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Ultrastructural and biochemical studies of the isolated fibrillar component of nucleoli from Novikoff hepatoma ascites cells
Authors:Y Daskal  A W Prestayko  H Busch
Affiliation:Hubrecht Laboratory, International Embryological Institute, Utrecht, The Netherlands
Abstract:Previously we have presented evidence for a direct relationship between post-mitotic new membrane formation and changes in the electrical membrane characteristics during cytokinesis of Xenopus eggs [1, 2]. In the present study the phenomena underlying the hyperpolarization of the electrical membrane potential during cytokinesis were investigated. Total Na+ and K+ contents at the onset of the first and second cleavage were measured independently by flame spectophotometry and by means of ion-selective electrodes. Total Cl? content was measured by the latter method only. The water content was determined from the difference between wet weight and dry weight. 3H2O-influx experiments yielded an independent estimate of the water content (0.737 μl/egg), a rate constant for the influx of 1.412 × 10?3 sec,?1 and a low water permeability of 1.87 × 10?5 cm sec?1. They furthermore revealed the absence of intracellular water compartmentation. The Na+, K+ and Cl? concentrations remained constant during first cleavage at 58.6, 87.3 and 62.6 mM/l cell water, respectively. The membrane potential (Em), the membrane resistance (Rm), and the intracellular ion activities of Na+, K+ and Cl? (aNai, aKi and aCli) were measured simultaneously and continuously during cleavage, using conventional glass microelectrodes and ion-selective microelectrodes. aNai showed an increase from 19.4 to 22.4 mM concomitant with the hyperpolarization of Em and the decline of Rm. aKi and aCli remained constant at 51.4 and 53.1 mM, respectively. From the calculated activity coefficients it was concluded that all Cl? ions were free, whereas 30% of the K+ ions and 60% of the Na+ ions were bound. The influence of changes in the ionic composition of the medium on Em was analysed in the uncleaved egg, in normally cleaving eggs, and in eggs cleaving outside the vitelline membrane. The latter conditions leads to exposure of the whole area of newly formed membrane to the medium. The cell membrane of the uncleaved egg exhibits no permselectivity. In normally cleaving eggs the relative permeability PNaPK was 0.73, while in eggs cleaving outside the vitelline membrane it was 0.19. It was concluded that the changes of Em during cytokinesis are due to the insertion of a part of the newly formed membrane into the cell surface. The K+ permeability of this new membrane is at least five times greater that that of the pre-existing membrane. The possible role of the hyperpolarization of Em in the regulation of the cell cycle is briefly discussed.
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