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, Fort Collins, CO, USA.

Insights

Two alpha-synuclein strains, a slower mouse-passaged MSA and faster PFFs, unexpectedly synergized instead of competed. This interaction accelerated neuroinvasion and disease onset in mice, impacting synucleinopathy progression and therapeutic development.

Area of Science:

  • Neuroscience
  • Protein Misfolding Diseases
  • Prion Biology

Background:

  • Synucleinopathies like Lewy body disease (LBD) and multiple system atrophy (MSA) involve misfolded alpha-synuclein forming distinct pathological structures (Lewy bodies or glial cytoplasmic inclusions).
  • The prion strain hypothesis suggests protein conformation dictates disease type, with distinct alpha-synuclein strains identified in LBD and MSA.
  • A novel alpha-synuclein strain was recently found in a Parkinson's disease with dementia patient exhibiting both LB and GCI-like pathology, raising questions about strain interactions.

Purpose of the Study:

  • To investigate if two distinct alpha-synuclein strains can interact within a host and potentially compete.
  • To explore the impact of strain interactions on disease progression and therapeutic strategies for synucleinopathies.
  • To test the hypothesis of strain interference/competition using a mouse model of alpha-synucleinopathy.

Main Methods:

  • Utilized a strain interference superinfection model by inoculating TgM83+/- mice with mouse-passaged MSA (slower strain) via sciatic nerve.
  • Administered recombinant preformed fibrils (PFFs, faster strain) at varying intervals (30%, 45%, 60%) after the initial MSA inoculation.
  • Assessed neuroinvasion, disease onset, and pathological evidence of both strains in the brains of affected mice.

Main Results:

  • Contrary to prion models, the two alpha-synuclein strains exhibited a synergistic effect, accelerating neuroinvasion.
  • Disease onset was significantly shortened in mice co-inoculated with both strains compared to MSA inoculation alone.
  • Brains of terminal mice showed evidence of both PFF and mouse-passaged MSA strains, confirming co-existence and interaction.

Conclusions:

  • Two alpha-synuclein strains can synergize to accelerate disease progression, a novel finding in mixed infection studies.
  • This synergistic interaction has significant implications for understanding synucleinopathy pathogenesis and clinical presentation in patients with co-pathologies.
  • The findings expand the understanding of prion strain biology's role in disease and highlight challenges for developing targeted therapeutics.