Abstract

The role of the polymorphism Met or Val in position 129 in the human prion protein is well documented regarding disease susceptibility and clinical manifestations. However, little is known about the molecular background to this phenomenon. We investigated herein the conformational stability, amyloid fibrillation kinetics, and seeding propensity of different 129 mutants, located in β-strand 1 of PrP (Met(129) (WT), M129A, M129V, M129L, M129W, M129P, M129E, M129K, and M129C) in HuPrP(90-231). The mutations M129V, M129L, M129K, and M129C did not affect stability (midpoints of thermal denaturation, T(m) = 65-66 °C), whereas the mutants M129A and M129E and the largest side chain M129W were destabilized by 3-4 °C. The most destabilizing substitution was M129P, which lowered the T(m) by 7.2 °C. All mutants, except for M129C, formed amyloid-like fibrils within hours during fibril formation under near physiological conditions. Fibril-forming mutants showed a sigmoidal kinetic profile and showed shorter lag times during seeding with preformed amyloid fibrils implicating a nucleated polymerization reaction. In the spontaneous reactions, the lag time of fibril formation was rather uniform for the mutants M129A, M129V, and M129L resembling the wild type. When the substituted amino acid had a distinct feature discriminating it from the wild type, such as size (M129W), charge (M129E, M129K), or rotational constraint (M129P), the fibrillation was impeded. M129C did not form ThT/Congo red-positive fibrils, and non-reducing SDS-PAGE of M129C during fibrillation conditions at different time points revealed covalent dimer formation already 15 min after fibrillation reaction initiation. Position 129 appears to be a key site for dictating PrP receptiveness toward recruitment into the amyloid state.

Highlights

  • A polymorphism in position 129 in the human prion protein modulates susceptibility to prion infection and disease phenotype

  • We investigated the conformational stability, amyloid fibrillation kinetics, and seeding propensity of different 129 mutants, located in ␤-strand 1 of prion protein (PrP) (Met129 (WT), M129A, M129V, M129L, M129W, M129P, M129E, M129K, and M129C) in HuPrP(90 –231)

  • Amyloid Fibril Formation of HuPrP 129 Mutants—Previously, we have described in detail that vigorous shaking of natively folded PrP in 2-ml cryotubes induced protein aggregation and amyloidogenesis in physiological buffer at 37 °C [35]

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Summary

Background

A polymorphism in position 129 in the human prion protein modulates susceptibility to prion infection and disease phenotype. The role of the polymorphism Met or Val in position 129 in the human prion protein is well documented regarding disease susceptibility and clinical manifestations. We investigated the conformational stability, amyloid fibrillation kinetics, and seeding propensity of different 129 mutants, located in ␤-strand 1 of PrP (Met129 (WT), M129A, M129V, M129L, M129W, M129P, M129E, M129K, and M129C) in HuPrP(90 –231). Several inherited prion disease-causing point mutations are found in the human PrP gene (PRNP) [2, 3]. The polymorphism in position 129 is associated with a sporadic Creutzfeldt-Jakob disease phenotype and influences the molecular type of prion strains [8]. There is ample evidence that position 129 in PrP is a key site for prion disease susceptibility and most likely for PrP misfolding. The effect of the natural polymorphism at position 129 has been studied in vitro in several studies

The abbreviations used are
EXPERIMENTAL PROCEDURES
RESULTS
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