Abe T, Maeda Y, Iijima T
Biological Institute, Faculty of Science, Tohoku University, Sendai, Japan.
Differentiation. 1988 Dec;39(2):90-6. doi: 10.1111/j.1432-0436.1988.tb00085.x.
In general, calcium has been believed to control a variety of cellular processes as a signal transducer, with a high degree of spatial and temporal precision. For the determination of intracellular free-calcium concentrations [( Ca2+]i), the highly selective Ca2+ indicators, quin2/AM and fura2/AM, have been widely used in many mammalian and plant cells. However, intact cells of the cellular slime mold Dictyostelium discoideum Ax-2 are generally impermeable to externally added drugs, thus resulting in a failure to determine [Ca2+]i. Introduction of quin2/AM and fura2/AM by electroporation allowed us to measure [Ca2+]i in D. discoideum cells. The fluorescence images of fura2-loaded single cells showed that resting [Ca2+]i in vegetative and aggregation-competent cells is around 50 nM. Caffeine (10 mM) gave a transient increase in [Ca2+]i, which illustrated a normal responsive ability of electroporated cells to the externally added stimulus. Application of the chemoattractant, cAMP (20 nM), to aggregation-competent cells induced a rapid increase in [Ca2+]i within 1-2 s, and the [Ca2+]i level increased to about four-fold higher than the resting [Ca2+]i within 30 s of chemotactic stimulation. This was followed by a gradual decrease of [Ca2+]i to the basal level. These results strongly suggest that [Ca2+]i is a primary messenger in signal transduction, particularly during the chemotactic response of Dictyostelium cells.
一般来说,钙被认为作为一种信号转导分子,能够高度精确地控制各种细胞过程。为了测定细胞内游离钙浓度[Ca2+]i,高选择性的Ca2+指示剂喹啉-2/AM和fura-2/AM已在许多哺乳动物和植物细胞中广泛使用。然而,细胞黏菌盘基网柄菌Ax-2的完整细胞通常对外源添加的药物不透性,因此无法测定[Ca2+]i。通过电穿孔导入喹啉-2/AM和fura-2/AM使我们能够测量盘基网柄菌细胞中的[Ca2+]i。负载fura-2的单细胞的荧光图像显示,营养细胞和具备聚集能力的细胞中的静息[Ca2+]i约为50 nM。咖啡因(10 mM)使[Ca2+]i瞬时增加,这表明电穿孔细胞对外源添加刺激具有正常的反应能力。向具备聚集能力的细胞施加趋化剂cAMP(20 nM)会在1-2秒内使[Ca2+]i迅速增加,并且在趋化刺激30秒内[Ca2+]i水平增加到比静息[Ca2+]i高约四倍。随后[Ca2+]i逐渐下降至基础水平。这些结果有力地表明,[Ca2+]i是信号转导中的主要信使,特别是在盘基网柄菌细胞的趋化反应过程中。