Torres Tedman, Levitus Marcia
Department of Physics, Department of Chemistry and Biochemistry, The Biodesign Institute, Arizona State University, Tempe, Arizona 85287-5601, USA.
J Phys Chem B. 2007 Jun 28;111(25):7392-400. doi: 10.1021/jp070659s. Epub 2007 Jun 5.
Fluorescence correlation spectroscopy (FCS) has recently emerged as a powerful technique to study conformational dynamics of biomolecules, but often its applicability is limited by the difficulty of separating the contributions of kinetics from those due to diffusion. We present a new approach based on the simultaneous analysis of the auto- and cross-correlation functions of the intensities measured in two independent detectors for a donor-acceptor labeled biomolecule. Fluctuations in fluorescence intensity are a consequence of diffusion and the variations in fluorescence resonance energy transfer (FRET) efficiency due to changes in donor-acceptor distance. Although the complete description of the correlation functions requires that diffusion is well-characterized, the ratio of any two correlation functions depends on kinetic parameters only. This provides a means by which kinetic information can be obtained independently of the diffusion contributions. As proof of principle, we reanalyze data obtained in previous work with nucleosomes. In contrast to our previous work, where a donor-only sample was used to characterize diffusion, we now show that the same kinetic information can be obtained from a single experiment with a double-labeled biomolecule. This eliminates not only the need of a reference, but also artifacts associated with changes in the observation volume between measurements.
荧光相关光谱法(FCS)最近已成为研究生物分子构象动力学的一种强大技术,但由于难以区分动力学贡献与扩散贡献,其适用性常常受到限制。我们提出了一种基于同时分析供体 - 受体标记生物分子在两个独立探测器中测量的强度的自相关和互相关函数的新方法。荧光强度的波动是扩散以及由于供体 - 受体距离变化导致的荧光共振能量转移(FRET)效率变化的结果。尽管相关函数的完整描述要求对扩散有很好的表征,但任意两个相关函数的比值仅取决于动力学参数。这提供了一种独立于扩散贡献获取动力学信息的方法。作为原理验证,我们重新分析了先前关于核小体的工作中获得的数据。与我们之前使用仅含供体的样品来表征扩散的工作不同,我们现在表明,从双标记生物分子的单个实验中可以获得相同的动力学信息。这不仅消除了对参考的需求,还消除了与测量之间观察体积变化相关的伪影。