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Plant Physiology 52:93-97 (1973)
© 1973 American Society of Plant Biologists

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Articles

Effects of Filipin and Cholesterol on K+ Movement in Etiolated Stem Cells of Pisum sativum L. 1

Donald L. Hendrix and N. Higinbotham

a Department of Botany, Washington State University, Pullman, Washington 99163

Filipin, a polyene antibiotic known to induce leakage of materials from various cells, depresses K+ and NO3 uptake in etiolated pea epicotyl segments. Filipin concentrations which strongly reduce K+ influx have little effect on efflux; however, high concentrations enhance K+ efflux. Filipin has no effect on respiration rates or cell electropotentials; its action is presumed to be on the cell membranes. Cholesterol, but not a thiol-protecting agent (dithiothreitol), enhances K+ influx and counteracts the inhibition by filipin. Although this effect of cholesterol may be due to an interaction with filipin in the outer solution, there is reason to believe that its major effect is to impart stability to the membrane; filipin is believed to act by interfering with sterol stabilization of phospholipid layers. The predominant native sterols of etiolated pea stem (Pisum sativum L. var. Alaska), which cholesterol probably mimics, are {beta}-sitosterol, campesterol, and stigmasterol.


1 This research was supported by National Science Foundation. Grant GB 19201 to N. H. and a fellowship from the National Defense Education Act Title IV to D. L. H.







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