| Literature DB >> 21947398 |
Nancy L Reeder1, Jerry Kaplan, Jun Xu, R Scott Youngquist, Jared Wallace, Ping Hu, Kenton D Juhlin, James R Schwartz, Raymond A Grant, Angela Fieno, Suzanne Nemeth, Tim Reichling, Jay P Tiesman, Tim Mills, Mark Steinke, Shuo L Wang, Charles W Saunders.
Abstract
Zinc pyrithione (ZPT) is an antimicrobial material with widespread use in antidandruff shampoos and antifouling paints. Despite decades of commercial use, there is little understanding of its antimicrobial mechanism of action. We used a combination of genome-wide approaches (yeast deletion mutants and microarrays) and traditional methods (gene constructs and atomic emission) to characterize the activity of ZPT against a model yeast, Saccharomyces cerevisiae. ZPT acts through an increase in cellular copper levels that leads to loss of activity of iron-sulfur cluster-containing proteins. ZPT was also found to mediate growth inhibition through an increase in copper in the scalp fungus Malassezia globosa. A model is presented in which pyrithione acts as a copper ionophore, enabling copper to enter cells and distribute across intracellular membranes. This is the first report of a metal-ligand complex that inhibits fungal growth by increasing the cellular level of a different metal.Entities:
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Year: 2011 PMID: 21947398 PMCID: PMC3232817 DOI: 10.1128/AAC.00724-11
Source DB: PubMed Journal: Antimicrob Agents Chemother ISSN: 0066-4804 Impact factor: 5.191