Nascent Aβ42 Fibrillization in Synaptic Endosomes Precedes Plaque Formation in a Mouse Model of Alzheimer's-like

Elizabeth A Eckman1, Dana M Clausen2, Santiago Solé-Domėnech3

  • 1Biomedical Research Institute of New Jersey, Cedar Knolls, New Jersey 07927 pacheco-quinto@brinj.org lizeckman@brinj.org.

Insights

Alzheimer's disease synaptic aggregates form locally within endosomes, not from plaques. Endothelin-converting enzyme 1 (ECE-1) is crucial for clearing amyloid-beta (Aβ) and preventing its aggregation in synapses.

Area of Science:

  • Neuroscience
  • Cell Biology
  • Biochemistry

Background:

  • Amyloid-beta (Aβ) peptide aggregates in synapses are linked to Alzheimer's disease (AD) synaptic loss.
  • The origin of these synaptic Aβ aggregates is unclear, but impaired endosomal proteostasis may initiate their formation.

Purpose of the Study:

  • To identify synaptic compartments where Aβ accumulates.
  • To analyze the role of endothelin-converting enzyme 1 (ECE-1) in synaptic Aβ homeostasis.
  • To investigate the impact of ECE-1 deficiency on Aβ aggregation and degradation within synapses.

Main Methods:

  • Longitudinal analysis of synaptosomes from TgCRND8 APP transgenic mice.
  • Evaluation of partial ECE-1 knockout (KO) in mouse brains and complete ECE1 KO in SH-SY5Y cells.
  • Global inhibition of ECE family members to assess their role in preventing synaptic Aβ accumulation.

Main Results:

  • Synapses accumulate soluble Aβ species before extracellular plaque deposition.
  • Aβ42 becomes insoluble and aggregates within synaptic endosomal vesicles, resembling multivesicular bodies.
  • ECE-1 deficient mice show increased synaptosomal Aβ42, and Aβ42 in TgCRND8 mice becomes resistant to ECE-mediated degradation.

Conclusions:

  • Synaptic Aβ aggregates are produced and form locally within endosomes, independent of amyloid plaques.
  • Endothelin-converting enzyme 1 (ECE-1) plays a key role in controlling nascent Aβ accumulation and fibrillization in endosomes.
  • Aβ overproduction in TgCRND8 mice impairs Aβ42 solubility, hindering ECE-mediated degradation and promoting synaptic aggregation.