Tattum M Howard, Cohen-Krausz Sara, Thumanu Kanjana, Wharton Christopher W, Khalili-Shirazi Azadeh, Jackson Graham S, Orlova Elena V, Collinge John, Clarke Anthony R, Saibil Helen R
MRC Prion Unit and Department of Neurodegenerative Disease, Institute of Neurology, University College London, Queen Square, London WC1N 3BG, UK.
J Mol Biol. 2006 Mar 31;357(3):975-85. doi: 10.1016/j.jmb.2006.01.052. Epub 2006 Jan 31.
In prion diseases, the mammalian prion protein PrP is converted from a monomeric, mainly alpha-helical state into beta-rich amyloid fibrils. To examine the structure of the misfolded state, amyloid fibrils were grown from a beta form of recombinant mouse PrP (residues 91-231). The beta-PrP precursors assembled slowly into amyloid fibrils with an overall helical twist. The fibrils exhibit immunological reactivity similar to that of ex vivo PrP Sc. Using electron microscopy and image processing, we obtained three-dimensional density maps of two forms of PrP fibrils with slightly different twists. They reveal two intertwined protofilaments with a subunit repeat of approximately 60 A. The repeating unit along each protofilament can be accounted for by elongated oligomers of PrP, suggesting a hierarchical assembly mechanism for the fibrils. The structure reveals flexible crossbridges between the two protofilaments, and subunit contacts along the protofilaments that are likely to reflect specific features of the PrP sequence, in addition to the generic, cross-beta amyloid fold.
在朊病毒疾病中,哺乳动物朊病毒蛋白PrP从单体的、主要为α螺旋状态转变为富含β片层的淀粉样纤维。为了研究错误折叠状态的结构,从重组小鼠PrP(残基91 - 231)的β形式生长出淀粉样纤维。β-PrP前体缓慢组装成具有整体螺旋扭曲的淀粉样纤维。这些纤维表现出与体内PrP Sc相似的免疫反应性。利用电子显微镜和图像处理技术,我们获得了两种具有略有不同扭曲的PrP纤维形式的三维密度图。它们揭示了两条相互缠绕的原纤维,亚基重复距离约为60埃。沿着每条原纤维的重复单元可以由PrP的伸长寡聚体来解释,这表明纤维存在分级组装机制。该结构揭示了两条原纤维之间的柔性交联桥,以及沿着原纤维的亚基接触,除了通用的交叉β淀粉样折叠外,这些接触可能反映了PrP序列的特定特征。