Heiple J M, Taylor D L
J Cell Biol. 1980 Sep;86(3):885-90. doi: 10.1083/jcb.86.3.885.
Cytoplasmic pH in single living specimens of Chaos carolinensis is determined microfluorometrically by measuring the ratio of fluorescence intensity of microinjected fluorescein-thiocarbamyl (FTC)-ovalbumin at two different excitation wavelengths. The probe is evenly distributed throughout, and confined to, the cytoplasm, and the fluorescence intensity ratio depends only upon pH. It is independent of pathlength, concentration of probe, divalent cations, and ionic strength. Ratios are calibrated with a standard curve generated in situ by adjusting internal pH of FTC-ovalbumin-containing amebae with weak acid and weak base or by injection of strong buffers. With this technique, the average cytoplasmic pH of freely moving ameba is found to be 6.75 (SD +/- 0.3). The pH of a given spot relative to the morphology of a moving ameba remains fairly constant (+/- 0.05 U), whereas the pH of two different spots in the same cell may differ by as much as 0.4 U, and average pH in different amebae ranges from 6.3 to 7.4, with a suggestion of clustering about pH 6.5 and 6.8. During wound healing, there is a local, transient drop in pH (as great as 0.35 U) at the wound site upon puncture, proportional in extent to the degree of damage. Comparison of tails and advancing pseudopod tips reveals no significant difference in cytoplasmic pH at this level of spatial (50 microns diameter spot) and temporal (1.3 s) resolution. Fluctuations in intracellular pH and/or intracellular free Ca++ may be involved in regulation of cytoplasmic structure and contractility.
通过测量微注射的荧光素 - 硫代氨基甲酰(FTC) - 卵清蛋白在两个不同激发波长下的荧光强度比,用显微荧光测定法测定了单个活的卡罗林游仆虫标本的细胞质pH值。该探针均匀分布于整个细胞质并局限于其中,荧光强度比仅取决于pH值。它与光程、探针浓度、二价阳离子和离子强度无关。通过用弱酸和弱碱调节含FTC - 卵清蛋白的变形虫的内部pH值或注射强缓冲液原位生成标准曲线来校准比值。用这种技术发现自由移动的变形虫的平均细胞质pH值为6.75(标准差±0.3)。相对于移动的变形虫的形态,给定部位的pH值保持相当恒定(±0.05 U),而同一细胞中两个不同部位之间的pH值差异可能高达0.4 U,不同变形虫的平均pH值范围为6.3至7.4,有在pH 6.5和6.8左右聚集的趋势。在伤口愈合过程中,穿刺时伤口部位会出现局部短暂的pH值下降(高达0.35 U),下降程度与损伤程度成正比。在这种空间(直径50微米的点)和时间(1.3秒)分辨率水平下,比较尾部和前进的伪足尖端发现细胞质pH值没有显著差异。细胞内pH值和/或细胞内游离Ca++的波动可能参与细胞质结构和收缩性的调节。