Laboratory of Organic and Medicinal Chemistry, Graduate School of Pharmaceutical Sciences, University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-0033, Japan.
Sci Rep. 2019 Jul 24;9(1):10737. doi: 10.1038/s41598-019-47151-2.
Although multiple hydrophobic, aromatic π-π, and electrostatic interactions are proposed to be involved in amyloid fibril formation, the precise interactions within amyloid structures remain poorly understood. Here, we carried out detailed quantum theory of atoms-in-molecules (QTAIM) analysis to examine the hydrophobic core of amyloid parallel and antiparallel β-sheet structures, and found the presence of multiple inter-strand and intra-strand topological neighborhoods, represented by networks of through-space bond paths. Similar bond paths from side chain to side chain and from side chain to main chain were found in a single β-strand and in di- and tripeptides. Some of these bond-path networks were enhanced upon β-sheet formation. Overall, our results indicate that the cumulative network of weak interactions, including various types of hydrogen bonding (X-H-Y; X, Y = H, C, O, N, S), as well as non-H-non-H bond paths, is characteristic of amyloid β-sheet structure. The present study postulated that the presence of multiple through-space bond-paths, which are local and directional, can coincide with the attractive proximity effect in forming peptide assemblies. This is consistent with a new view of the van der Waals (vdW) interactions, one of the origins of hydrophobic interaction, which is updating to be a directional intermolecular force.
尽管有多种疏水、芳香 π-π 和静电相互作用被认为参与了淀粉样纤维的形成,但淀粉样结构内的确切相互作用仍知之甚少。在这里,我们进行了详细的原子在分子中的量子理论 (QTAIM) 分析,以检查淀粉样平行和反平行 β-折叠结构的疏水性核心,发现存在多个链间和链内拓扑邻域,由贯穿空间键路径网络表示。在单个 β-链和二肽和三肽中发现了来自侧链到侧链和来自侧链到主链的类似键路径。在 β-折叠形成后,其中一些键路径网络得到了增强。总的来说,我们的结果表明,包括各种类型氢键 (X-H-Y; X, Y = H, C, O, N, S) 以及非 H-非 H 键路径在内的弱相互作用的累积网络是淀粉样 β-折叠结构的特征。本研究提出,存在多个局部和定向的贯穿空间键路径可以与肽组装形成中的吸引力近程效应相吻合。这与范德华 (vdW) 相互作用的新观点一致,范德华相互作用是疏水相互作用的起源之一,它正在更新为一种有方向的分子间力。