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.
Abstract:
In synucleinopathies, the protein α-synuclein misfolds into Lewy bodies (LBs) in patients with Lewy body disease (LBD) or into glial cytoplasmic inclusions (GCIs) in patients with multiple system atrophy (MSA). The ability of a single misfolded protein to cause disparate diseases is explained by the prion strain hypothesis, which argues that protein conformation is a major determinant of disease. While structural, biochemical, and biological studies show that LBD and MSA patient samples contain distinct α-synuclein strains, we recently reported the unexpected finding of a novel α-synuclein strain in a Parkinson's disease with dementia patient sample containing GCI-like co-pathology along with widespread LB pathology. This finding led us to question if two α-synuclein strains can interact with one another in a patient and, if so, can strain competition occur. Notably, this would not only impact the clinical presentation of disease but would also have profound impacts on successful therapeutic development. To test this possibility, we used the strain interference superinfection model developed in the prion field, in which a slower replicating strain-in this study, mouse-passaged MSA-is used to compete with a faster replicating strain-here, recombinant preformed fibrils (PFFs)-following sciatic nerve (sc.n.) inoculation. Unexpectedly, we found that PFFs generated using the same method differed in their ability to neuroinvade following sc.n. inoculation based on α-synuclein monomer source. Using a PFF preparation that does spread from the periphery, we conducted strain competition studies by first injecting TgM83+/- mice with mouse-passaged MSA into the sc.n. followed by a second injection with PFFs at 30, 45, and 60% of the MSA incubation period. Unlike in the prion field, where the faster replicating strain inhibits the slower strain at the 30 and 45% time points, we found that the two α-synuclein strains exhibited a synergistic effect during neuroinvasion. Notably, disease onset across the three cohorts was shortened compared to MSA inoculation alone, and brains from terminal animals showed evidence of both the PFF and mouse-passaged MSA strains, suggesting the two strains worked together to accelerate neuroinvasion in the mice. These findings have important implications for disease progression in patients with α-synuclein co-pathologies. The finding that two strains can synergize with one another to accelerate the progression of clinical disease represents a novel outcome in mixed infection studies and more broadly expands our understanding of the effect of prion strain biology on disease pathogenesis.
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.
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