Publication | Open Access
Folding of Prion Protein to Its Native α-Helical Conformation Is under Kinetic Control
230
Citations
17
References
2001
Year
Protein ChemistryBiochemistryProtein AssemblyProtein FoldingNatural SciencesMolecular BiologyConformational StudyConformational TransitionPrion DiseaseProtein MisfoldingProtein EngineeringPrion ProteinMedicineKinetic ControlStructural BiologyLarge Energetic Barrier
The recombinant mouse prion protein (MoPrP) can be folded either to a monomeric alpha-helical or oligomeric beta-sheet-rich isoform. By using circular dichroism spectroscopy and size-exclusion chromatography, we show that the beta-rich isoform of MoPrP is thermodynamically more stable than the native alpha-helical isoform. The conformational transition from the alpha-helical to beta-rich isoform is separated by a large energetic barrier that is associated with unfolding and with a higher order kinetic process related to oligomerization. Under partially denaturing acidic conditions, MoPrP avoids the kinetic trap posed by the alpha-helical isoform and folds directly to the thermodynamically more stable beta-rich isoform. Our data demonstrate that the folding of the prion protein to its native alpha-helical monomeric conformation is under kinetic control.
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