Cargando…

Enniatin and Beauvericin Biosynthesis in Fusarium Species: Production Profiles and Structural Determinant Prediction

Members of the fungal genus Fusarium can produce numerous secondary metabolites, including the nonribosomal mycotoxins beauvericin (BEA) and enniatins (ENNs). Both mycotoxins are synthesized by the multifunctional enzyme enniatin synthetase (ESYN1) that contains both peptide synthetase and S-adenosy...

Descripción completa

Detalles Bibliográficos
Autores principales: Liuzzi, Vania C., Mirabelli, Valentina, Cimmarusti, Maria Teresa, Haidukowski, Miriam, Leslie, John F., Logrieco, Antonio F., Caliandro, Rocco, Fanelli, Francesca, Mulè, Giuseppina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5331425/
https://www.ncbi.nlm.nih.gov/pubmed/28125067
http://dx.doi.org/10.3390/toxins9020045
_version_ 1782511373896384512
author Liuzzi, Vania C.
Mirabelli, Valentina
Cimmarusti, Maria Teresa
Haidukowski, Miriam
Leslie, John F.
Logrieco, Antonio F.
Caliandro, Rocco
Fanelli, Francesca
Mulè, Giuseppina
author_facet Liuzzi, Vania C.
Mirabelli, Valentina
Cimmarusti, Maria Teresa
Haidukowski, Miriam
Leslie, John F.
Logrieco, Antonio F.
Caliandro, Rocco
Fanelli, Francesca
Mulè, Giuseppina
author_sort Liuzzi, Vania C.
collection PubMed
description Members of the fungal genus Fusarium can produce numerous secondary metabolites, including the nonribosomal mycotoxins beauvericin (BEA) and enniatins (ENNs). Both mycotoxins are synthesized by the multifunctional enzyme enniatin synthetase (ESYN1) that contains both peptide synthetase and S-adenosyl-l-methionine-dependent N-methyltransferase activities. Several Fusarium species can produce ENNs, BEA or both, but the mechanism(s) enabling these differential metabolic profiles is unknown. In this study, we analyzed the primary structure of ESYN1 by sequencing esyn1 transcripts from different Fusarium species. We measured ENNs and BEA production by ultra-performance liquid chromatography coupled with photodiode array and Acquity QDa mass detector (UPLC-PDA-QDa) analyses. We predicted protein structures, compared the predictions by multivariate analysis methods and found a striking correlation between BEA/ENN-producing profiles and ESYN1 three-dimensional structures. Structural differences in the β strand’s Asn789-Ala793 and His797-Asp802 portions of the amino acid adenylation domain can be used to distinguish BEA/ENN-producing Fusarium isolates from those that produce only ENN.
format Online
Article
Text
id pubmed-5331425
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-53314252017-03-13 Enniatin and Beauvericin Biosynthesis in Fusarium Species: Production Profiles and Structural Determinant Prediction Liuzzi, Vania C. Mirabelli, Valentina Cimmarusti, Maria Teresa Haidukowski, Miriam Leslie, John F. Logrieco, Antonio F. Caliandro, Rocco Fanelli, Francesca Mulè, Giuseppina Toxins (Basel) Article Members of the fungal genus Fusarium can produce numerous secondary metabolites, including the nonribosomal mycotoxins beauvericin (BEA) and enniatins (ENNs). Both mycotoxins are synthesized by the multifunctional enzyme enniatin synthetase (ESYN1) that contains both peptide synthetase and S-adenosyl-l-methionine-dependent N-methyltransferase activities. Several Fusarium species can produce ENNs, BEA or both, but the mechanism(s) enabling these differential metabolic profiles is unknown. In this study, we analyzed the primary structure of ESYN1 by sequencing esyn1 transcripts from different Fusarium species. We measured ENNs and BEA production by ultra-performance liquid chromatography coupled with photodiode array and Acquity QDa mass detector (UPLC-PDA-QDa) analyses. We predicted protein structures, compared the predictions by multivariate analysis methods and found a striking correlation between BEA/ENN-producing profiles and ESYN1 three-dimensional structures. Structural differences in the β strand’s Asn789-Ala793 and His797-Asp802 portions of the amino acid adenylation domain can be used to distinguish BEA/ENN-producing Fusarium isolates from those that produce only ENN. MDPI 2017-01-25 /pmc/articles/PMC5331425/ /pubmed/28125067 http://dx.doi.org/10.3390/toxins9020045 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liuzzi, Vania C.
Mirabelli, Valentina
Cimmarusti, Maria Teresa
Haidukowski, Miriam
Leslie, John F.
Logrieco, Antonio F.
Caliandro, Rocco
Fanelli, Francesca
Mulè, Giuseppina
Enniatin and Beauvericin Biosynthesis in Fusarium Species: Production Profiles and Structural Determinant Prediction
title Enniatin and Beauvericin Biosynthesis in Fusarium Species: Production Profiles and Structural Determinant Prediction
title_full Enniatin and Beauvericin Biosynthesis in Fusarium Species: Production Profiles and Structural Determinant Prediction
title_fullStr Enniatin and Beauvericin Biosynthesis in Fusarium Species: Production Profiles and Structural Determinant Prediction
title_full_unstemmed Enniatin and Beauvericin Biosynthesis in Fusarium Species: Production Profiles and Structural Determinant Prediction
title_short Enniatin and Beauvericin Biosynthesis in Fusarium Species: Production Profiles and Structural Determinant Prediction
title_sort enniatin and beauvericin biosynthesis in fusarium species: production profiles and structural determinant prediction
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5331425/
https://www.ncbi.nlm.nih.gov/pubmed/28125067
http://dx.doi.org/10.3390/toxins9020045
work_keys_str_mv AT liuzzivaniac enniatinandbeauvericinbiosynthesisinfusariumspeciesproductionprofilesandstructuraldeterminantprediction
AT mirabellivalentina enniatinandbeauvericinbiosynthesisinfusariumspeciesproductionprofilesandstructuraldeterminantprediction
AT cimmarustimariateresa enniatinandbeauvericinbiosynthesisinfusariumspeciesproductionprofilesandstructuraldeterminantprediction
AT haidukowskimiriam enniatinandbeauvericinbiosynthesisinfusariumspeciesproductionprofilesandstructuraldeterminantprediction
AT lesliejohnf enniatinandbeauvericinbiosynthesisinfusariumspeciesproductionprofilesandstructuraldeterminantprediction
AT logriecoantoniof enniatinandbeauvericinbiosynthesisinfusariumspeciesproductionprofilesandstructuraldeterminantprediction
AT caliandrorocco enniatinandbeauvericinbiosynthesisinfusariumspeciesproductionprofilesandstructuraldeterminantprediction
AT fanellifrancesca enniatinandbeauvericinbiosynthesisinfusariumspeciesproductionprofilesandstructuraldeterminantprediction
AT mulegiuseppina enniatinandbeauvericinbiosynthesisinfusariumspeciesproductionprofilesandstructuraldeterminantprediction