Gawlitta W, Stockem W, Wehland J, Weber K
Cell Tissue Res. 1980;213(1):9-20. doi: 10.1007/BF00236916.
The dynamics of Ca++ during induced pinocytosis were studied in Amoeba proteus using chlorotetracycline (CTC). The fluorescence of the Ca++ - CTC-complex was monitored by an image intensification system, which has certain advantages over standard equipment: (1) Living cells are not subjected to the damaging influence of intensive microscopic illumination, (2) fluorescent probes are not bleached during observation, and (3) the rapid dynamics of the Ca++ -fluxes can be recorded using short exposure times. The results demonstrate the existence of Ca++ bound to intracellular and extracellular sites of the cell membrane complex in normal locomoting and pinocytotic Amoeba proteus. The application of cations inducing pinocytosis causes a rapid decrease in the external CTC-fluorescence probably due to a release of Ca++ from the mucous layer. The degree of fluorescence intensity is correlated with the capacity of pinocytotic channel formation, i.e., the fluorescence decreases as the number of channels increases. During the phase of vesiculation a distinct fluorescence mainly restricted to the basal region of the channels is observed. Intracellular Ca++ was detected in close vicinity to the plasma membrane after both microinjection and external application of CTC. The internal CTC-fluorescence is slightly decreased during the induction phase of pinocytosis. The observations are in good agreement with previous results on the localization of Ca++ -binding sites at the plasma membrane of Amoeba proteus and demonstrate the important role of Ca++ -fluxes for the process of pinocytosis.
利用氯四环素(CTC)研究了蛋白核变形虫诱导胞饮作用过程中钙离子(Ca++)的动态变化。通过图像增强系统监测Ca++ - CTC复合物的荧光,该系统相对于标准设备具有某些优势:(1)活细胞不会受到强烈显微镜照明的损伤影响;(2)荧光探针在观察过程中不会被漂白;(3)使用短曝光时间可以记录Ca++通量的快速动态变化。结果表明,在正常运动和胞饮的蛋白核变形虫中,细胞膜复合物的细胞内和细胞外位点存在结合的Ca++。诱导胞饮作用的阳离子的应用导致外部CTC荧光迅速降低,这可能是由于Ca++从黏液层释放所致。荧光强度的程度与胞饮通道形成的能力相关,即随着通道数量增加荧光降低。在囊泡形成阶段,观察到明显的荧光,主要局限于通道的基部区域。在微注射和外部应用CTC后,在质膜附近检测到细胞内Ca++。在胞饮作用的诱导阶段,内部CTC荧光略有降低。这些观察结果与先前关于蛋白核变形虫质膜上Ca++结合位点定位的结果高度一致,并证明了Ca++通量在胞饮作用过程中的重要作用。