Dopamine-induced α-synuclein oligomers show self- and cross-propagation properties

Matthew S Planchard1, Sarah E Exley, Sarah E Morgan

  • 1Department of Chemistry and Biochemistry, University of Southern Mississippi, Hattiesburg, Mississippi, 39406.

Insights

Dopamine-derived alpha-synuclein oligomers (DSOs) replicate like prions and can propagate amyloid-beta aggregates. These findings suggest DSOs contribute to Parkinson

Area of Science:

  • Neuroscience
  • Protein Misfolding Diseases
  • Biochemistry

Background:

  • Parkinson's disease (PD) is characterized by Lewy bodies, primarily composed of alpha-synuclein (αS) amyloid aggregates.
  • Low-molecular weight αS oligomers (2-30 mers) are key neurotoxic species.
  • Dopamine (DA) promotes αS aggregation, particularly the formation of soluble oligomers linked to cellular toxicity.

Purpose of the Study:

  • To generate, isolate, and characterize dopamine-derived αS oligomers (DSOs).
  • To investigate the self-propagation and cross-propagation capabilities of DSOs.
  • To elucidate the role of DSOs in PD pathogenesis and potential links to Alzheimer's disease (AD).

Main Methods:

  • Generation and isolation of five distinct DSOs (3-15 mers).
  • Biophysical characterization of DSO properties.
  • Assays to assess DSO self-propagation (with αS monomers) and cross-propagation (with amyloid-beta aggregates).

Main Results:

  • Successfully generated and characterized DSOs, confirming previous findings.
  • Demonstrated that DSOs replicate via self-propagation, similar to prions.
  • Showed that DSOs can cross-propagate amyloid-beta aggregates, with self-propagation lacking structural gain but cross-propagation increasing beta-sheet content.

Conclusions:

  • DSOs are capable of prion-like self-propagation and can influence other amyloid pathologies.
  • These findings implicate DSOs in the progression of Parkinson's disease.
  • The study provides a molecular basis for the co-occurrence of AD-like pathology in PD patients.

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