Transmissible spongiform encephalopathies (TSE) are a group of rare neurodegenerative diseases which include Creutzfeldt-Jakob disease (CJD) in humans, scrapie in sheep, bovine spongiform encephalopathy (BSE) and chronic wasting disease (CWD) in mule deer and elk. TSE infectivity can cross species barriers. The fact that BSE has infected humans in Great Britain and concerns that CWD may act similarly in the US underscores the importance of understanding TSE pathogenesis and developing effective anti-TSE therapeutics. The precise nature of the infectious agent of the TSE diseases is unknown. Susceptibility to infection can be influenced by amino acid homology between a normal host protein (PrP-sen) and the abnormal proteinase K-resistant form of this protein, PrP-res. Formation of PrP-res is closely associated with infectivity and PrP-res has been hypothesized to be the infectious agent in the TSE diseases. An understanding of how this protein is made is critical for our understanding of TSE pathogenesis and for devising therapeutic strategies to prevent its synthesis. My studies address many different aspects of the TSE diseases at both the molecular and pathogenic level. In particular, my laboratory focuses on: 1) determining the molecular basis of TSE strains, 2) precisely defining the different cellular compartments where PrP-res formation occurs, 3) development of effective therapeutic TSE agents, 4) identifying the earliest events which occur during TSE infection, and 5) studying the regions of PrP involved in the species-specific formation of PrP-res. In the last year, we have demonstrated that the amino acid residues in PrP that are important in cross-species formation of PrP-res vary depending upon the species. We have also shown that the compound phthalocyanine tetrasulfonate can act prophylactically and therapeutically against TSE infection and can completely inactivate TSE infectivity in solution. Finally, we have demonstrated that non-neuronal cells are fully susceptible to TSE infection and that the susceptibility of cells to infection can not be predicted based upon PrP-sen expression levels.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Intramural Research (Z01)
Project #
1Z01AI000752-08
Application #
6808823
Study Section
(LPVD)
Project Start
Project End
Budget Start
Budget End
Support Year
8
Fiscal Year
2003
Total Cost
Indirect Cost
Name
Niaid Extramural Activities
Department
Type
DUNS #
City
State
Country
United States
Zip Code
Faris, Robert; Moore, Roger A; Ward, Anne et al. (2017) Mitochondrial Respiration Is Impaired during Late-Stage Hamster Prion Infection. J Virol 91:
Faris, Robert; Moore, Roger A; Ward, Anne et al. (2017) Cellular prion protein is present in mitochondria of healthy mice. Sci Rep 7:41556
Moore, Roger A; Choi, Young Pyo; Head, Mark W et al. (2016) Relative Abundance of apoE and A?1-42 Associated with Abnormal Prion Protein Differs between Creutzfeldt-Jakob Disease Subtypes. J Proteome Res 15:4518-4531
Choi, Young Pyo; Head, Mark W; Ironside, James W et al. (2014) Uptake and degradation of protease-sensitive and -resistant forms of abnormal human prion protein aggregates by human astrocytes. Am J Pathol 184:3299-307
Moore, Roger A; Timmes, Andrew G; Wilmarth, Phillip A et al. (2011) Identification and removal of proteins that co-purify with infectious prion protein improves the analysis of its secondary structure. Proteomics 11:3853-65
Moore, Roger A; Timmes, Andrew; Wilmarth, Phillip A et al. (2010) Comparative profiling of highly enriched 22L and Chandler mouse scrapie prion protein preparations. Proteomics 10:2858-69
Gu, Congying; Shamsi, Shahab A (2010) CEC-atmospheric pressure ionization MS of pesticides using a surfactant-bound monolithic column. Electrophoresis 31:1162-74
McNally, Kristin L; Ward, Anne E; Priola, Suzette A (2009) Cells expressing anchorless prion protein are resistant to scrapie infection. J Virol 83:4469-75
Priola, Suzette A; McNally, Kristin L (2009) The role of the prion protein membrane anchor in prion infection. Prion 3:134-8
Greil, Christopher S; Vorberg, Ina M; Ward, Anne E et al. (2008) Acute cellular uptake of abnormal prion protein is cell type and scrapie-strain independent. Virology 379:284-93

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