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影响荧光互相关光谱法定量生物分子相互作用的因素。

Factors affecting the quantification of biomolecular interactions by fluorescence cross-correlation spectroscopy.

机构信息

Department of Chemistry, National University of Singapore, Singapore.

出版信息

Biophys J. 2012 Mar 7;102(5):1174-83. doi: 10.1016/j.bpj.2012.01.040. Epub 2012 Mar 6.

Abstract

Fluorescence cross-correlation spectroscopy (FCCS) is used to determine interactions and dissociation constants (K(d)s) of biomolecules. The determination of a K(d) depends on the accurate measurement of the auto- and cross-correlation function (ACF and CCF) amplitudes. In the case of complete binding, the ratio of the CCF/ACF amplitudes is expected to be 1. However, measurements performed on tandem fluorescent proteins (FPs), in which two different FPs are linked, yield CCF/ACF amplitude ratios of ~0.5 or less for different FCCS schemes. We use single wavelength FCCS and pulsed interleaved excitation FCCS to measure various tandem FPs constituted of different red and green FPs and determine the causes for this suboptimal ratio. The main causes for the reduced CCF/ACF amplitude ratio are differences in observation volumes for the different labels, the existence of dark FPs due to maturation problems, photobleaching, and to a lesser extent Förster (or fluorescence) resonance energy transfer between the labels. We deduce the fraction of nonfluorescent proteins for EGFP, mRFP, and mCherry as well as the differences in observation volumes. We use this information to correct FCCS measurements of the interaction of Cdc42, a small Rho-GTPase, with its effector IQGAP1 in live cell measurements to obtain a label-independent value for the K(d).

摘要

荧光相关光谱(FCCS)用于确定生物分子的相互作用和离解常数(Kd)。Kd 的确定取决于自动相关函数(ACF)和互相关函数(CCF)幅度的准确测量。在完全结合的情况下,CCF/ACF 幅度的比值预计为 1。然而,对于串联荧光蛋白(FPs)的测量,其中两个不同的 FPs 连接在一起,不同的 FCCS 方案得到的 CCF/ACF 幅度比值约为 0.5 或更低。我们使用单波长 FCCS 和脉冲交错激发 FCCS 来测量由不同的红和绿 FPs 构成的各种串联 FPs,并确定导致这种比值不理想的原因。导致 CCF/ACF 幅度比值降低的主要原因是不同标签的观察体积不同、由于成熟问题存在暗 FP、光漂白,以及标签之间的福斯特(或荧光)共振能量转移程度较小。我们推导出了 EGFP、mRFP 和 mCherry 的非荧光蛋白的分数以及观察体积的差异。我们使用此信息来校正活细胞测量中 Cdc42(一种小的 Rho-GTPase)与其效应物 IQGAP1 相互作用的 FCCS 测量值,以获得与标签无关的 Kd 值。

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