Life Sciences Center, Institute of Biotechnology, Vilnius University, LT-10257 Vilnius, Lithuania.
Int J Mol Sci. 2021 May 11;22(10):5075. doi: 10.3390/ijms22105075.
Prion protein aggregation into amyloid fibrils is associated with the onset and progression of prion diseases-a group of neurodegenerative amyloidoses. The process of such aggregate formation is still not fully understood, especially regarding their polymorphism, an event where the same type of protein forms multiple, conformationally and morphologically distinct structures. Considering that such structural variations can greatly complicate the search for potential antiamyloid compounds, either by having specific propagation properties or stability, it is important to better understand this aggregation event. We have recently reported the ability of prion protein fibrils to obtain at least two distinct conformations under identical conditions, which raised the question if this occurrence is tied to only certain environmental conditions. In this work, we examined a large sample size of prion protein aggregation reactions under a range of temperatures and analyzed the resulting fibril dye-binding, secondary structure and morphological properties. We show that all temperature conditions lead to the formation of more than one fibril type and that this variability may depend on the state of the initial prion protein molecules.
朊病毒蛋白聚集形成淀粉样纤维与朊病毒病(一组神经退行性淀粉样变)的发病和进展有关。这种聚集形成的过程仍不完全清楚,特别是关于其多态性,即同一种蛋白质形成多种构象和形态不同的结构的事件。考虑到这种结构变化可能极大地增加了寻找潜在抗淀粉样化合物的难度,无论是具有特定的传播特性还是稳定性,因此更好地了解这种聚集事件非常重要。我们最近报道了朊病毒蛋白纤维在相同条件下至少获得两种不同构象的能力,这引发了一个问题,即这种情况是否仅与某些环境条件有关。在这项工作中,我们在一系列温度下检查了大量的朊病毒蛋白聚集反应,并分析了所得纤维的染料结合、二级结构和形态特性。我们表明,所有温度条件都会导致形成不止一种纤维类型,这种可变性可能取决于初始朊病毒蛋白分子的状态。