Cargando…
The Synthetic Amphipathic Peptidomimetic LTX109 Is a Potent Fungicide That Disturbs Plasma Membrane Integrity in a Sphingolipid Dependent Manner
The peptidomimetic LTX109 (arginine-tertbutyl tryptophan-arginine-phenylethan) was previously shown to have antibacterial properties. Here, we investigated the activity of this novel antimicrobial peptidomimetic on the yeast Saccharomyces cerevisiae. We found that LTX109 was an efficient fungicide t...
Autores principales: | , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2013
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3709891/ https://www.ncbi.nlm.nih.gov/pubmed/23874964 http://dx.doi.org/10.1371/journal.pone.0069483 |
_version_ | 1782276814927822848 |
---|---|
author | Bojsen, Rasmus Torbensen, Rasmus Larsen, Camilla Eggert Folkesson, Anders Regenberg, Birgitte |
author_facet | Bojsen, Rasmus Torbensen, Rasmus Larsen, Camilla Eggert Folkesson, Anders Regenberg, Birgitte |
author_sort | Bojsen, Rasmus |
collection | PubMed |
description | The peptidomimetic LTX109 (arginine-tertbutyl tryptophan-arginine-phenylethan) was previously shown to have antibacterial properties. Here, we investigated the activity of this novel antimicrobial peptidomimetic on the yeast Saccharomyces cerevisiae. We found that LTX109 was an efficient fungicide that killed all viable cells in an exponentially growing population as well as a large proportion of cells in biofilm formed on an abiotic surface. LTX109 had similar killing kinetics to the membrane-permeabilizing fungicide amphotericin B, which led us to investigate the ability of LTX109 to disrupt plasma membrane integrity. S. cerevisiae cells exposed to a high concentration of LTX109 showed rapid release of potassium and amino acids, suggesting that LTX109 acted by destabilizing the plasma membrane. This was supported by the finding that cells were permeable to the fluorescent nucleic acid stain SYTOX Green after a few minutes of LTX109 treatment. We screened a haploid S. cerevisiae gene deletion library for mutants resistant to LTX109 to uncover potential molecular targets. Eight genes conferred LTX109 resistance when deleted and six were involved in the sphingolipid biosynthetic pathway (SUR1, SUR2, SKN1, IPT1, FEN1 and ORM2). The involvement of all of these genes in the biosynthetic pathway for the fungal-specific lipids mannosylinositol phosphorylceramide (MIPC) and mannosyl di-(inositol phosphoryl) ceramide (M(IP)(2)C) suggested that these lipids were essential for LTX109 sensitivity. Our observations are consistent with a model in which LTX109 kills S. cerevisiae by nonspecific destabilization of the plasma membrane through direct or indirect interaction with the sphingolipids. |
format | Online Article Text |
id | pubmed-3709891 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2013 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-37098912013-07-19 The Synthetic Amphipathic Peptidomimetic LTX109 Is a Potent Fungicide That Disturbs Plasma Membrane Integrity in a Sphingolipid Dependent Manner Bojsen, Rasmus Torbensen, Rasmus Larsen, Camilla Eggert Folkesson, Anders Regenberg, Birgitte PLoS One Research Article The peptidomimetic LTX109 (arginine-tertbutyl tryptophan-arginine-phenylethan) was previously shown to have antibacterial properties. Here, we investigated the activity of this novel antimicrobial peptidomimetic on the yeast Saccharomyces cerevisiae. We found that LTX109 was an efficient fungicide that killed all viable cells in an exponentially growing population as well as a large proportion of cells in biofilm formed on an abiotic surface. LTX109 had similar killing kinetics to the membrane-permeabilizing fungicide amphotericin B, which led us to investigate the ability of LTX109 to disrupt plasma membrane integrity. S. cerevisiae cells exposed to a high concentration of LTX109 showed rapid release of potassium and amino acids, suggesting that LTX109 acted by destabilizing the plasma