Department of Chemistry, Louisana State University, Baton Rouge, Louisiana 70803, USA.
ACS Chem Neurosci. 2010 Sep 15;1(9):608-26. doi: 10.1021/cn100045q. Epub 2010 Jul 8.
Neuronal cytotoxicity observed in Alzheimer's disease (AD) is linked to the aggregation of β-amyloid peptide (Aβ) into toxic forms. Increasing evidence points to oligomeric materials as the neurotoxic species, not Aβ fibrils; disruption or inhibition of Aβ self-assembly into oligomeric or fibrillar forms remains a viable therapeutic strategy to reduce Aβ neurotoxicity. We describe the synthesis and characterization of amyloid aggregation mitigating peptides (AAMPs) whose structure is based on the Aβ "hydrophobic core" Aβ(17-20), with α,α-disubstituted amino acids (ααAAs) added into this core as potential disrupting agents of fibril self-assembly. The number, positional distribution, and side-chain functionality of ααAAs incorporated into the AAMP sequence were found to influence the resultant aggregate morphology as indicated by ex situ experiments using atomic force microscopy (AFM) and transmission electron microscopy (TEM). For instance, AAMP-5, incorporating a sterically hindered ααAA with a diisobutyl side chain in the core sequence, disrupted Aβ(1-40) fibril formation. However, AAMP-6, with a less sterically hindered ααAA with a dipropyl side chain, altered fibril morphology, producing shorter and larger sized fibrils (compared with those of Aβ(1-40)). Remarkably, ααAA-AAMPs caused disassembly of existing Aβ fibrils to produce either spherical aggregates or protofibrillar structures, suggesting the existence of equilibrium between fibrils and prefibrillar structures.
阿尔茨海默病(AD)中观察到的神经元细胞毒性与β-淀粉样肽(Aβ)聚集成有毒形式有关。越来越多的证据表明,低聚物材料是神经毒性物质,而不是 Aβ 纤维;破坏或抑制 Aβ 自组装成低聚物或纤维形式仍然是减少 Aβ 神经毒性的可行治疗策略。我们描述了淀粉样蛋白聚集缓解肽(AAMPs)的合成和表征,其结构基于 Aβ“疏水区”Aβ(17-20),在该核心中加入α,α-二取代氨基酸(ααAAs)作为纤维自组装的潜在破坏剂。整合到 AAMP 序列中的 ααAAs 的数量、位置分布和侧链功能,如原子力显微镜(AFM)和透射电子显微镜(TEM)的体外实验所示,会影响得到的聚集形态。例如,在核心序列中包含位阻较大的二异丁基侧链的ααAA 的 AAMP-5 会破坏 Aβ(1-40)纤维的形成。然而,位阻较小的ααAA 具有二丙基侧链的 AAMP-6 改变了纤维形态,产生更短且更大尺寸的纤维(与 Aβ(1-40)相比)。值得注意的是,ααAA-AAMPs 导致了现有 Aβ 纤维的解体,生成了球形聚集物或原纤维结构,这表明纤维和前纤维结构之间存在平衡。