Title of article :
Prion Protein mPrP[F175A](121–231): Structure and Stability in Solution
Author/Authors :
Barbara Christen، نويسنده , , Simone Hornemann، نويسنده , , Fred F. Damberger، نويسنده , , Kurt Wüthrich، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
7
From page :
496
To page :
502
Abstract :
The three-dimensional structures of prion proteins (PrPs) in the cellular form (PrPC) include a stacking interaction between the aromatic rings of the residues Y169 and F175, where F175 is conserved in all but two so far analyzed mammalian PrP sequences and where Y169 is strictly conserved. To investigate the structural role of F175, we characterized the variant mouse prion protein mPrP[F175A](121–231). The NMR solution structure represents a typical PrPC-fold, and it contains a 310-helical β2–α2 loop conformation, which is well defined because all amide group signals in this loop are observed at 20 °C. With this “rigid‐loop PrPC” behavior, mPrP[F175A](121–231) differs from the previously studied mPrP[Y169A](121–231), which contains a type I β-turn β2–α2 loop structure. When compared to other rigid‐loop variants of mPrP(121–231), mPrP[F175A](121–231) is unique in that the thermal unfolding temperature is lowered by 8 °C. These observations enable further refined dissection of the effects of different single-residue exchanges on the PrPC conformation and their implications for the PrPC physiological function.
Keywords :
variant mouse prion protein , NMR structure , CD spectroscopy , Protein denaturation , transmissible spongiform encephalopathies
Journal title :
Journal of Molecular Biology
Serial Year :
2012
Journal title :
Journal of Molecular Biology
Record number :
1254898
Link To Document :
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