Chao Yu-Jo, Wu Kan, Chang Hsun-Hui, Chien Ming-Jou, Chan Jerry Chun Chung
Department of Chemistry, National Taiwan University No. 1, Section 4, Roosevelt Road Taipei 10617 Taiwan
RSC Adv. 2020 Aug 10;10(49):29510-29515. doi: 10.1039/d0ra04480f. eCollection 2020 Aug 5.
We report that a peptide with the sequence of EGAGAAAAGAGE can have different aggregation states, , amyloid fibrils, peptide bundles, and fractal assembly under different incubation conditions. The chemical state of the Glu residue played a pivotal regulating role in the aggregation behavior of the peptide. The mechanism of the fractal assembly of this peptide has been unraveled as follows. The peptide fragments adopting the beta-sheet conformation are well dispersed in alkaline solution. In the buffer of sodium bicarbonate, peptide rods are formed with considerable structural rigidity at the C- and N-termini. The peptide rods undergo random trajectory in the solution and form a fractal pattern on a two-dimensional surface the diffusion-limited aggregation process.
我们报道,序列为EGAGAAAAGAGE的肽在不同的孵育条件下可呈现不同的聚集状态,即淀粉样原纤维、肽束和分形组装。Glu残基的化学状态在该肽的聚集行为中起关键调节作用。该肽分形组装的机制如下所述。采用β-折叠构象的肽片段在碱性溶液中分散良好。在碳酸氢钠缓冲液中,肽棒在C端和N端形成具有相当结构刚性的结构。肽棒在溶液中经历随机轨迹,并在二维表面上形成分形图案——扩散限制聚集过程。