Graduate School of Biotechnology and Environmental Monitoring, Federal University of São Carlos (UFSCar), Campus of Sorocaba, Sorocaba, São Paulo, Brazil.
Photochem Photobiol Sci. 2019 May 15;18(5):1212-1217. doi: 10.1039/c8pp00573g.
Bioluminescence is widely used in biosensors. Firefly luciferase-based bioluminescent sensors are among the most popular ones. Firefly luciferases are pH-sensitive, displaying a large red shift at acidic pH, a property that has been considered undesirable for most applications. Currently, biosensors that can detect intracellular pH are in demand, and some fluorescent biosensors are available. However, pH sensors using bioluminescence have not been used yet. Thus, we decided to harness a firefly luciferase to measure the intracellular pH in mammalian cells. For this purpose, we engineered the luciferase derived from Macrolampis sp2 firefly to localize it on the cytosol or nucleus, in order to observe pH variation in these compartments during biological activities. We first calibrated the emission ratios (R = Igreen/Ired) at different pH values. As expected, we observed a red shift of light emission under acidic conditions when the cells were subjected to different pH conditions in the presence of the K+/H+ ionophore, nigericin. Based on these results, we concluded that this firefly luciferase can be used as a diagnostic tool for measuring the intracellular pH variation in pathogenic cells or in cells during apoptosis. This is the first example of real time-monitoring of pH change using color tuning luciferase.
生物发光被广泛应用于生物传感器中。基于萤火虫荧光素酶的生物发光传感器是其中最受欢迎的一种。萤火虫荧光素酶对 pH 值敏感,在酸性 pH 值下会发生较大的红移,这一特性在大多数应用中被认为是不理想的。目前,人们对能够检测细胞内 pH 值的生物传感器有需求,一些荧光生物传感器也已经面世。然而,使用生物发光的 pH 传感器尚未得到应用。因此,我们决定利用萤火虫荧光素酶来测量哺乳动物细胞内的 pH 值。为此,我们对来自 Macrolampis sp2 萤火虫的荧光素酶进行了工程改造,将其定位于细胞质或细胞核内,以便在生物活性过程中观察这些隔室内 pH 值的变化。我们首先在不同 pH 值下对发射比(R = Igreen/Ired)进行了校准。正如预期的那样,当细胞在存在 K+/H+ 离子载体 Nigericin 的情况下处于不同 pH 值条件下时,我们观察到酸性条件下的光发射发生了红移。基于这些结果,我们得出结论,这种萤火虫荧光素酶可以用作测量病变细胞或细胞凋亡过程中细胞内 pH 值变化的诊断工具。这是首例使用颜色调谐荧光素酶实时监测 pH 值变化的例子。