LeVine H
Department of Neuroscience Pharmacology, Parke-Davis Pharmaceutical Research Division, Warner-Lambert Company, Ann Arbor, Michigan 48106-1047.
Protein Sci. 1993 Mar;2(3):404-10. doi: 10.1002/pro.5560020312.
Thioflavine T (ThT) associates rapidly with aggregated fibrils of the synthetic beta/A4-derived peptides beta(1-28) and beta(1-40), giving rise to a new excitation (ex) (absorption) maximum at 450 nm and enhanced emission (em) at 482 nm, as opposed to the 385 nm (ex) and 445 nm (em) of the free dye. This change is dependent on the aggregated state as monomeric or dimeric peptides do not react, and guanidine dissociation of aggregates destroys the signal. There was no effect of high salt concentrations. Binding to the beta(1-40) is of lower affinity, Kd 2 microM, while it saturates with a Kd of 0.54 microM for beta(1-28). Insulin fibrils converted to a beta-sheet conformation fluoresce intensely with ThT. A variety of polyhydroxy, polyanionic, or polycationic materials fail to interact or impede interaction with the amyloid peptides. This fluorometric technique should allow the kinetic elucidation of the amyloid fibril assembly process as well as the testing of agents that might modulate their assembly or disassembly.
硫黄素T(ThT)能迅速与合成的β/A4衍生肽β(1 - 28)和β(1 - 40)的聚集纤维结合,在450nm处产生一个新的激发(ex)(吸收)最大值,并在482nm处增强发射(em),这与游离染料在385nm(ex)和445nm(em)的情况不同。这种变化取决于聚集状态,因为单体或二聚体肽不会发生反应,而聚集物的胍解离会破坏信号。高盐浓度没有影响。与β(1 - 40)的结合亲和力较低,Kd为2μM,而与β(1 - 28)结合时,Kd为0.54μM时达到饱和。转化为β-折叠构象的胰岛素纤维与ThT强烈荧光。多种多羟基、聚阴离子或聚阳离子材料未能与淀粉样肽相互作用或阻碍其相互作用。这种荧光技术应能对淀粉样纤维组装过程进行动力学阐释,以及测试可能调节其组装或拆解的试剂