Department of Chemical Sciences, Bose Institute, Unified Academic Campus, Salt Lake, EN 80, Kolkata 700 091, India.
Department of Biological Sciences, Bose Institute, Unified Academic Campus, Salt Lake, EN 80, Kolkata 700 091, India.
Biochemistry. 2024 Oct 1;63(19):2397-2413. doi: 10.1021/acs.biochem.4c00371. Epub 2024 Sep 10.
Amyloidosis of amyloid-β (Aβ) triggers a cascade of events, leading to oxidative damage and neuronal death. Therefore, inhibiting Aβ amyloidosis or disrupting the matured fibrils is the primary target to combat progressive Alzheimer's disease (AD) pathogenesis. Here, we undertake optimization strategies to improve the antiamyloid efficiency of our previously reported NF11 (NAVRWSLMRPF) peptide. Among the series of peptides tested, nontoxic and serum-stable peptide 1 or P1 containing an anthranilic acid residue shows immense potential in not only inhibiting the Aβ42 amyloid formation but also disrupting the mature Aβ42 fibrils into nontoxic small molecular weight soluble species. Our studies provide high-resolution characterization of the peptide's mechanism of action. With a binding affinity within the micromolar range for both the monomer and aggregated Aβ42, this α/β hybrid peptide can efficiently modulate Aβ amyloidosis while facilitating the clearance of toxic aggregates and enforcing protection from apoptosis. Thus, our studies highlight that incorporating a β-amino acid not only imparts protection from proteolytic degradation and improved stability but also functions effectively as a β breaker, redirecting the aggregation kinetics toward off-pathway fibrillation.
淀粉样蛋白-β(Aβ)的淀粉样变性引发了一系列事件,导致氧化损伤和神经元死亡。因此,抑制 Aβ 淀粉样变性或破坏成熟纤维是对抗进行性阿尔茨海默病(AD)发病机制的主要目标。在这里,我们采用优化策略来提高我们之前报道的 NF11(NAVRWSLMRPF)肽的抗淀粉样效率。在测试的一系列肽中,含有邻氨基苯甲酸残基的无毒且血清稳定的肽 1 或 P1 不仅在抑制 Aβ42 淀粉样形成方面显示出巨大的潜力,而且还可以将成熟的 Aβ42 纤维转化为无毒的小分子可溶性物质。我们的研究提供了该肽作用机制的高分辨率特征。该 α/β 杂合肽对单体和聚集的 Aβ42 的结合亲和力均在微摩尔范围内,可有效调节 Aβ 淀粉样变性,同时促进有毒聚集体的清除并提供抗细胞凋亡保护。因此,我们的研究强调,引入β-氨基酸不仅可以提供保护免受蛋白水解降解和提高稳定性,而且还可以有效地作为β 断裂剂,将聚集动力学转向非途径纤维化。