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Originally published in Science Express on 17 October 2002
Science 29 November 2002: Vol. 298. no. 5599, pp. 1785 - 1788
DOI: 10.1126/science.1073619
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Reports
Conversion of PrP to a Self-Perpetuating PrPSc-like Conformation in the Cytosol
Jiyan Ma,1*
Susan Lindquist2
A rare conformation of the prion protein, PrPSc, is
found only in mammals with transmissible prion diseases and represents
either the infectious agent itself or a major component of it. The
mechanism for initiating PrPSc formation is unknown. We
report that PrP retrogradely transported out of the endoplasmic
reticulum produced both amorphous aggregates and a
PrPSc-like conformation in the cytosol. The distribution
between these forms correlated with the rate of appearance in the
cytosol. Once conversion to the PrPSc-like conformation
occurred, it was sustained. Thus, PrP has an inherent capacity to
promote its own conformational conversion in mammalian cells. These
observations might explain the origin of PrPSc.
1 Howard Hughes Medical Institute (HHMI),
University of Chicago, Chicago, IL 60637, USA.
2 Whitehead Institute for Biomedical Research,
Massachusetts Institute of Technology, 9 Cambridge Center, Cambridge,
MA 02142, USA.
*
Present address: Department of Molecular and Cellular
Biochemistry, Ohio State University, Columbus, OH 43210, USA.
To whom correspondence should be addressed. E-mail:
lindquist_admin{at}wi.mit.edu
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- R. Linden, V. R. Martins, M. A. M. Prado, M. Cammarota, I. Izquierdo, and R. R. Brentani (2008)
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- S. Mulugeta, J. A. Maguire, J. L. Newitt, S. J. Russo, A. Kotorashvili, and M. F. Beers (2007)
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| Full Text »
| PDF »
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| Abstract »
| Full Text »
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| Abstract »
| Full Text »
| PDF »
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- S. Tenzer, L. Stoltze, B. Schonfisch, J. Dengjel, M. Muller, S. Stevanovic, H.-G. Rammensee, and H. Schild (2004)
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| Abstract »
| Full Text »
| PDF »
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- R. S. Stewart and D. A. Harris (2003)
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278, 45960-45968
| Abstract »
| Full Text »
| PDF »
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302, 814-818
| Abstract »
| Full Text »
| PDF »
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- X. Roucou, Q. Guo, Y. Zhang, C. G. Goodyer, and A. C. LeBlanc (2003)
J. Biol. Chem.
278, 40877-40881
| Abstract »
| Full Text »
| PDF »
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- H. Kanuka, E. Kuranaga, T. Hiratou, T. Igaki, B. Nelson, H. Okano, and M. Miura (2003)
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100, 11723-11728
| Abstract »
| Full Text »
| PDF »
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- L. Calzolai and R. Zahn (2003)
J. Biol. Chem.
278, 35592-35596
| Abstract »
| Full Text »
| PDF »
- Cytosolic Prion Protein in Neurons.
- A. Mironov Jr, D. Latawiec, H. Wille, E. Bouzamondo-Bernstein, G. Legname, R. A. Williamson, D. Burton, S. J. DeArmond, S. B. Prusiner, and P. J. Peters (2003)
J. Neurosci.
23, 7183-7193
| Abstract »
| Full Text »
| PDF »
- Molecular Distinction between Pathogenic and Infectious Properties of the Prion Protein.
- R. Chiesa, P. Piccardo, E. Quaglio, B. Drisaldi, S. L. Si-Hoe, M. Takao, B. Ghetti, and D. A. Harris (2003)
J. Virol.
77, 7611-7622
| Abstract »
| Full Text »
| PDF »
- The interplay of glycosylation and disulfide formation influences fibrillization in a prion protein fragment.
- C. J. Bosques and B. Imperiali (2003)
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100, 7593-7598
| Abstract »
| Full Text »
| PDF »
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- B. Drisaldi, R. S. Stewart, C. Adles, L. R. Stewart, E. Quaglio, E. Biasini, L. Fioriti, R. Chiesa, and D. A. Harris (2003)
J. Biol. Chem.
278, 21732-21743
| Abstract »
| Full Text »
| PDF »
- Putative functions of PrPC.
- C. I. Lasmezas (2003)
Br. Med. Bull.
66, 61-70
| Abstract »
| Full Text »
| PDF »
- Trafficking, turnover and membrane topology of PrP: Protein function in prion disease.
- D. A Harris (2003)
Br. Med. Bull.
66, 71-85
| Abstract »
| Full Text »
| PDF »
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- P. Hammarstrom, R. L. Wiseman, E. T. Powers, and J. W. Kelly (2003)
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299, 713-716
| Abstract »
| Full Text »
| PDF »
- Neurotoxicity and Neurodegeneration When PrP Accumulates in the Cytosol.
- J. Ma, R. Wollmann, and S. Lindquist (2002)
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298, 1781-1785
| Abstract »
| Full Text »
| PDF »
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