Anselmo Sara, Sancataldo Giuseppe, Vetri Valeria
Dipartimento di Fisica e Chimica - Emilio Segré, Università degli Studi di Palermo, Palermo, Italy.
Biophys Rep (N Y). 2024 Feb 1;4(1):100145. doi: 10.1016/j.bpr.2024.100145. eCollection 2024 Mar 13.
The investigation of amyloid fibril formation is paramount for advancing our understanding of neurodegenerative diseases and for exploring potential correlated therapeutic strategies. Moreover, the self-assembling properties of amyloid fibrils show promise for the development of advanced protein-based biomaterials. Among the methods employed to monitor protein aggregation processes, fluorescence has emerged as a powerful tool. Its exceptional sensitivity enables the detection of early-stage aggregation events that are otherwise challenging to observe. This research underscores the pivotal role of fluorescence analysis, particularly in investigating the aggregation processes of hen egg white lysozyme, a model protein extensively studied for insights into amyloid fibril formation. By combining classical spectroscopies with fluorescence microscopy and by exploiting the fluorescence properties (intensity and lifetime) of the thioflavin T, we were able to noninvasively monitor key and complex molecular aspects of the process. Intriguingly, the fluorescence lifetime imaging-phasor analysis of thioflavin T fluorescence lifetime on structures at different stages of aggregation allowed to decipher the complex fluorescence decay behavior, highlighting that their changes rise from the combination of specific binding to amyloid typical cross- structures and of the rigidity of the molecular environment.
对淀粉样纤维形成的研究对于增进我们对神经退行性疾病的理解以及探索潜在的相关治疗策略至关重要。此外,淀粉样纤维的自组装特性为先进的基于蛋白质的生物材料的开发带来了希望。在用于监测蛋白质聚集过程的方法中,荧光已成为一种强大的工具。其卓越的灵敏度能够检测到早期聚集事件,而这些事件用其他方法很难观察到。本研究强调了荧光分析的关键作用,特别是在研究鸡蛋清溶菌酶的聚集过程中,鸡蛋清溶菌酶是一种被广泛研究以深入了解淀粉样纤维形成的模型蛋白。通过将经典光谱学与荧光显微镜相结合,并利用硫黄素T的荧光特性(强度和寿命),我们能够无创地监测该过程的关键和复杂分子层面。有趣的是,对聚集不同阶段结构上硫黄素T荧光寿命进行荧光寿命成像 - 相量分析,能够解读复杂的荧光衰减行为,突出表明其变化源于与淀粉样典型交叉结构的特异性结合以及分子环境刚性的综合作用。