membrane. This was supported by the finding that cells were permeable to the fluorescent nucleic acid stain SYTOX Green after a few minutes of LTX109 treatment. We screened a haploid S. cerevisiae gene deletion library for mutants resistant to LTX109 to uncover potential molecular targets. Eight genes conferred LTX109 resistance when deleted and six were involved in the sphingolipid biosynthetic pathway (SUR1, SUR2, SKN1, IPT1, FEN1 and ORM2). The involvement of all of these genes in the biosynthetic pathway for the fungal-specific lipids mannosylinositol phosphorylceramide (MIPC) and mannosyl di-(inositol phosphoryl) ceramide (M(IP)(2)C) suggested that these lipids were essential for LTX109 sensitivity. Our observations are consistent with a model in which LTX109 kills S. cerevisiae by nonspecific destabilization of the plasma membrane through direct or indirect interaction with the sphingolipids. Public Library of Science 2013-07-12 /pmc/articles/PMC3709891/ /pubmed/23874964 http://dx.doi.org/10.1371/journal.pone.0069483 Text en © 2013 Bojsen et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited. |
spellingShingle | Research Article Bojsen, Rasmus Torbensen, Rasmus Larsen, Camilla Eggert Folkesson, Anders Regenberg, Birgitte The Synthetic Amphipathic Peptidomimetic LTX109 Is a Potent Fungicide That Disturbs Plasma Membrane Integrity in a Sphingolipid Dependent Manner |
title | The Synthetic Amphipathic Peptidomimetic LTX109 Is a Potent Fungicide That Disturbs Plasma Membrane Integrity in a Sphingolipid Dependent Manner |
title_full | The Synthetic Amphipathic Peptidomimetic LTX109 Is a Potent Fungicide That Disturbs Plasma Membrane Integrity in a Sphingolipid Dependent Manner |
title_fullStr | The Synthetic Amphipathic Peptidomimetic LTX109 Is a Potent Fungicide That Disturbs Plasma Membrane Integrity in a Sphingolipid Dependent Manner |
title_full_unstemmed | The Synthetic Amphipathic Peptidomimetic LTX109 Is a Potent Fungicide That Disturbs Plasma Membrane Integrity in a Sphingolipid Dependent Manner |
title_short | The Synthetic Amphipathic Peptidomimetic LTX109 Is a Potent Fungicide That Disturbs Plasma Membrane Integrity in a Sphingolipid Dependent Manner |
title_sort | synthetic amphipathic peptidomimetic ltx109 is a potent fungicide that disturbs plasma membrane integrity in a sphingolipid dependent manner |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3709891/ https://www.ncbi.nlm.nih.gov/pubmed/23874964 http://dx.doi.org/10.1371/journal.pone.0069483 |
work_keys_str_mv | AT bojsenrasmus thesyntheticamphipathicpeptidomimeticltx109isapotentfungicidethatdisturbsplasmamembraneintegrityinasphingolipiddependentmanner AT torbensenrasmus thesyntheticamphipathicpeptidomimeticltx109isapotentfungicidethatdisturbsplasmamembraneintegrityinasphingolipiddependentmanner AT larsencamillaeggert thesyntheticamphipathicpeptidomimeticltx109isapotentfungicidethatdisturbsplasmamembraneintegrityinasphingolipiddependentmanner AT folkessonanders thesyntheticamphipathicpeptidomimeticltx109isapotentfungicidethatdisturbsplasmamembraneintegrityinasphingolipiddependentmanner AT regenbergbirgitte thesyntheticamphipathicpeptidomimeticltx109isapotentfungicidethatdisturbsplasmamembraneintegrityinasphingolipiddependentmanner AT bojsenrasmus syntheticamphipathicpeptidomimeticltx109isapotentfungicidethatdisturbsplasmamembraneintegrityinasphingolipiddependentmanner AT torbensenrasmus syntheticamphipathicpeptidomimeticltx109isapotentfungicidethatdisturbsplasmamembraneintegrityinasphingolipiddependentmanner AT larsencamillaeggert syntheticamphipathicpeptidomimeticltx109isapotentfungicidethatdisturbsplasmamembraneintegrityinasphingolipiddependentmanner AT folkessonanders syntheticamphipathicpeptidomimeticltx109isapotentfungicidethatdisturbsplasmamembraneintegrityinasphingolipiddependentmanner AT regenbergbirgitte syntheticamphipathicpeptidomimeticltx109isapotentfungicidethatdisturbsplasmamembraneintegrityinasphingolipiddependentmanner |