Institute of Physics, Vietnam Academy of Science and Technology, 10 Dao Tan, Ba Dinh, Hanoi, Vietnam.
Institute of Research and Development, Duy Tan University, K7/25 Quang Trung, Da Nang, Vietnam.
J Chem Phys. 2017 Sep 14;147(10):105102. doi: 10.1063/1.5001517.
Deciphering the links between amino acid sequence and amyloid fibril formation is key for understanding protein misfolding diseases. Here we use Monte Carlo simulations to study the aggregation of short peptides in a coarse-grained model with hydrophobic-polar (HP) amino acid sequences and correlated side chain orientations for hydrophobic contacts. A significant heterogeneity is observed in the aggregate structures and in the thermodynamics of aggregation for systems of different HP sequences and different numbers of peptides. Fibril-like ordered aggregates are found for several sequences that contain the common HPH pattern, while other sequences may form helix bundles or disordered aggregates. A wide variation of the aggregation transition temperatures among sequences, even among those of the same hydrophobic fraction, indicates that not all sequences undergo aggregation at a presumable physiological temperature. The transition is found to be the most cooperative for sequences forming fibril-like structures. For a fibril-prone sequence, it is shown that fibril formation follows the nucleation and growth mechanism. Interestingly, a binary mixture of peptides of an aggregation-prone and a non-aggregation-prone sequence shows the association and conversion of the latter to the fibrillar structure. Our study highlights the role of a sequence in selecting fibril-like aggregates and also the impact of a structural template on fibril formation by peptides of unrelated sequences.
解析氨基酸序列和淀粉样纤维形成之间的联系是理解蛋白质错误折叠疾病的关键。在这里,我们使用蒙特卡罗模拟来研究短肽在具有疏水-极性 (HP) 氨基酸序列和相关侧链取向的粗粒度模型中的聚集。对于具有不同 HP 序列和不同肽数量的系统,观察到聚集结构和聚集热力学存在显著的异质性。对于包含常见 HPH 模式的几个序列,发现了类似纤维的有序聚集物,而其他序列可能形成螺旋束或无定形聚集物。即使在疏水部分相同的序列中,聚集转变温度也存在广泛的差异,这表明并非所有序列都在假定的生理温度下发生聚集。对于形成类似纤维结构的序列,发现转变最具协同性。对于倾向于形成纤维的序列,表明纤维形成遵循成核和生长机制。有趣的是,具有聚集倾向和非聚集倾向肽的二元混合物显示出后者与纤维结构的缔合和转化。我们的研究强调了序列在选择类似纤维的聚集物中的作用,以及结构模板对无关序列肽形成纤维的影响。