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The interaction with fungal cell wall polysaccharides determines the salt tolerance of antifungal plant defensins

The fungal cell wall is the first point of contact between fungal pathogens and host organisms. It serves as a protective barrier against biotic and abiotic stresses and as a signal to the host that a fungal pathogen is present. The fungal cell wall is made predominantly of carbohydrates and glycopr...

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Autores principales: Bleackley, Mark R., Dawson, Charlotte S., Payne, Jennifer A.E., Harvey, Peta J., Rosengren, K. Johan, Quimbar, Pedro, Garcia-Ceron, Donovan, Lowe, Rohan, Bulone, Vincent, van der Weerden, Nicole L., Craik, David J., Anderson, Marilyn A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7389181/
https://www.ncbi.nlm.nih.gov/pubmed/32743142
http://dx.doi.org/10.1016/j.tcsw.2019.100026
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author Bleackley, Mark R.
Dawson, Charlotte S.
Payne, Jennifer A.E.
Harvey, Peta J.
Rosengren, K. Johan
Quimbar, Pedro
Garcia-Ceron, Donovan
Lowe, Rohan
Bulone, Vincent
van der Weerden, Nicole L.
Craik, David J.
Anderson, Marilyn A.
author_facet Bleackley, Mark R.
Dawson, Charlotte S.
Payne, Jennifer A.E.
Harvey, Peta J.
Rosengren, K. Johan
Quimbar, Pedro
Garcia-Ceron, Donovan
Lowe, Rohan
Bulone, Vincent
van der Weerden, Nicole L.
Craik, David J.
Anderson, Marilyn A.
author_sort Bleackley, Mark R.
collection PubMed
description The fungal cell wall is the first point of contact between fungal pathogens and host organisms. It serves as a protective barrier against biotic and abiotic stresses and as a signal to the host that a fungal pathogen is present. The fungal cell wall is made predominantly of carbohydrates and glycoproteins, many of which serve as binding receptors for host defence molecules or activate host immune responses through interactions with membrane-bound receptors. Plant defensins are a large family of cationic antifungal peptides that protect plants against fungal disease. Binding of the plant defensin NaD1 to the fungal cell wall has been described but the specific component of the cell wall with which this interaction occurred was unknown. The effect of binding was also unclear, that is whether the plant defensin used fungal cell wall components as a recognition motif for the plant to identify potential pathogens or if the cell wall acted to protect the fungus against the defensin. Here we describe the interaction between the fungal cell wall polysaccharides chitin and β-glucan with NaD1 and other plant defensins. We discovered that the β-glucan layer protects the fungus against plant defensins and the loss of activity experienced by many cationic antifungal peptides at elevated salt concentrations is due to sequestration by fungal cell wall polysaccharides. This has limited the development of cationic antifungal peptides for the treatment of systemic fungal diseases in humans as the level of salt in serum is enough to inactivate most cationic peptides.
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spelling pubmed-73891812020-07-31 The interaction with fungal cell wall polysaccharides determines the salt tolerance of antifungal plant defensins Bleackley, Mark R. Dawson, Charlotte S. Payne, Jennifer A.E. Harvey, Peta J. Rosengren, K. Johan Quimbar, Pedro Garcia-Ceron, Donovan Lowe, Rohan Bulone, Vincent van der Weerden, Nicole L. Craik, David J. Anderson, Marilyn A. Cell Surf Article The fungal cell wall is the first point of contact between fungal pathogens and host organisms. It serves as a protective barrier against biotic and abiotic stresses and as a signal to the host that a fungal pathogen is present. The fungal cell wall is made predominantly of carbohydrates and glycoproteins, many of which serve as binding receptors for host defence molecules or activate host immune responses through interactions with membrane-bound receptors. Plant defensins are a large family of cationic antifungal peptides that protect plants against fungal disease. Binding of the plant defensin NaD1 to the fungal cell wall has been described but the specific component of the cell wall with which this interaction occurred was unknown. The effect of binding was also unclear, that is whether the plant defensin used fungal cell wall components as a recognition motif for the plant to identify potential pathogens or if the cell wall acted to protect the fungus against the defensin. Here we describe the interaction between the fungal cell wall polysaccharides chitin and β-glucan with NaD1 and other plant defensins. We discovered that the β-glucan layer protects the fungus against plant defensins and the loss of activity experienced by many cationic antifungal peptides at elevated salt concentrations is due to sequestration by fungal cell wall polysaccharides. This has limited the development of cationic antifungal peptides for the treatment of systemic fungal diseases in humans as the level of salt in serum is enough to inactivate most cationic peptides. Elsevier 2019-05-22 /pmc/articles/PMC7389181/ /pubmed/32743142 http://dx.doi.org/10.1016/j.tcsw.2019.100026 Text en © 2019 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bleackley, Mark R.
Dawson, Charlotte S.
Payne, Jennifer A.E.
Harvey, Peta J.
Rosengren, K. Johan
Quimbar, Pedro
Garcia-Ceron, Donovan
Lowe, Rohan
Bulone, Vincent
van der Weerden, Nicole L.
Craik, David J.
Anderson, Marilyn A.
The interaction with fungal cell wall polysaccharides determines the salt tolerance of antifungal plant defensins
title The interaction with fungal cell wall polysaccharides determines the salt tolerance of antifungal plant defensins
title_full The interaction with fungal cell wall polysaccharides determines the salt tolerance of antifungal plant defensins
title_fullStr The interaction with fungal cell wall polysaccharides determines the salt tolerance of antifungal plant defensins
title_full_unstemmed The interaction with fungal cell wall polysaccharides determines the salt tolerance of antifungal plant defensins
title_short The interaction with fungal cell wall polysaccharides determines the salt tolerance of antifungal plant defensins
title_sort interaction with fungal cell wall polysaccharides determines the salt tolerance of antifungal plant defensins
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7389181/
https://www.ncbi.nlm.nih.gov/pubmed/32743142
http://dx.doi.org/10.1016/j.tcsw.2019.100026
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