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Updated: Aug 19, 2026

Isolation of Soluble and Insoluble PrP Oligomers in the Normal Human Brain
Published on: October 3, 2012
Heparan sulfate is a cellular receptor for purified infectious prions
Lior Horonchik1, Salit Tzaban, Olga Ben-Zaken
1Department of Molecular Biology, The Hebrew University-Hadassah Medical School, and Department of Oncology, Hadassah University Hospital, Jerusalem 91120, Israel.
Abstract:
Prions replicate in the host cell by the self-propagating refolding of the normal cell surface protein, PrP(C), into a beta-sheet-rich conformer, PrP(Sc). Exposure of cells to prion-infected material and subsequent endocytosis can sometimes result in the establishment of an infected culture. However, the relevant cell surface receptors have remained unknown. We have previously shown that cellular heparan sulfates (HS) are involved in the ongoing formation of scrapie prion protein (PrP(Sc)) in chronically infected cells. Here we studied the initial steps in the internalization of prions and in the infection of cells. Purified prion "rods" are arguably the purest prion preparation available. The only proteinaceous component of rods is PrP(Sc). Mouse neuroblastoma N2a, hypothalamus GT1-1, and Chinese hamster ovary cells efficiently bound both hamster and mouse prion rods (at 4 degrees C) and internalized them (at 37 degrees C). Treating cells with bacterial heparinase III or chlorate (a general inhibitor of sulfation) strongly reduced both binding and uptake of rods, whereas chondroitinase ABC was inactive. These results suggested that the cell surface receptor of prion rods involves sulfated HS chains. Sulfated glycans inhibited both binding and uptake of rods, probably by competing with the binding of rods to cellular HS. Treatments that prevented endocytosis of rods also prevented the de novo infection of GT1-1 cells when applied during their initial exposure to prions. These results indicate that HS are an essential part of the cellular receptor used both for prion uptake and for cell infection. Cellular HS thus play a dual role in prion propagation, both as a cofactor for PrP(Sc) synthesis and as a receptor for productive prion uptake.
Insights
Cellular heparan sulfates (HS) act as receptors for prion uptake and infection. These sulfated glycans are crucial for both prion internalization and the establishment of infected cell cultures, playing a dual role in prion propagation.
Area of Science:
- Neuroscience
- Cell Biology
- Biochemistry
Background:
- Prions, infectious proteins, cause neurodegenerative diseases by misfolding normal cellular proteins (PrP(C)) into infectious forms (PrP(Sc)).
- The cell surface receptors mediating prion entry and infection have not been identified.
- Previous studies indicated a role for heparan sulfates (HS) in the synthesis of PrP(Sc) in infected cells.
Purpose of the Study:
- To investigate the initial steps of prion internalization and cell infection.
- To identify the cell surface receptors involved in prion binding and uptake.
- To elucidate the role of heparan sulfates in prion cell entry and infection establishment.
Main Methods:
- Utilized purified prion rods, composed solely of PrP(Sc), for experiments.
- Tested binding and internalization of prion rods by various cell lines (N2a, GT1-1, CHO) at different temperatures.
- Enzymatically degraded cell surface molecules using heparinase III and chondroitinase ABC, and inhibited sulfation with chlorate.
Main Results:
- Prion rods efficiently bound to and were internalized by N2a, GT1-1, and CHO cells.
- Treatment with heparinase III or chlorate significantly reduced prion rod binding and uptake.
- Chondroitinase ABC had no effect on prion rod binding or uptake, suggesting HS chains are involved.
- Inhibition of endocytosis prevented de novo infection of cells exposed to prions.
- Sulfated glycans competed with prion rods for binding, further implicating HS.
Conclusions:
- Heparan sulfates (HS) function as essential cell surface receptors for prion uptake.
- HS are critical for the internalization of prions into host cells.
- Cellular HS play a dual role in prion propagation: facilitating PrP(Sc) synthesis and acting as a receptor for productive prion entry.
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