Co-infection with two α-synuclein strains reveals novel synergistic interactions

Sara A M Holec1, Chase R Khedmatgozar1, Shelbe J Schure1

  • 1Department of Microbiology, Immunology, & Pathology and Prion Research Center, Colorado State University, 300 West Lake Street, Fort Collins, CO, 80521, USA.

Acta Neuropathologica
|November 8, 2025
PubMed

Insights

Two alpha-synuclein strains can synergize, accelerating disease progression in synucleinopathies. This interaction, observed in mouse models, reveals a novel outcome in mixed alpha-synuclein infections, impacting Lewy body disease and multiple system atrophy.

Area of Science:

  • Neuroscience
  • Protein Misfolding Diseases
  • Prion Biology

Background:

  • Synucleinopathies like Parkinson's disease involve misfolded alpha-synuclein forming Lewy bodies or glial cytoplasmic inclusions.
  • The prion strain hypothesis suggests protein conformation dictates disease type.
  • Previous work identified a novel alpha-synuclein strain with mixed pathology.

Purpose of the Study:

  • To investigate potential interactions and competition between different alpha-synuclein strains in vivo.
  • To explore if co-infection by alpha-synuclein strains influences disease progression.

Main Methods:

  • Utilized a prion strain interference model in TgM83+/- mice.
  • Inoculated mice with mouse-passaged multiple system atrophy (MSA) strain, followed by recombinant preformed fibrils (PFFs) at varying intervals.
  • Assessed neuroinvasion and disease incubation periods.

Main Results:

  • Alpha-synuclein PFFs showed variable neuroinvasion based on monomer source.
  • Co-inoculation of MSA and PFF strains resulted in a synergistic effect.
  • Observed decreased incubation periods and presence of the MSA strain in the brain.

Conclusions:

  • Two distinct alpha-synuclein strains can synergize to accelerate clinical disease progression.
  • This synergy represents a novel finding in studies of mixed prion-like infections.
  • Findings have implications for understanding the complex pathogenesis of synucleinopathies.