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Sci Rep ; 5: 15528, 2015 Oct 22.
Article in English | MEDLINE | ID: mdl-26490404

ABSTRACT

The ß2-α2 loop of PrP(C) is a key modulator of disease-associated prion protein misfolding. Amino acids that differentiate mouse (Ser169, Asn173) and deer (Asn169, Thr173) PrP(C) appear to confer dramatically different structural properties in this region and it has been suggested that amino acid sequences associated with structural rigidity of the loop also confer susceptibility to prion disease. Using mouse recombinant PrP, we show that mutating residue 173 from Asn to Thr alters protein stability and misfolding only subtly, whilst changing Ser to Asn at codon 169 causes instability in the protein, promotes oligomer formation and dramatically potentiates fibril formation. The doubly mutated protein exhibits more complex folding and misfolding behaviour than either single mutant, suggestive of differential effects of the ß2-α2 loop sequence on both protein stability and on specific misfolding pathways. Molecular dynamics simulation of protein structure suggests a key role for the solvent accessibility of Tyr168 in promoting molecular interactions that may lead to prion protein misfolding. Thus, we conclude that 'rigidity' in the ß2-α2 loop region of the normal conformer of PrP has less effect on misfolding than other sequence-related effects in this region.


Subject(s)
Amino Acid Substitution/genetics , Prion Diseases/genetics , Prions/genetics , Proteostasis Deficiencies/genetics , Amino Acid Sequence/genetics , Animals , Deer/genetics , Humans , Mice , Prion Diseases/metabolism , Prion Diseases/pathology , Prions/chemistry , Protein Folding , Protein Stability , Protein Structure, Secondary/genetics , Proteostasis Deficiencies/metabolism , Proteostasis Deficiencies/pathology
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