Refinement of under-determined loops of Human Prion Protein by database-derived distance constraints
- PMID: 20052907
- PMCID: PMC3018887
- DOI: 10.1504/ijdmb.2009.029206
Refinement of under-determined loops of Human Prion Protein by database-derived distance constraints
Abstract
Due to insufficient experimental restraints, a biologically critical loop region in PrP(c) (residues 167-171), which is a potential binding site for Protein X, is under-determined in most mammalian species. Here, we show that by adding information about distance constraints derived from a database of high-resolution protein structures, this under-determined loop as well as other secondary structural elements of the E200K variant of Human Prion Protein (hPrP(c)), a disease-related isoform, can be refined into more realistic structures in the structural ensemble with improved quality and increased accuracy. In particular, the ensemble becomes more compact after the refinement and the percentage of residues in the most favourable region of the Ramachandran diagram is increased to about 90% in the refined structures from the 80% to 85% range in the previously reported structures.
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References
-
- Brown P, Gajdusek DC. The human spongiform encephalopathies: kuru, Creutzfeldt-Jakob disease, and the Gerstmann-Straussler-Scheinker syndrome. Curr Top Microbiol Immunol. 1991;171:1–20. - PubMed
-
- Horwich AL, Weissman JS. Deadly conformations – protein misfolding in prion disease. Cell. 1997;89:499–510. - PubMed
-
- Prusiner SB. Novel proteinaceous infectious particles cause scrapie. Science. 1982;216:136–144. - PubMed
-
- Stahl N, Baldwin MA, Teplow DB, Hood L, Gibson BW, Burlingame AL, Prusiner SB. Structural studies of the scrapie prion protein using mass spectrometry and amino acid sequencing. Biochemistry. 1993;32:1991–2002. - PubMed
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