Calcium ultrastructural localization in Xenopus laevis eggs following activation by pricking or by calcium ionophore A 23187
- 1 February 1984
- journal article
- research article
- Published by Wiley in Journal of Experimental Zoology
- Vol. 229 (2) , 295-308
- https://doi.org/10.1002/jez.1402290215
Abstract
In the egg of Xenopus laevis a cortical network of smooth endoplasmic reticulum (SER) surrounds and interconnects each cortical granule (CG) (Campanella and Andreuccetti, '77). This network is a possible intracellular site of calcium storage to be called into action for CG exocytosis. In our experiments, Xenopus eggs, unfertilized or activated by pricking or by calcium ionophore A 23187, have been fixed in osmium-pyroantimonate for calcium localization. Our data show that deposits can be detected only in activated egs. The calcium chelator edetate (EGTA) and x-ray microprobe analysis demonstrate that they contain calcium. Deposits are found on liposomes and on all intraovular cytomembranes, which therefore appear to be possible sites of calcium sequestration. In the case of ionophore-activated eggs, deposits are detectable independently of the presence of extracellular calcium. These data show that in Xenopus at activation an intracellular liberation of calcium occurs similar to that described in other species. Furthermore, the fact that antimony deposits are observed only after activation makes Xenopus eggs appropriate material in which to follow the temporal and spatial sequence of appearance of the deposits during the early stages of activation. Our results show that antimony deposits appear first in SER vesicles between the plasma membrane and CGs and then spread to the rest of the egg cytomembranes. These data corroborate our hypothesis that in Xenopus the cortical SER network is the first intracellular site where calcium is released at activation. The possible mechanism of calcium release and propagation along the egg cortex is discussed.This publication has 37 references indexed in Scilit:
- The modifications of cortical endoplasmic reticulum during in vitro maturation of Xenopus laevis oocytes and its involvement in cortical granule exocytosisJournal of Experimental Zoology, 1984
- Ca2+-sequestering smooth endoplasmic reticulum in an invertebrate photoreceptor. I. Intracellular topography as revealed by OsFeCN staining and in situ Ca accumulation.The Journal of cell biology, 1982
- Direct measurement of intracellular pH changes in Xenopus eggs at fertilization and cleavage.The Journal of cell biology, 1981
- Uptake OF Ca2+ is one of the earliest responses to fertilization of sea urchin eggsJournal of Experimental Zoology, 1978
- The activation of sea urchin eggs by the divalent ionophores A23187 and X-537ABiochemical and Biophysical Research Communications, 1974
- Ionophore A23187, calcium and contractility in frog eggsExperimental Cell Research, 1974
- EFFECTS OF MEDIA OF DIFFERENT IONIC COMPOSITION ON THE ACTIVATION POTENTIAL OF ANURAN EGG CELLSDevelopment, Growth & Differentiation, 1972
- CA2+ uptake, H+ ejection and respiration in sea urchin eggs on fertilizationExperimental Cell Research, 1970
- CORTICAL CHANGES IN GROWING OOCYTES AND IN FERTILIZED OR PRICKED EGGS OF RANA PIPIENS The Journal of cell biology, 1967
- Electrical Characteristics and Activation Potential of Bufo EggsThe Journal of general physiology, 1959