Computational Chemistry Research Group, Ton Duc Thang University, Ho Chi Minh City, Vietnam.
Department of Chemistry, KU Leuven, Celestijnenlaan 200F, B-3001 Leuven, Belgium.
Phys Chem Chem Phys. 2017 Jan 18;19(3):1909-1919. doi: 10.1039/c6cp05511g.
Amyloid beta (Aβ) oligomers are neurotoxic compounds that destroy the brain of Alzheimer's disease patients. Recent studies indicated that the trimer is one of the most cytotoxic forms of low molecular weight Aβ oligomers. As there was limited information about the structure of the Aβ trimer, either by experiment or by computation, we determined in this work the structure of the 3Aβ oligomer for the first time using the temperature replica exchange molecular dynamics simulations in the presence of an explicit solvent. More than 20.0 μs of MD simulations were performed. The probability of the β-content and random coil structure of the solvated trimer amounts to 42 ± 6 and 49 ± 7% which is in good agreement with experiments. Intermolecular interactions in central hydrophobic cores play a key role in stabilizing the oligomer. Intermolecular polar contacts between D23 and residues 24-29 replace the salt bridge D23-K28 to secure the loop region. The hydrophilic region of the N-terminus is maintained by the intermolecular polar crossing contacts H13A-Q15B and H13B-Q15C. The difference in the free energy of binding between the constituting monomers and the others amounts to -36 ± 8 kcal mol. The collision cross section of the representative structures of the trimer was computed to be 1330 ± 47 Å, which is in good agreement with previous experiments.
淀粉样蛋白 β(Aβ)寡聚体是破坏阿尔茨海默病患者大脑的神经毒性化合物。最近的研究表明三聚体是低分子量 Aβ 寡聚体中最具细胞毒性的形式之一。由于通过实验或计算获得的 Aβ三聚体结构的信息有限,我们首次使用含有显溶剂的温度复制交换分子动力学模拟来确定 3Aβ 寡聚体的结构。进行了超过 20.0 μs 的 MD 模拟。β-含量和溶剂化三聚体无规卷曲结构的概率分别为 42±6%和 49±7%,这与实验结果非常吻合。在中央疏水区的分子间相互作用在稳定寡聚体方面起着关键作用。D23 和残基 24-29 之间的分子间极性接触取代 D23-K28 以确保环区。N-末端的亲水区由分子间极性交叉接触 H13A-Q15B 和 H13B-Q15C 维持。构成单体与其他单体之间的结合自由能差为-36±8 kcal mol。计算了三聚体代表性结构的碰撞截面为 1330±47 Å,与先前的实验结果非常吻合。