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The fungal myosin I is essential for Fusarium toxisome formation

Myosin-I molecular motors are proposed to function as linkers between membranes and the actin cytoskeleton in several cellular processes, but their role in the biosynthesis of fungal secondary metabolites remain elusive. Here, we found that the myosin I of Fusarium graminearum (FgMyo1), the causal a...

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Autores principales: Tang, Guangfei, Chen, Yun, Xu, Jin-Rong, Kistler, H. Corby, Ma, Zhonghua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5794197/
https://www.ncbi.nlm.nih.gov/pubmed/29357387
http://dx.doi.org/10.1371/journal.ppat.1006827
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author Tang, Guangfei
Chen, Yun
Xu, Jin-Rong
Kistler, H. Corby
Ma, Zhonghua
author_facet Tang, Guangfei
Chen, Yun
Xu, Jin-Rong
Kistler, H. Corby
Ma, Zhonghua
author_sort Tang, Guangfei
collection PubMed
description Myosin-I molecular motors are proposed to function as linkers between membranes and the actin cytoskeleton in several cellular processes, but their role in the biosynthesis of fungal secondary metabolites remain elusive. Here, we found that the myosin I of Fusarium graminearum (FgMyo1), the causal agent of Fusarium head blight, plays critical roles in mycotoxin biosynthesis. Inhibition of myosin I by the small molecule phenamacril leads to marked reduction in deoxynivalenol (DON) biosynthesis. FgMyo1 also governs translation of the DON biosynthetic enzyme Tri1 by interacting with the ribosome-associated protein FgAsc1. Disruption of the ATPase activity of FgMyo1 either by the mutation E420K, down-regulation of FgMyo1 expression or deletion of FgAsc1 results in reduced Tri1 translation. The DON biosynthetic enzymes Tri1 and Tri4 are mainly localized to subcellular structures known as toxisomes in response to mycotoxin induction and the FgMyo1-interacting protein, actin, participates in toxisome formation. The actin polymerization disruptor latrunculin A inhibits toxisome assembly. Consistent with this observation, deletion of the actin-associated proteins FgPrk1 and FgEnd3 also results in reduced toxisome formation. Unexpectedly, the FgMyo1-actin cytoskeleton is not involved in biosynthesis of another secondary metabolite tested. Taken together, this study uncovers a novel function of myosin I in regulating mycotoxin biosynthesis in filamentous fungi.
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spelling pubmed-57941972018-02-16 The fungal myosin I is essential for Fusarium toxisome formation Tang, Guangfei Chen, Yun Xu, Jin-Rong Kistler, H. Corby Ma, Zhonghua PLoS Pathog Research Article Myosin-I molecular motors are proposed to function as linkers between membranes and the actin cytoskeleton in several cellular processes, but their role in the biosynthesis of fungal secondary metabolites remain elusive. Here, we found that the myosin I of Fusarium graminearum (FgMyo1), the causal agent of Fusarium head blight, plays critical roles in mycotoxin biosynthesis. Inhibition of myosin I by the small molecule phenamacril leads to marked reduction in deoxynivalenol (DON) biosynthesis. FgMyo1 also governs translation of the DON biosynthetic enzyme Tri1 by interacting with the ribosome-associated protein FgAsc1. Disruption of the ATPase activity of FgMyo1 either by the mutation E420K, down-regulation of FgMyo1 expression or deletion of FgAsc1 results in reduced Tri1 translation. The DON biosynthetic enzymes Tri1 and Tri4 are mainly localized to subcellular structures known as toxisomes in response to mycotoxin induction and the FgMyo1-interacting protein, actin, participates in toxisome formation. The actin polymerization disruptor latrunculin A inhibits toxisome assembly. Consistent with this observation, deletion of the actin-associated proteins FgPrk1 and FgEnd3 also results in reduced toxisome formation. Unexpectedly, the FgMyo1-actin cytoskeleton is not involved in biosynthesis of another secondary metabolite tested. Taken together, this study uncovers a novel function of myosin I in regulating mycotoxin biosynthesis in filamentous fungi. Public Library of Science 2018-01-22 /pmc/articles/PMC5794197/ /pubmed/29357387 http://dx.doi.org/10.1371/journal.ppat.1006827 Text en © 2018 Tang 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Tang, Guangfei
Chen, Yun
Xu, Jin-Rong
Kistler, H. Corby
Ma, Zhonghua
The fungal myosin I is essential for Fusarium toxisome formation
title The fungal myosin I is essential for Fusarium toxisome formation
title_full The fungal myosin I is essential for Fusarium toxisome formation
title_fullStr The fungal myosin I is essential for Fusarium toxisome formation
title_full_unstemmed The fungal myosin I is essential for Fusarium toxisome formation
title_short The fungal myosin I is essential for Fusarium toxisome formation
title_sort fungal myosin i is essential for fusarium toxisome formation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5794197/
https://www.ncbi.nlm.nih.gov/pubmed/29357387
http://dx.doi.org/10.1371/journal.ppat.1006827
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