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Structural attributes of mammalian prion infectivity: Insights from studies with synthetic prions
Qiuye Li1, Fei Wang2, Xiangzhu Xiao1
1From the Departments of Physiology and Biophysics and.
Abstract:
Prion diseases are neurodegenerative disorders that affect many mammalian species. Mammalian prion proteins (PrPs) can misfold into many different aggregates. However, only a small subpopulation of these structures is infectious. One of the major unresolved questions in prion research is identifying which specific structural features of these misfolded protein aggregates are important for prion infectivity in vivo Previously, two types of proteinase K-resistant, self-propagating aggregates were generated from the recombinant mouse prion protein in the presence of identical cofactors. Although these two aggregates appear biochemically very similar, they have dramatically different biological properties, with one of them being highly infectious and the other one lacking any infectivity. Here, we used several MS-based structural methods, including hydrogen-deuterium exchange and hydroxyl radical footprinting, to gain insight into the nature of structural differences between these two PrP aggregate types. Our experiments revealed a number of specific differences in the structure of infectious and noninfectious aggregates, both at the level of the polypeptide backbone and quaternary packing arrangement. In particular, we observed that a high degree of order and stability of β-sheet structure within the entire region between residues ∼89 and 227 is a primary attribute of infectious PrP aggregates examined in this study. By contrast, noninfectious PrP aggregates are characterized by markedly less ordered structure up to residue ∼167. The structural constraints reported here should facilitate development of experimentally based high-resolution structural models of infectiosus mammalian prions.
Insights
Structural differences in prion protein aggregates determine infectivity. Infectious prions show ordered beta-sheet structures, while non-infectious ones are less ordered, aiding future prion disease research.
Area of Science:
- Neuroscience
- Biochemistry
- Structural Biology
Background:
- Prion diseases are fatal neurodegenerative disorders affecting mammals.
- Misfolded prion proteins (PrPs) form aggregates, but only a subset is infectious.
- Key structural features driving prion infectivity remain largely unknown.
Purpose of the Study:
- To identify specific structural differences between infectious and non-infectious prion protein aggregates.
- To elucidate the structural basis of prion infectivity in vivo.
Main Methods:
- Utilized mass spectrometry-based structural techniques.
- Employed hydrogen-deuterium exchange and hydroxyl radical footprinting.
- Compared two recombinant mouse prion protein aggregates with distinct biological properties.
Main Results:
- Identified specific structural variations in polypeptide backbone and quaternary packing.
- Infectious aggregates exhibit high order and stability in beta-sheet structures (residues ~89-227).
- Non-infectious aggregates display less ordered structures up to residue ~167.
Conclusions:
- Ordered and stable beta-sheet structures are crucial for prion infectivity.
- Structural constraints provide insights for high-resolution prion structural models.
- Findings advance understanding of prion disease mechanisms.
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