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阿尔茨海默病淀粉样β肽与糖胺聚糖的相互作用对纤维成核和生长的影响。

Interactions of Alzheimer amyloid-beta peptides with glycosaminoglycans effects on fibril nucleation and growth.

作者信息

McLaurin J, Franklin T, Zhang X, Deng J, Fraser P E

机构信息

Centre for Research in Neurodegenerative Diseases, University of Toronto, Ontario, Canada.

出版信息

Eur J Biochem. 1999 Dec;266(3):1101-10. doi: 10.1046/j.1432-1327.1999.00957.x.

Abstract

Proteoglycans and their constituent glycosaminoglycans are associated with all amyloid deposits and may be involved in the amyloidogenic pathway. In Alzheimer's disease, plaques are composed of the amyloid-beta peptide and are associated with at least four different proteoglycans. Using CD spectroscopy, fluorescence spectroscopy and electron microscopy, we examined glycosaminoglycan interaction with the amyloid-beta peptides 1-40 (Abeta40) and 1-42 (Abeta42) to determine the effects on peptide conformation and fibril formation. Monomeric amyloid-beta peptides in trifluoroethanol, when diluted in aqueous buffer, undergo a slow random to amyloidogenic beta sheet transition. In the presence of heparin, heparan sulfate, keratan sulfate or chondroitin sulfates, this transition was accelerated with Abeta42 rapidly adopting a beta-sheet conformation. This was accompanied by the appearance of well-defined amyloid fibrils indicating an enhanced nucleation of Abeta42. Incubation of preformed Abeta42 fibrils with glycosaminoglycans resulted in extensive lateral aggregation and precipitation of the fibrils. The glycosaminoglycans differed in their relative activities with the chondroitin sulfates producing the most pronounced effects. The less amyloidogenic Abeta40 isoform did not show an immediate structural transition that was dependent upon the shielding effect by the phosphate counter ion. Removal or substitution of phosphate resulted in similar glycosaminoglycan-induced conformational and aggregation changes. These findings clearly demonstrate that glycosaminoglycans act at the earliest stage of fibril formation, namely amyloid-beta nucleation, and are not simply involved in the lateral aggregation of preformed fibrils or nonspecific adhesion to plaques. The identification of a structure-activity relationship between amyloid-beta and the different glycosaminoglycans, as well as the condition dependence for glycosaminoglycan binding, are important for the successful development and evaluation of glycosaminoglycan-specific therapeutic interventions.

摘要

蛋白聚糖及其组成的糖胺聚糖与所有淀粉样沉积物相关,可能参与淀粉样蛋白生成途径。在阿尔茨海默病中,斑块由β-淀粉样肽组成,并与至少四种不同的蛋白聚糖相关。我们使用圆二色光谱、荧光光谱和电子显微镜,研究了糖胺聚糖与β-淀粉样肽1-40(Aβ40)和1-42(Aβ42)的相互作用,以确定其对肽构象和纤维形成的影响。三氟乙醇中的单体β-淀粉样肽在用水性缓冲液稀释时,会经历从随机状态到淀粉样生成β-折叠的缓慢转变。在肝素、硫酸乙酰肝素、硫酸角质素或硫酸软骨素存在的情况下,这种转变会加速,Aβ42迅速采用β-折叠构象。同时会出现明确的淀粉样纤维,表明Aβ42的成核增强。将预先形成的Aβ42纤维与糖胺聚糖一起孵育会导致纤维广泛的横向聚集和沉淀。不同的糖胺聚糖其相对活性有所不同,硫酸软骨素产生的影响最为显著。淀粉样生成能力较弱的Aβ40异构体没有表现出依赖于磷酸抗衡离子屏蔽效应的即时结构转变。去除或取代磷酸会导致类似的糖胺聚糖诱导的构象和聚集变化。这些发现清楚地表明,糖胺聚糖在纤维形成的最早阶段即β-淀粉样蛋白成核时起作用,而不仅仅参与预先形成的纤维的横向聚集或与斑块的非特异性粘附。确定β-淀粉样蛋白与不同糖胺聚糖之间的构效关系以及糖胺聚糖结合的条件依赖性,对于成功开发和评估糖胺聚糖特异性治疗干预措施很重要。

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