Ziegler Jan, Sticht Heinrich, Marx Ute C, Müller Wolfgang, Rösch Paul, Schwarzinger Stephan
Lehrstuhl für Biopolymere, Universität Bayreuth, 95447 Bayreuth, Germany.
J Biol Chem. 2003 Dec 12;278(50):50175-81. doi: 10.1074/jbc.M305234200. Epub 2003 Sep 2.
The conversion of prion helix 1 from an alpha-helical into an extended conformation is generally assumed to be an essential step in the conversion of the cellular isoform PrPC of the prion protein to the pathogenic isoform PrPSc. Peptides encompassing helix 1 and flanking sequences were analyzed by nuclear magnetic resonance and circular dichroism. Our results indicate a remarkably high instrinsic helix propensity of the helix 1 region. In particular, these peptides retain significant helicity under a wide range of conditions, such as high salt, pH variation, and presence of organic co-solvents. As evidenced by a data base search, the pattern of charged residues present in helix 1 generally favors helical structures over alternative conformations. Because of its high stability against environmental changes, helix 1 is unlikely to be involved in the initial steps of the pathogenic conformational change. Our results implicate that interconversion of helix 1 is rather representing a barrier than a nucleus for the PrPC-->PrPSc conversion.
朊病毒螺旋1从α-螺旋构象转变为伸展构象通常被认为是朊病毒蛋白的细胞异构体PrPC转变为致病异构体PrPSc的关键步骤。通过核磁共振和圆二色性分析了包含螺旋1及其侧翼序列的肽段。我们的结果表明,螺旋1区域具有非常高的固有螺旋倾向。特别是,这些肽段在多种条件下,如高盐、pH变化和存在有机共溶剂时,仍保留显著的螺旋性。数据库搜索表明,螺旋1中存在的带电荷残基模式通常比其他构象更有利于螺旋结构。由于其对环境变化具有高稳定性,螺旋1不太可能参与致病构象变化的初始步骤。我们的结果表明,螺旋1的相互转化对于PrPC向PrPSc的转化而言,更像是一个障碍而非核心。