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The impact of episporic modification of Lichtheimia corymbifera on virulence and interaction with phagocytes

Fungal infections caused by the ancient lineage Mucorales are emerging and increasingly reported in humans. Comprehensive surveys on promising attributes from a multitude of possible virulence factors are limited and so far, focused on Mucor and Rhizopus. This study addresses a systematic approach t...

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Autores principales: Hassan, Mohamed I. Abdelwahab, Keller, Monique, Hillger, Michael, Binder, Ulrike, Reuter, Stefanie, Herold, Kristina, Telagathoti, Anusha, Dahse, Hans-Martin, Wicht, Saiedeh, Trinks, Nora, Nietzsche, Sandor, Deckert-Gaudig, Tanja, Deckert, Volker, Mrowka, Ralf, Terpitz, Ulrich, Peter Saluz, Hans, Voigt, Kerstin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Research Network of Computational and Structural Biotechnology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7851798/
https://www.ncbi.nlm.nih.gov/pubmed/33598103
http://dx.doi.org/10.1016/j.csbj.2021.01.023
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author Hassan, Mohamed I. Abdelwahab
Keller, Monique
Hillger, Michael
Binder, Ulrike
Reuter, Stefanie
Herold, Kristina
Telagathoti, Anusha
Dahse, Hans-Martin
Wicht, Saiedeh
Trinks, Nora
Nietzsche, Sandor
Deckert-Gaudig, Tanja
Deckert, Volker
Mrowka, Ralf
Terpitz, Ulrich
Peter Saluz, Hans
Voigt, Kerstin
author_facet Hassan, Mohamed I. Abdelwahab
Keller, Monique
Hillger, Michael
Binder, Ulrike
Reuter, Stefanie
Herold, Kristina
Telagathoti, Anusha
Dahse, Hans-Martin
Wicht, Saiedeh
Trinks, Nora
Nietzsche, Sandor
Deckert-Gaudig, Tanja
Deckert, Volker
Mrowka, Ralf
Terpitz, Ulrich
Peter Saluz, Hans
Voigt, Kerstin
author_sort Hassan, Mohamed I. Abdelwahab
collection PubMed
description Fungal infections caused by the ancient lineage Mucorales are emerging and increasingly reported in humans. Comprehensive surveys on promising attributes from a multitude of possible virulence factors are limited and so far, focused on Mucor and Rhizopus. This study addresses a systematic approach to monitor phagocytosis after physical and enzymatic modification of the outer spore wall of Lichtheimia corymbifera, one of the major causative agents of mucormycosis. Episporic modifications were performed and their consequences on phagocytosis, intracellular survival and virulence by murine alveolar macrophages and in an invertebrate infection model were elucidated. While depletion of lipids did not affect the phagocytosis of both strains, delipidation led to attenuation of LCA strain but appears to be dispensable for infection with LCV strain in the settings used in this study. Combined glucano-proteolytic treatment was necessary to achieve a significant decrease of virulence of the LCV strain in Galleria mellonella during maintenance of the full potential for spore germination as shown by a novel automated germination assay. Proteolytic and glucanolytic treatments largely increased phagocytosis compared to alive resting and swollen spores. Whilst resting spores barely (1–2%) fuse to lysosomes after invagination in to phagosomes, spore trypsinization led to a 10-fold increase of phagolysosomal fusion as measured by intracellular acidification. This is the first report of a polyphasic measurement of the consequences of episporic modification of a mucormycotic pathogen in spore germination, spore surface ultrastructure, phagocytosis, stimulation of Toll-like receptors (TLRs), phagolysosomal fusion and intracellular acidification, apoptosis, generation of reactive oxygen species (ROS) and virulence.
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spelling pubmed-78517982021-02-16 The impact of episporic modification of Lichtheimia corymbifera on virulence and interaction with phagocytes Hassan, Mohamed I. Abdelwahab Keller, Monique Hillger, Michael Binder, Ulrike Reuter, Stefanie Herold, Kristina Telagathoti, Anusha Dahse, Hans-Martin Wicht, Saiedeh Trinks, Nora Nietzsche, Sandor Deckert-Gaudig, Tanja Deckert, Volker Mrowka, Ralf Terpitz, Ulrich Peter Saluz, Hans Voigt, Kerstin Comput Struct Biotechnol J Research Article Fungal infections caused by the ancient lineage Mucorales are emerging and increasingly reported in humans. Comprehensive surveys on promising attributes from a multitude of possible virulence factors are limited and so far, focused on Mucor and Rhizopus. This study addresses a systematic approach to monitor phagocytosis after physical and enzymatic modification of the outer spore wall of Lichtheimia corymbifera, one of the major causative agents of mucormycosis. Episporic modifications were performed and their consequences on phagocytosis, intracellular survival and virulence by murine alveolar macrophages and in an invertebrate infection model were elucidated. While depletion of lipids did not affect the phagocytosis of both strains, delipidation led to attenuation of LCA strain but appears to be dispensable for infection with LCV strain in the settings used in this study. Combined glucano-proteolytic treatment was necessary to achieve a significant decrease of virulence of the LCV strain in Galleria mellonella during maintenance of the full potential for spore germination as shown by a novel automated germination assay. Proteolytic and glucanolytic treatments largely increased phagocytosis compared to alive resting and swollen spores. Whilst resting spores barely (1–2%) fuse to lysosomes after invagination in to phagosomes, spore trypsinization led to a 10-fold increase of phagolysosomal fusion as measured by intracellular acidification. This is the first report of a polyphasic measurement of the consequences of episporic modification of a mucormycotic pathogen in spore germination, spore surface ultrastructure, phagocytosis, stimulation of Toll-like receptors (TLRs), phagolysosomal fusion and intracellular acidification, apoptosis, generation of reactive oxygen species (ROS) and virulence. Research Network of Computational and Structural Biotechnology 2021-01-20 /pmc/articles/PMC7851798/ /pubmed/33598103 http://dx.doi.org/10.1016/j.csbj.2021.01.023 Text en © 2021 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Hassan, Mohamed I. Abdelwahab
Keller, Monique
Hillger, Michael
Binder, Ulrike
Reuter, Stefanie
Herold, Kristina
Telagathoti, Anusha
Dahse, Hans-Martin
Wicht, Saiedeh
Trinks, Nora
Nietzsche, Sandor
Deckert-Gaudig, Tanja
Deckert, Volker
Mrowka, Ralf
Terpitz, Ulrich
Peter Saluz, Hans
Voigt, Kerstin
The impact of episporic modification of Lichtheimia corymbifera on virulence and interaction with phagocytes
title The impact of episporic modification of Lichtheimia corymbifera on virulence and interaction with phagocytes
title_full The impact of episporic modification of Lichtheimia corymbifera on virulence and interaction with phagocytes
title_fullStr The impact of episporic modification of Lichtheimia corymbifera on virulence and interaction with phagocytes
title_full_unstemmed The impact of episporic modification of Lichtheimia corymbifera on virulence and interaction with phagocytes
title_short The impact of episporic modification of Lichtheimia corymbifera on virulence and interaction with phagocytes
title_sort impact of episporic modification of lichtheimia corymbifera on virulence and interaction with phagocytes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7851798/
https://www.ncbi.nlm.nih.gov/pubmed/33598103
http://dx.doi.org/10.1016/j.csbj.2021.01.023
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