Department of Chemical and Biological Engineering, University of Wisconsin-Madison, 1415 Engineering Dr., Madison, WI 53706, USA.
Protein Eng Des Sel. 2019 Dec 13;32(2):47-57. doi: 10.1093/protein/gzz016.
β-amyloid oligomers are thought to be the most toxic species formed en route to fibril deposition in Alzheimer's disease. Transthyretin is a natural sequestering agent of β-amyloid oligomers: the binding site to β-amyloid has been traced to strands G/H of the inner β-sheet of transthyretin. A linear peptide, with the same primary sequence as the β-amyloid binding domain on transthyretin, was moderately effective at inhibiting β-amyloid fibril growth. Insertion of a β-turn template and cyclization greatly increased stability against proteolysis and improved efficacy as an amyloid inhibitor. However, the cyclic peptide still contained a significant amount of disorder. Using the Simple Cyclic Peptide Application within ROSETTA as an in silico predictor of cyclic peptide conformation and stability, we investigated putative structural enhancements, including stabilization by disulfide linkages and insertion of a second β-turn template. Several candidates were synthesized and tested for secondary structure and ability to inhibit β-amyloid aggregation. The results demonstrate that cyclization, β-sheet structure and conformational homogeneity are all preferable design features, whereas disulfide bond formation across the two β-strands is not preferable.
β-淀粉样寡聚体被认为是在阿尔茨海默病中形成纤维沉积的最毒物种。转甲状腺素蛋白是β-淀粉样寡聚体的天然隔离剂:β-淀粉样结合位点已被追踪到转甲状腺素蛋白内部β-片层的 G/H 链。具有与转甲状腺素蛋白上β-淀粉样结合域相同一级序列的线性肽在抑制β-淀粉样纤维生长方面具有中等效果。插入β-转角模板和环化大大提高了对蛋白水解的稳定性,并提高了作为淀粉样抑制剂的功效。然而,环肽仍然含有大量的无规卷曲。使用 ROSETTA 中的简单环肽应用程序作为环肽构象和稳定性的计算预测器,我们研究了可能的结构增强,包括通过二硫键连接稳定和插入第二个β-转角模板。合成了几个候选物并测试了它们的二级结构和抑制β-淀粉样蛋白聚集的能力。结果表明,环化、β-片层结构和构象均一性都是更好的设计特征,而跨两个β-链形成二硫键则不是更好的选择。