavages necessary to generate beta A4 operate in two different compartments. Our data suggest the cleavage which generates the C-terminus of beta A4 takes place in the same compartment (late Golgi or endosomal vesicles) in which the APP-secretase operates.

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Cite This Study

Dyrks et al. (1993) studied this question.

synapsesocial.com/papers/6a2081c6a25331481ccd4493https://doi.org/10.1016/0014-5793(93)80446-2
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