Effect of Cytoplasmic Ca2+ on the Membrane Potential and Membrane Resistance of Chara Plasmalemma |
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Authors: | L?hring, Hinrich Tazawa, Masashi |
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Affiliation: | Department of Botany, Faculty of Science, University of Tokyo Hongo, Tokyo 113, Japan |
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Abstract: | Effects of cytoplasmic Ca2+ on the electrical properties ofthe plasma membrane were investigated in tonoplast-free cellsof Chara australis that had been internally perfused with media,containing either 1 mM ATP to fuel the electrogenic pump orhexokinase and glucose to deplete the ATP and stop the pump. In the presence of ATP, cytoplasmic Ca2+ up to 2.5?105M did not affect the membrane potential (about -190 mV), butmembrane resistance decreased uniformly with increasing [Ca2+]i.In the absence of ATP, the membrane potential, which was onlyabout -110 mV, was depolarized further by raising [Ca2+]i from1.4?106 to 2.5?105 M. Membrane resistance, whichwas nearly the twofold that of ATP-provided cells, decreasedmarkedly with an increase in [Ca2+]i from zero to 1.38?106M, but showed no change for further increases. Internodal cellsof Nitellopsis obtusa were more sensitive to intracellular Ca2+with respect to membrane potential than were those of Charaaustralis, reconfirming the results obtained by Mimura and Tazawa(1983). The effect of cytoplasmic Ca2+ on the ATP-dependent H+ effluxwas measured. No marked difference in H+ effluxes was detectedbetween zero and 2.5?105 M [Ca2+]i; but, at 104M the ATP-dependent H+ efflux was almost zero. Ca2+ efflux experimentswere done to investigate dependencies on [Ca2+]i and [ATP]i.The efflux was about 1 pmol cm2 s1 at all [Ca2+]iconcentrations tested (1.38?106, 2.5?105, 104M).This value is much higher than the influx reported by Hayamaet al. (1979), and this efflux was independent of [ATP]i. Thepossibility of a Ca2+-extruding pump is discussed. 1 Present address: Botanisches Institut der Universit?t Bonn,Venusbergweg 22, 5300 Bonn, F.R.G. (Received September 22, 1984; Accepted February 19, 1985) |
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