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荧光寿命交叉相关光谱学可在活细胞中解析 EGFR 与其拮抗剂的相互作用。

Fluorescence lifetime cross correlation spectroscopy resolves EGFR and antagonist interaction in live cells.

机构信息

Birck Nanotechnology & Bindley Bioscience Center, Department of Agricultural & Biological Engineering, Purdue University, West Lafayette, Indiana 47906, USA.

出版信息

Anal Chem. 2010 Aug 1;82(15):6415-21. doi: 10.1021/ac101236t.

Abstract

Fluorescence correlation or cross-correlation spectroscopy (FCS or FCCS), a single molecule technique, has the ability to provide highly sensitive information on interaction and dynamics of biomolecules both in vitro and in vivo. However, the inherent drawback of FCS is that species with similar molecular weight could not be differentiated. Although FCCS could resolve this through cross-correlation, it suffers from nonideal confocal volume overlap and spectral cross-talk which limits its application. In this work, we demonstrate for the first time the applicability of fluorescence lifetime correlation spectroscopy (FLCS) to monitor the interaction of an antagonist antibody with the epidermal growth factor receptor (EGFR) in live cells. As a proof of concept, we demonstrate the interaction of Cy5 labeled IgG and Alexa633 labeled anti-IgG using a single laser source (636 nm excitation) in vitro. The autocorrelation functions were separated based on their respective lifetime with a single detector and their K(d) value was determined to be 11 +/- 3 nM. An in vivo application constituting the interaction of EGFR neutralizing antibody labeled with Alexa488 and EGFR-GFP in live HEK293 cells was successfully demonstrated. The binding specificity of EGFR neutralizing antibody was confirmed by fluorescence lifetime cross-correlation measurements and fluorescence lifetime imaging (FLIM). The dissociation constant of this complex was found to be 9.2 +/- 2.7 nM. A quantitative assessment of receptor density calculations show that the density of EGFR significantly decreased, from 540 +/- 64 receptors/microm(2) to 38 +/- 7 receptors/microm(2) upon addition of the neutralizing EGFR antibody, indicating that the antagonist could induce receptor internalization. The demonstrated work not only opens up new opportunities in studying protein-protein interactions in solutions and in live cells but also provide new insights in biology to understand how the antagonists influence EGFR through live cell quantification and imaging.

摘要

荧光相关或交叉相关光谱学(FCS 或 FCCS)是一种单分子技术,具有提供体外和体内生物分子相互作用和动力学的高灵敏度信息的能力。然而,FCS 的固有缺点是无法区分具有相似分子量的物种。尽管 FCCS 可以通过交叉相关来解决这个问题,但它受到非理想共焦体积重叠和光谱串扰的限制,限制了其应用。在这项工作中,我们首次证明了荧光寿命相关光谱学(FLCS)在监测拮抗剂抗体与表皮生长因子受体(EGFR)在活细胞中的相互作用中的适用性。作为概念验证,我们在体外使用单个激光源(636nm 激发)证明了 Cy5 标记的 IgG 和 Alexa633 标记的抗 IgG 的相互作用。自相关函数根据其各自的寿命用单个探测器分离,并且确定其 K(d)值为 11 +/- 3 nM。成功证明了由 Alexa488 标记的 EGFR 中和抗体与活 HEK293 细胞中的 EGFR-GFP 相互作用构成的体内应用。通过荧光寿命交叉相关测量和荧光寿命成像(FLIM)证实了 EGFR 中和抗体的结合特异性。该复合物的离解常数为 9.2 +/- 2.7 nM。受体密度计算的定量评估表明,添加中和 EGFR 抗体后,EGFR 的密度从 540 +/- 64 个受体/μm(2)显著降低至 38 +/- 7 个受体/μm(2),表明拮抗剂可以诱导受体内化。所展示的工作不仅为在溶液中和活细胞中研究蛋白质-蛋白质相互作用开辟了新的机会,而且为通过活细胞定量和成像来理解拮抗剂如何通过活细胞定量和成像来影响 EGFR 提供了新的生物学见解。

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