Vajda Tamás, Perczel András
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Biomol Concepts. 2017 Dec 20;8(5-6):213-220. doi: 10.1515/bmc-2017-0027.
The crucial role of water in amyloid-β(Aβ) fibril proteins is evaluated in several ways including the water's thermodynamic and kinetic solvation effects. As regards the water's character, its hindered-rotation barriers are also considered. The following protein molecules considered here are: the Aβ40 (PDB ID: 2LMN), Aβ42 (PDB ID: 5KK3 and 2NAO) and the double-layered Aβ17-42 fibril. We discuss: (i) extracellular Aβ40 and Aβ42 fibril monomers exhibit an ambivalent propensity to transform into a helical form toward the N-term region and a β-strand-like form near the C-terminal; (ii) interfacial water molecules play a crucial role in protein-protein interactions, as molecular dynamics simulations have shown a significant impact on the protein-protein binding; (iii) it is shown that the spontaneous dimerization process of the Aβ42 fibril protein in water occurs via a two-step nucleation-accommodation mechanism; (iv) MD simulations of the double-layered Aβ17-42 fibril model show that the C↔C interface appears more energetically favorable than the N↔N interface due to large hydrophobic contacts; (v) the water's role in the HET-s prion and in the Aβ fibrillar aggregates; (vi) it was found that the monomer-oligomer equilibrium spontaneously dissociates into stable monomeric species when they are incubated up to 3 μm for a longer time (>1 week) in a physiological buffer.
水在淀粉样β蛋白(Aβ)纤维蛋白中的关键作用通过多种方式进行评估,包括水的热力学和动力学溶剂化效应。关于水的性质,还考虑了其受阻旋转势垒。这里所考虑的蛋白质分子有:Aβ40(蛋白质数据银行ID:2LMN)、Aβ42(蛋白质数据银行ID:5KK3和2NAO)以及双层Aβ17 - 42纤维。我们讨论:(i)细胞外Aβ40和Aβ42纤维单体在N端区域有向螺旋形式转变的矛盾倾向,而在C端附近呈β链样形式;(ii)界面水分子在蛋白质 - 蛋白质相互作用中起关键作用,因为分子动力学模拟表明其对蛋白质 - 蛋白质结合有显著影响;(iii)研究表明,Aβ42纤维蛋白在水中的自发二聚化过程通过两步成核 - 容纳机制发生;(iv)双层Aβ17 - 42纤维模型的分子动力学模拟表明,由于大量疏水接触,C↔C界面在能量上比N↔N界面更有利;(v)水在HET - s朊病毒和Aβ纤维状聚集体中的作用;(vi)研究发现,当单体 - 寡聚体平衡在生理缓冲液中以3μm的浓度孵育较长时间(>1周)时,会自发解离为稳定的单体物种。