Betolngar Dahdjim-Benoît, Erard Marie, Pasquier Hélène, Bousmah Yasmina, Diop-Sy Awa, Guiot Elvire, Vincent Pierre, Mérola Fabienne
CNRS, Laboratoire de Chimie Physique, UMR 8000 and Université Paris-Sud, Avenue Jean Perrin 15, 91405, Orsay, France.
Anal Bioanal Chem. 2015 May;407(14):4183-93. doi: 10.1007/s00216-015-8636-z. Epub 2015 Mar 27.
It is generally acknowledged that the popular cyan and yellow fluorescent proteins carried by genetically encoded reporters suffer from strong pH sensitivities close to the physiological pH range. We studied the consequences of these pH responses on the intracellular signals of model Förster resonant energy transfer (FRET) tandems and FRET-based reporters of cAMP-dependent protein kinase activity (AKAR) expressed in the cytosol of living BHK cells, while changing the intracellular pH by means of the nigericin ionophore. Although the simultaneous pH sensitivities of the donor and the acceptor may mask each other in some cases, the magnitude of the perturbations can be very significant, as compared to the functional response of the AKAR biosensor. Replacing the CFP donor by the spectrally identical, but pH-insensitive Aquamarine variant (pK1/2 = 3.3) drastically modifies the biosensor pH response and gives access to the acid transition of the yellow acceptor. We developed a simple model of pH-dependent FRET and used it to describe the expected pH-induced changes in fluorescence lifetime and ratiometric signals. This model qualitatively accounts for most of the observations, but reveals a complex behavior of the cytosolic AKAR biosensor at acid pHs, associated to additional FRET contributions. This study underlines the major and complex impact of pH changes on the signal of FRET reporters in the living cell.
人们普遍认为,基因编码报告基因携带的常用青色和黄色荧光蛋白在接近生理pH范围时具有很强的pH敏感性。我们研究了这些pH响应对活BHK细胞胞质中表达的模型Förster共振能量转移(FRET)串联体和基于FRET的环磷酸腺苷依赖性蛋白激酶活性报告基因(AKAR)的细胞内信号的影响,同时通过尼日利亚菌素离子载体改变细胞内pH。尽管在某些情况下供体和受体的同时pH敏感性可能相互掩盖,但与AKAR生物传感器的功能响应相比,扰动的幅度可能非常显著。用光谱相同但对pH不敏感的海蓝宝石变体(pK1/2 = 3.3)取代CFP供体,会极大地改变生物传感器的pH响应,并能观察到黄色受体的酸性转变。我们开发了一个简单的pH依赖型FRET模型,并用它来描述预期的pH诱导的荧光寿命和比率信号变化。该模型定性地解释了大多数观察结果,但揭示了胞质AKAR生物传感器在酸性pH下的复杂行为,这与额外的FRET贡献有关。这项研究强调了pH变化对活细胞中FRET报告基因信号的重大而复杂的影响。