
doi: 10.1007/bf02884078
pmid: 6873771
Nystatin-resistant yeast Candida tropicalis was obtained after UV illumination and plating on nystatin-containing media. The mutant contained no ergosterol in the plasma membrane but bound nystatin to a degree similar to that of the wild strain (1.2 vs. 1.5 nmol per mg dry solid). Respiration of the mutant on glucose was reduced by 36% in the presence of 25 microM nystatin. This corresponded to a 25-43% decrease of the uptake of monosaccharides. Transport of amino acids was reduced by nystatin in the mutant by 44-86%, as compared with a 84-95% reduction in the wild strain. The intracellular ATP content was reduced by nystatin equally in the wild strain and in the mutant (by 43 and 47%). Nystatin appears to affect specifically membrane transport processes of nonelectrolytes while both the H+-extruding ATPase and the membrane potential are unaffected.
Membrane Lipids, Nystatin, Ergosterol, Cell Membrane, Biological Transport, Active, Drug Resistance, Microbial, Energy Metabolism, Candida
Membrane Lipids, Nystatin, Ergosterol, Cell Membrane, Biological Transport, Active, Drug Resistance, Microbial, Energy Metabolism, Candida
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