4.6 Article

Conformational Properties of β-PrP

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JOURNAL OF BIOLOGICAL CHEMISTRY
卷 284, 期 33, 页码 21981-21990

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ELSEVIER
DOI: 10.1074/jbc.M809173200

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  1. Medical Research Council
  2. Biotechnology and Biological Sciences Research Council [B17948] Funding Source: researchfish
  3. Medical Research Council [MC_U123160656, MC_U123170362, MC_U123192748] Funding Source: researchfish
  4. MRC [MC_U123170362, MC_U123160656, MC_U123192748] Funding Source: UKRI

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Prion propagation involves a conformational transition of the cellular form of prion protein (PrPC) to a disease-specific isomer (PrPSc), shifting from a predominantly alpha-helical conformation to one dominated by beta-sheet structure. This conformational transition is of critical importance in understanding the molecular basis for prion disease. Here, we elucidate the conformational properties of a disulfide-reduced fragment of human PrP spanning residues 91-231 under acidic conditions, using a combination of heteronuclear NMR, analytical ultracentrifugation, and circular dichroism. We find that this form of the protein, which similarly to PrPSc, is a potent inhibitor of the 26 S proteasome, assembles into soluble oligomers that have significant beta-sheet content. The monomeric precursor to these oligomers exhibits many of the characteristics of a molten globule intermediate with some helical character in regions that form helices I and III in the PrPC conformation, whereas helix II exhibits little evidence for adopting a helical conformation, suggesting that this region is a likely source of interaction within the initial phases of the transformation to a beta-rich conformation. This precursor state is almost as compact as the folded PrPC structure and, as it assembles, only residues 126-227 are immobilized within the oligomeric structure, leaving the remainder in a mobile, random-coil state.

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