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Prions Ex Vivo: What Cell Culture Models Tell Us about Infectious Proteins
1Deutsches Zentrum für Neurodegenerative Erkrankungen e.V., Sigmund-Freud-Street 25, 53127 Bonn, Germany.
Abstract:
Prions are unconventional infectious agents that are composed of misfolded aggregated prion protein. Prions replicate their conformation by template-assisted conversion of the endogenous prion protein PrP. Templated conversion of soluble proteins into protein aggregates is also a hallmark of other neurodegenerative diseases. Alzheimer's disease or Parkinson's disease are not considered infectious diseases, although aggregate pathology appears to progress in a stereotypical fashion reminiscent of the spreading behavior ofmammalian prions. While basic principles of prion formation have been studied extensively, it is still unclear what exactly drives PrP molecules into an infectious, self-templating conformation. In this review, we discuss crucial steps in the life cycle of prions that have been revealed in ex vivo models. Importantly, the persistent propagation of prions in mitotically active cells argues that cellular processes are in place that not only allow recruitment of cellular PrP into growing prion aggregates but also enable the multiplication of infectious seeds that are transmitted to daughter cells. Comparison of prions with other protein aggregates demonstrates that not all the characteristics of prions are equally shared by prion-like aggregates. Future experiments may reveal to which extent aggregation-prone proteins associated with other neurodegenerative diseases can copy the replication strategies of prions.
Insights
Prions, infectious agents of misfolded prion protein (PrP), replicate by templating. This review explores prion life cycles and propagation in cells, comparing them to other neurodegenerative disease protein aggregates.
Area of Science:
- Neuroscience
- Biochemistry
- Infectious Diseases
Background:
- Prions are unconventional infectious agents formed by misfolded, aggregated prion protein (PrP).
- Prions replicate by templating the conformation of endogenous PrP.
- Protein aggregate formation and stereotypical progression in Alzheimer's and Parkinson's diseases resemble prion spreading but are not infectious.
Purpose of the Study:
- To review crucial steps in the prion life cycle.
- To discuss prion replication mechanisms in ex vivo models.
- To compare prion characteristics with protein aggregates in other neurodegenerative diseases.
Main Methods:
- Review of ex vivo prion models.
- Analysis of prion propagation in mitotically active cells.
- Comparative analysis of prion-like aggregates.
Main Results:
- Cellular processes facilitate PrP recruitment into aggregates and seed multiplication for transmission to daughter cells.
- Prion propagation persists in mitotically active cells.
- Not all characteristics of prions are shared by prion-like aggregates.
Conclusions:
- Understanding prion replication is key to understanding neurodegenerative diseases.
- Further research may elucidate how aggregation-prone proteins in other diseases replicate.
- Cellular mechanisms support prion propagation and transmission.
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