Niino Yusuke, Hotta Kohji, Oka Kotaro
Center for Biosciences and Informatics, School of Fundamental Science and Technology, Keio University, Yokohama, Japan.
PLoS One. 2009 Jun 24;4(6):e6036. doi: 10.1371/journal.pone.0006036.
Fluorescence resonance energy transfer (FRET) between fluorescent proteins is a powerful tool for visualization of signal transduction in living cells, and recently, some strategies for imaging of dual FRET pairs in a single cell have been reported. However, these necessitate alteration of excitation light between two different wavelengths to avoid the spectral overlap, resulting in sequential detection with a lag time. Thus, to follow fast signal dynamics or signal changes in highly motile cells, a single-excitation dual-FRET method should be required. Here we reported this by using four-color imaging with a single excitation light and subsequent linear unmixing to distinguish fluorescent proteins. We constructed new FRET sensors with Sapphire/RFP to combine with CFP/YFP, and accomplished simultaneous imaging of cAMP and cGMP in single cells. We confirmed that signal amplitude of our dual FRET measurement is comparable to of conventional single FRET measurement. Finally, we demonstrated to monitor both intracellular Ca(2+) and cAMP in highly motile cardiac myocytes. To cancel out artifacts caused by the movement of the cell, this method expands the applicability of the combined use of dual FRET sensors for cell samples with high motility.
荧光蛋白之间的荧光共振能量转移(FRET)是用于可视化活细胞中信号转导的强大工具,最近,已经报道了一些在单个细胞中对双FRET对进行成像的策略。然而,这些方法需要在两个不同波长之间改变激发光以避免光谱重叠,从而导致有延迟时间的顺序检测。因此,为了跟踪快速信号动态或高迁移率细胞中的信号变化,需要一种单激发双FRET方法。在这里,我们通过使用单激发光的四色成像和随后的线性解混来区分荧光蛋白来实现这一点。我们构建了新的Sapphire/RFP FRET传感器以与CFP/YFP结合,并完成了单细胞中cAMP和cGMP的同时成像。我们证实,我们的双FRET测量的信号幅度与传统单FRET测量的信号幅度相当。最后,我们展示了在高迁移率心肌细胞中同时监测细胞内Ca(2+)和cAMP的情况。为了消除细胞运动引起的伪影,该方法扩大了双FRET传感器联合用于高迁移率细胞样品的适用性。