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Vesicle-mediated secretion of misfolded prion protein molecules from cyclosporin A-treated cells
Ieshita Pan1, Noa Roitenberg1, Ehud Cohen1
1Department of Biochemistry and Molecular Biology, The Institute for Medical Research Israel-Canada, The Hebrew University School of Medicine, Jerusalem, Israel.
Abstract:
Loss of protein homeostasis is a hazardous situation that jeopardizes cellular functionality and viability. Cells have developed mechanisms that supervise protein integrity and direct misfolded molecules for degradation. Nevertheless, subsets of aggregation-prone proteins escape degradation and form aggregates that can underlie the development of neurodegenerative disorders. In some cases, cells deposit hazardous protein aggregates in designated sites, like aggresomes, or secrete them with vesicles. The prion protein (PrP) is an aggregation-prone, membrane-anchored glycoprotein, whose aggregation causes familial and sporadic, fatal, neurodegenerative diseases. The proper maturation of PrP is assisted by cyclophilin B, an endoplasmic reticulum-resident foldase. Accordingly, the inhibition of cyclophilins by the drug cyclosporin A (CsA) leads to the accumulation of aggregated PrP and to its deposition in aggresomes. In this study, we asked whether secretion is an alternative strategy that cells adopt to get rid of misfolded PrP molecules and found that, upon treatment with CsA, cells secrete PrP by exosomes, a subtype of secretion vesicles, and by additional types of vesicles. CsA-induced, PrP-containing exosomes originate from the endoplasmic reticulum in a Golgi-independent manner. These findings divulge a new cellular response that is activated upon CsA treatment to secrete misfolded PrP species from the cell and may underlie the spreading of toxic prions among cells and across tissues.-Pan, I., Roitenberg, N., Cohen, E. Vesicle-mediated secretion of misfolded prion protein molecules from cyclosporin A-treated cells.
Insights
Cells secrete misfolded prion protein (PrP) via exosomes and other vesicles when treated with cyclosporin A (CsA). This mechanism may explain how toxic prions spread between cells and tissues.
Area of Science:
- Neurobiology
- Cell Biology
- Biochemistry
Background:
- Protein misfolding and aggregation are hallmarks of neurodegenerative diseases.
- The prion protein (PrP) aggregates cause fatal neurodegenerative disorders.
- Cellular mechanisms exist to degrade misfolded proteins, but some escape and form aggregates.
Purpose of the Study:
- To investigate if cells secrete misfolded prion protein (PrP) as a strategy to clear it.
- To determine the mechanism of secretion for misfolded PrP upon inhibition of cyclophilins.
Main Methods:
- Treatment of cells with cyclosporin A (CsA) to inhibit cyclophilins.
- Analysis of PrP secretion pathways, including exosome and vesicle formation.
- Investigating the origin of CsA-induced PrP-containing exosomes.
Main Results:
- Cyclosporin A (CsA) treatment induced the secretion of misfolded prion protein (PrP).
- Cells secreted PrP via exosomes and other vesicle types.
- CsA-induced, PrP-containing exosomes originated from the endoplasmic reticulum independently of the Golgi apparatus.
Conclusions:
- Cells employ vesicle-mediated secretion, including exosomes, to eliminate misfolded prion protein (PrP) when cellular degradation pathways are overwhelmed.
- This newly identified secretion pathway may contribute to the intercellular and inter-tissue spread of toxic prions.
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