Mukherjee Sravasti, Klarenbeek Jeffrey, El Oualid Farid, van den Broek Bram, Jalink Kees
Department of Cell Biology, The Netherlands Cancer Institute, Plesmanlaan 121, Amsterdam 1066CX, the Netherlands.
Swammerdam Institute of Life Sciences, University of Amsterdam, Science Park 904, Amsterdam 1098 XH, the Netherlands.
iScience. 2024 Jun 13;27(7):110268. doi: 10.1016/j.isci.2024.110268. eCollection 2024 Jul 19.
The outcome of cell signaling depends not only on signal strength but also on temporal progression. We use Fluorescence Lifetime Imaging of Resonance Energy Transfer (FLIM/FRET) biosensors to investigate intracellular signaling dynamics. We examined the β1 receptor-G-cAMP signaling axis using both widefield frequency domain FLIM (fdFLIM) and fast confocal time-correlated single photon counting (TCSPC) setups. Unexpectedly, we observed that fdFLIM revealed transient cAMP responses in HeLa and Cos7 cells, contrasting with sustained responses as detected with TCSPC. Investigation revealed no light-induced effects on cAMP generation or breakdown. Rather, folic acid present in the imaging medium appeared to be the culprit, as its excitation with blue light sensitized degradation of β1 agonists. Our findings highlight the impact of subtle phototoxicity on experimental outcomes, advocating confocal TCSPC for reliable analysis of response kinetics and stressing the need for full disclosure of chemical formulations by scientific vendors.
细胞信号传导的结果不仅取决于信号强度,还取决于时间进程。我们使用共振能量转移荧光寿命成像(FLIM/FRET)生物传感器来研究细胞内信号动力学。我们使用宽场频域FLIM(fdFLIM)和快速共聚焦时间相关单光子计数(TCSPC)装置研究了β1受体-G-环磷酸腺苷(cAMP)信号轴。出乎意料的是,我们观察到fdFLIM在HeLa和Cos7细胞中显示出瞬时cAMP反应,这与TCSPC检测到的持续反应形成对比。研究表明,光对cAMP的产生或分解没有影响。相反,成像介质中存在的叶酸似乎是罪魁祸首,因为蓝光激发叶酸会使β1激动剂降解。我们的研究结果突出了细微光毒性对实验结果的影响,提倡使用共聚焦TCSPC进行可靠的反应动力学分析,并强调科学供应商需要充分披露化学配方。