Reixach N, Crooks E, Ostresh J M, Houghten R A, Blondelle S E
Torrey Pines Institute for Molecular Studies, 3550 General Atomics Court, San Diego, California, 92121, USA.
J Struct Biol. 2000 Jun;130(2-3):247-58. doi: 10.1006/jsbi.2000.4245.
Alzheimer's disease is a progressive neurodegenerative disorder characterized by the deposit of amyloid fibrils in the brain that result from the self-aggregative polymerization of the beta-amyloid peptide (Abeta). Evidence of a direct correlation between the ability of Abeta to form stable aggregates in aqueous solution and its neurotoxicity has been reported. The cytotoxic effects of Abeta have been attributed to the aggregation properties of a domain corresponding to the peptide fragment Abeta25-35. In an effort to generate novel inhibitors of Abeta neurotoxicity and/or aggregation, a mixture-based synthetic combinatorial library composed of 23 375 imidazopyridoindoles was generated and screened for inhibition of Abeta25-35 neurotoxicity toward the rat pheochromocytoma PC-12 cell line. The effect of the identified lead compounds on Abeta25-35 aggregation was then evaluated by means of circular dichroism (CD) and thioflavin-T fluorescence spectroscopy. Their activity against Abeta1-42 neurotoxicity toward the PC-12 cell line was also determined. The most active imidazopyridoindoles inhibited both Abeta25-35 and Abeta1-42 neurotoxicity in the low- to mid-micromolar range. Furthermore, inhibition of the random coil to beta-sheet transition and self-aggregation of Abeta25-35 was observed by CD and fluorescence spectroscopy, supporting the relationship between inhibition of the Abeta aggregation process and neurotoxicity.
阿尔茨海默病是一种进行性神经退行性疾病,其特征是大脑中存在由β-淀粉样肽(Aβ)的自聚集聚合形成的淀粉样纤维沉积物。已有报道表明Aβ在水溶液中形成稳定聚集体的能力与其神经毒性之间存在直接相关性。Aβ的细胞毒性作用归因于与肽片段Aβ25-35相对应的结构域的聚集特性。为了生成新型的Aβ神经毒性和/或聚集抑制剂,构建了一个由23375个咪唑并吡啶吲哚组成的基于混合物的合成组合文库,并筛选其对Aβ25-35对大鼠嗜铬细胞瘤PC-12细胞系神经毒性的抑制作用。然后通过圆二色性(CD)和硫黄素-T荧光光谱法评估所鉴定的先导化合物对Aβ25-35聚集的影响。还测定了它们对Aβ1-42对PC-12细胞系神经毒性的活性。活性最高的咪唑并吡啶吲哚在低至中微摩尔范围内抑制了Aβ25-35和Aβ1-42的神经毒性。此外,通过CD和荧光光谱观察到Aβ25-35从无规卷曲向β-折叠转变和自聚集的抑制,这支持了Aβ聚集过程的抑制与神经毒性之间的关系。