CIMUS Biomedical Research Institute and Department of Medical Sciences University of Santiago de Compostela-IDIS, Santiago de Compostela, Spain.
CIC bioGUNE, Derio, Spain.
PLoS Pathog. 2018 Jan 31;14(1):e1006797. doi: 10.1371/journal.ppat.1006797. eCollection 2018 Jan.
Very solid evidence suggests that the core of full length PrPSc is a 4-rung β-solenoid, and that individual PrPSc subunits stack to form amyloid fibers. We recently used limited proteolysis to map the β-strands and connecting loops that make up the PrPSc solenoid. Using high resolution SDS-PAGE followed by epitope analysis, and mass spectrometry, we identified positions ~116/118, 133-134, 141, 152-153, 162, 169 and 179 (murine numbering) as Proteinase K (PK) cleavage sites in PrPSc. Such sites likely define loops and/or borders of β-strands, helping us to predict the threading of the β-solenoid. We have now extended this approach to recombinant PrPSc (recPrPSc). The term recPrPSc refers to bona fide recombinant prions prepared by PMCA, exhibiting infectivity with attack rates of ~100%. Limited proteolysis of mouse and bank vole recPrPSc species yielded N-terminally truncated PK-resistant fragments similar to those seen in brain-derived PrPSc, albeit with varying relative yields. Along with these fragments, doubly N- and C-terminally truncated fragments, in particular ~89/97-152, were detected in some recPrPSc preparations; similar fragments are characteristic of atypical strains of brain-derived PrPSc. Our results suggest a shared architecture of recPrPSc and brain PrPSc prions. The observed differences, in particular the distinct yields of specific PK-resistant fragments, are likely due to differences in threading which result in the specific biochemical characteristics of recPrPSc. Furthermore, recombinant PrPSc offers exciting opportunities for structural studies unachievable with brain-derived PrPSc.
非常确凿的证据表明,全长 PrPSc 的核心是一个 4 股β-螺旋,并且单个 PrPSc 亚基堆叠形成淀粉样纤维。我们最近使用有限的蛋白水解作用来绘制 PrPSc 螺旋的β链和连接环。通过使用高分辨率 SDS-PAGE 进行表位分析,以及质谱分析,我们鉴定出位置116/118、133-134、141、152-153、162、169 和 179(鼠类编号)是 PrPSc 中蛋白酶 K(PK)的切割位点。这些位点可能定义了β链的环和/或边界,帮助我们预测β-螺旋的穿线。我们现在已经将这种方法扩展到重组 PrPSc(recPrPSc)。术语 recPrPSc 是指通过 PMCA 制备的真正重组朊病毒,具有约 100%的感染率。对小鼠和 bank vole recPrPSc 物种的有限蛋白水解产生了 N 端截断的 PK 抗性片段,与脑源性 PrPSc 中观察到的相似,尽管相对产量不同。除了这些片段外,在一些 recPrPSc 制剂中还检测到双 N 和 C 端截断的片段,特别是89/97-152;这些片段是脑源性 PrPSc 中异常株的特征。我们的结果表明,recPrPSc 和脑 PrPSc 朊病毒具有共享的结构。观察到的差异,特别是特定 PK 抗性片段的明显产量差异,可能是由于穿线的差异导致 recPrPSc 的特定生化特征。此外,重组 PrPSc 为使用脑源性 PrPSc 无法实现的结构研究提供了令人兴奋的机会。