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Published on: November 19, 2010
Pathologic prion protein infects cells by lipid-raft dependent macropinocytosis
Jehangir S Wadia1, Monica Schaller, R Anthony Williamson
1Department of Cellular and Molecular Medicine, University of California San Diego School of Medicine, La Jolla, California, United States of America.
Abstract:
Transmissible spongiform encephalopathies, including variant-Creutzfeldt-Jakob disease (vCJD) in humans and bovine spongiform encephalopathies in cattle, are fatal neurodegenerative disorders characterized by protein misfolding of the host cellular prion protein (PrP(C)) to the infectious scrapie form (PrP(Sc)). However, the mechanism that exogenous PrP(Sc) infects cells and where pathologic conversion of PrP(C) to the PrP(Sc) form occurs remains uncertain. Here we report that similar to the mechanism of HIV-1 TAT-mediated peptide transduction, processed mature, full length PrP contains a conserved N-terminal cationic domain that stimulates cellular uptake by lipid raft-dependent, macropinocytosis. Inhibition of macropinocytosis by three independent means prevented cellular uptake of recombinant PrP; however, it did not affect recombinant PrP cell surface association. In addition, fusion of the cationic N-terminal PrP domain to a Cre recombinase reporter protein was sufficient to promote both cellular uptake and escape from the macropinosomes into the cytoplasm. Inhibition of macropinocytosis was sufficient to prevent conversion of PrP(C) to the pathologic PrP(Sc) form in N2a cells exposed to strain RML PrP(Sc) infected brain homogenates, suggesting that a critical determinant of PrP(C) conversion occurs following macropinocytotic internalization and not through mere membrane association. Taken together, these observations provide a cellular mechanism that exogenous pathological PrP(Sc) infects cells by lipid raft dependent, macropinocytosis.
Insights
Transmissible spongiform encephalopathies are neurodegenerative diseases caused by prion protein misfolding. This study reveals that prion uptake into cells occurs via macropinocytosis, a key step in prion infection.
Area of Science:
- Neuroscience
- Cell Biology
- Biochemistry
Background:
- Transmissible spongiform encephalopathies (TSEs) like Creutzfeldt-Jakob disease are fatal neurodegenerative disorders.
- TSEs result from the misfolding of cellular prion protein (PrP(C)) into the infectious scrapie form (PrP(Sc)).
- The cellular mechanisms of PrP(Sc) infection and PrP(C) conversion remain unclear.
Purpose of the Study:
- To elucidate the cellular mechanism by which exogenous PrP(Sc) infects cells.
- To determine the cellular location where PrP(C) to PrP(Sc) conversion occurs.
Main Methods:
- Investigated the role of the N-terminal cationic domain of PrP in cellular uptake.
- Utilized macropinocytosis inhibitors to block PrP internalization.
- Employed a Cre recombinase reporter protein fused to the PrP N-terminal domain.
- Assessed PrP(C) to PrP(Sc) conversion in N2a cells exposed to infected brain homogenates.
Main Results:
- The N-terminal cationic domain of PrP mediates cellular uptake via lipid raft-dependent macropinocytosis.
- Inhibition of macropinocytosis prevented PrP internalization but not cell surface binding.
- Fusion protein uptake and cytoplasmic escape were observed.
- Inhibition of macropinocytosis blocked PrP(C) to PrP(Sc) conversion in exposed cells.
Conclusions:
- Exogenous PrP(Sc) infects cells through lipid raft-dependent macropinocytosis.
- PrP(C) conversion to PrP(Sc) critically depends on macropinocytotic internalization, not just membrane association.
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