Department of Chemistry, University of Michigan, Ann Arbor, Michigan 48109, USA.
J Phys Chem B. 2010 May 27;114(20):7112-20. doi: 10.1021/jp101496y.
The conformational changes associated with the aggregation of proteins are critical to the understanding of fundamental molecular events involved in early processes of neurodegenerative diseases. A detailed investigation of these processes requires the development of new approaches that allow for sensitive measurements of protein interactions. In this paper, we applied two-photon spectroscopy coupled with time-resolved fluorescence measurements to analyze amyloid peptide interactions through aggregation-dependent concentration effects. Labeled amyloid-beta peptide (TAMRA-Abeta1-42) was used in our investigation, and measurements of two-photon-excited fluorescence of the free and covalently conjugated peptide structure were carried out. The peptide secondary structure was correlated with a short fluorescence lifetime component, and this was associated with intramolecular interactions. Comparison of the fractional occupancy of the fluorescence lifetime measured at different excitation modes demonstrates the high sensitivity of the two-photon method in comparison to one-photon excitation (OPE). These results give strong justification for the development of fluorescence-lifetime-based multiphoton imaging and assays.
与蛋白质聚集相关的构象变化对于理解神经退行性疾病早期过程中涉及的基本分子事件至关重要。这些过程的详细研究需要开发新的方法,以便对蛋白质相互作用进行敏感测量。在本文中,我们应用双光子光谱学结合时间分辨荧光测量来分析通过聚集依赖性浓度效应的淀粉样肽相互作用。我们的研究中使用了标记的淀粉样β肽(TAMRA-Aβ1-42),并进行了自由和共价结合肽结构的双光子激发荧光的测量。肽的二级结构与短荧光寿命分量相关,这与分子内相互作用有关。比较在不同激发模式下测量的荧光寿命的分数占有率表明,与单光子激发(OPE)相比,双光子方法具有很高的灵敏度。这些结果为基于荧光寿命的多光子成像和分析方法的发展提供了有力的依据。