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Mechanism of pyrithione-induced membrane depolarization in Neurospora crassa

E Ermolayeva1, D Sanders

  • 1Biology Department, University of York, United Kingdom.

Insights

Pyrithione, an antifungal agent, inhibits fungal membrane transport by depolarizing the plasma membrane. This action targets the primary proton pump, affecting transport energization.

Area of Science:

  • Mycology
  • Biochemistry
  • Electrophysiology

Background:

  • Pyrithione is a widely used antifungal agent in antidandruff shampoos.
  • Its general inhibitory effect on membrane transport in fungi is well-established.

Purpose of the Study:

  • To elucidate the mode of action of pyrithione on the plasma membrane.
  • To investigate pyrithione's effect on membrane transport in the model ascomycete, Neurospora crassa.

Main Methods:

  • Electrophysiological approach to study plasma membrane potential.
  • Dose-response and pH-dependency studies of pyrithione.
  • Current-voltage analysis to determine conductance changes.

Main Results:

  • Pyrithione induces a dose-dependent electrical depolarization of the plasma membrane.
  • The depolarization is pH-dependent, with reduced effect at alkaline pH.
  • Current-voltage analysis indicates inhibition of the primary proton pump, not ion channels.

Conclusions:

  • Pyrithione inhibits fungal membrane transport by affecting the primary proton pump.
  • The site of action is likely intracellular rather than extracellular.
  • Zinc pyrithione shows a similar but more potent effect on depolarization.

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