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Technique for Intranasal Administration of α-Synuclein Aggregates
Published on: November 8, 2024
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.
Abstract:
Amyloid aggregates of α-synuclein (αS) protein are the predominant species present within the intracellular inclusions called Lewy bodies in Parkinson's disease (PD) patients. Among various aggregates, the low-molecular weight ones broadly ranging between 2 and 30 mers are known to be the primary neurotoxic agents responsible for the impairment of neuronal function. Recent research has indicated that the neurotransmitter dopamine (DA) is one of the key physiological agents promoting and augmenting αS aggregation, which is thought to be a significant event in PD pathologenesis. Specifically, DA is known to induce the formation of soluble oligomers of αS, which in turn are responsible for inducing several important cellular changes leading to cellular toxicity. In this report, we present the generation, isolation, and biophysical characterization of five different dopamine-derived αS oligomers (DSOs) ranging between 3 and 15 mers, corroborating previously published reports. More importantly, we establish that these DSOs are also capable of replication by self-propagation, which leads to the replication of DSOs upon interaction with αS monomers, a process similar to that observed in mammilian prions. In addition, DSOs are also able to cross-propagate amyloid-β (Aβ) aggregates involved in Alzheimer's disease (AD). Interestingly, while self-propagation of DSOs occur with no net gain in protein structure, cross-propagation proceeds with an overall gain in β-sheet conformation. These results implicate the involvement of DSOs in the progression of PD, and, in part, provide a molecular basis for the observed co-existence of AD-like pathology among PD patients.
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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