| Literature DB >> 23892077 |
Arpana Dutta1, Shugui Chen, Witold K Surewicz.
Abstract
Recent studies revealed that elk-like S170N/N174T mutation in mouse prion protein (moPrP), which results in an increased rigidity of β2-α2 loop, leads to a prion disease in transgenic mice. Here we characterized the effect of this mutation on biophysical properties of moPrP. Despite similar thermodynamic stabilities of wild type and mutant proteins, the latter was found to have markedly higher propensity to form amyloid fibrils. Importantly, this effect was observed even under fully denaturing conditions, indicating that the increased conversion propensity of the mutant protein is not due to loop rigidity but rather results from greater amyloidogenic potential of the amino acid sequence within the loop region of S170N/N174T moPrP.Entities:
Keywords: Amyloid; GuHCl; PrP; Prion disease; Prion protein; Protein structure; ThT; guanidine hydrochloride; moPrP; mouse prion protein; prion protein; thioflavin T; wild type; wt
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Year: 2013 PMID: 23892077 PMCID: PMC3779884 DOI: 10.1016/j.febslet.2013.07.023
Source DB: PubMed Journal: FEBS Lett ISSN: 0014-5793 Impact factor: 4.124