首页> 外文期刊>Journal of Microbiological Methods >Determination of intracellular pH in phytoplankton using the fluorescent probe, SNARF, with detection by fluorescence spectroscopy
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Determination of intracellular pH in phytoplankton using the fluorescent probe, SNARF, with detection by fluorescence spectroscopy

机译:荧光探针,荧光探针测定荧光探针,荧光光谱检测测定浮游植物中的细胞内pH

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The maintenance of pH homeostasis is critical for a variety of cellular metabolic processes. Although ocean acidification is likely to influence cellular metabolism and energy balance, the degree to which intracellular pH in phytoplankton differs from the external environment under varying environmental pH levels is not well characterized. While there are numerous existing methods for the determination of intracellular pH in the form of single peak emission (e.g., BCECF) and radioisotopic (e.g., C-14-DMO) indicators for use with phytoplankton, the fluorescent pH indicator seminaphtharhodafluor (SNARF) has not been established as a robust method for measuring in vivo pH in phytoplankton. SNARF has superior accuracy and sensitivity since it exhibits dual emission peaks from a single excitation wavelength and the ratio of the two are related to pH. The use of a ratio limiting variations in fluorescence due to dye loading, photobleaching, and instrument variation; moreover, like other fluorescence-based assays, it does not require the specialized equipment and permits that radioisotopic methods do. As a first step, we tested the performance of SNARF for measuring intracellular pH in vivo in a number of phytoplankton taxa. SNARF detection was accomplished using fluorescence spectroscopy (FS) and laser scanning microscopy (LSM). Since SNARF fluorescence is activated by cleavage of an ester group from the core fluorophore by nonspecific esterases, we measured esterase activity using fluorescein diacetate (FDA) to characterize variability in esterase activity among phytoplankton taxa, with a view towards its influence on assay performance. Esterase activity cell volume; however, there was no indication that enzyme specificity and differences in individual esterase profiles adversely affected SNARF performance in phytoplankton. Assays of intracellular pH using SNARF were comparable to those made with C-14-labeled DMO, an accepted standard method. Thus, SNARF provides robust measurements of intracellular pH in phytoplankton, constituting a useful tool in investigations of the effects of ocean acidification and fluctuations in environmental pH on cellular physiology.
机译:pH稳态的维持对于各种细胞代谢过程至关重要。虽然海洋酸化可能会影响细胞代谢和能量平衡,但在不同的环境pH水平下,浮游植物在浮游植物中的植物pH值不同的程度并不具备很好的表征。虽然存在许多现有方法,用于测定单峰发射(例如,BCECF)和放射性同位素(例如,C-14-DMO)指示剂的细胞内pH的植物,荧光pH指示剂Seminaphtharhodfluor(Snarf)具有未被建立为在浮游植物中测量体内pH的稳健方法。 SNARF具有卓越的精度和灵敏度,因为它具有来自单个激发波长的双发射峰,而两者的比例与pH有关。使用染料负载,光漂白和仪器变化引起的荧光的比率的使用;此外,与其他基于荧光的测定一样,它不需要专门的设备并允许放射性同位素方法。作为第一步,我们测试了Snarf在许多浮游植物的植物中测量体内细胞内pH的性能。使用荧光光谱(FS)和激光扫描显微镜(LSM)完成SNARF检测。由于通过非特异性酯酶通过从核心荧光团切割酯基来激活SNARF荧光,因此使用荧光素二乙酸酯(FDA)测量酯酶活性,以表征浮游植物分类群的酯酶活性的变异,以其对测定性能的影响。酯酶活性细胞体积;然而,没有迹象表明个体酯酶细胞的酶特异性和差异在浮游植物中产生不利影响的患有血吸虫性能。使用Snarf的细胞内pH的测定与用C-14标记的DMO制备的那些可接受的标准方法相当。因此,SNARF在浮游植物中提供细胞内pH的鲁棒测量,构成有用的工具,用于研究海洋酸化和环境pH波动在细胞生理学中的影响。

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