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A Hybrid NRPS-PKS Gene Cluster Related to the Bleomycin Family of Antitumor Antibiotics in Alteromonas macleodii Strains

Although numerous marine bacteria are known to produce antibiotics via hybrid NRPS-PKS gene clusters, none have been previously described in an  Alteromonas  species. In this study, we describe in detail a novel hybrid NRPS-PKS cluster identified in the plasmid of the  Alteromonas macleodii strain A...

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Autores principales: Mizuno, Carolina Megumi, Kimes, Nikole E., López-Pérez, Mario, Ausó, Eva, Rodriguez-Valera, Francisco, Ghai, Rohit
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3777966/
https://www.ncbi.nlm.nih.gov/pubmed/24069455
http://dx.doi.org/10.1371/journal.pone.0076021
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author Mizuno, Carolina Megumi
Kimes, Nikole E.
López-Pérez, Mario
Ausó, Eva
Rodriguez-Valera, Francisco
Ghai, Rohit
author_facet Mizuno, Carolina Megumi
Kimes, Nikole E.
López-Pérez, Mario
Ausó, Eva
Rodriguez-Valera, Francisco
Ghai, Rohit
author_sort Mizuno, Carolina Megumi
collection PubMed
description Although numerous marine bacteria are known to produce antibiotics via hybrid NRPS-PKS gene clusters, none have been previously described in an  Alteromonas  species. In this study, we describe in detail a novel hybrid NRPS-PKS cluster identified in the plasmid of the  Alteromonas macleodii strain AltDE1 and analyze its relatedness to other similar gene clusters in a sequence-based characterization. This is a mobile cluster, flanked by transposase-like genes, that has even been found inserted into the chromosome of some Alteromonas macleodii strains. The cluster contains separate genes for NRPS and PKS activity. The sole PKS gene appears to carry a novel acyltransferase domain, quite divergent from those currently characterized. The predicted specificities of the adenylation domains of the NRPS genes suggest that the final compound has a backbone very similar to bleomycin related compounds. However, the lack of genes involved in sugar biosynthesis indicates that the final product is not a glycopeptide. Even in the absence of these genes, the presence of the cluster appears to confer complete or partial resistance to phleomycin, which may be attributed to a bleomycin-resistance-like protein identified within the cluster. This also suggests that the compound still shares significant structural similarity to bleomycin. Moreover, transcriptomic evidence indicates that the NRPS-PKS cluster is expressed. Such sequence-based approaches will be crucial to fully explore and analyze the diversity and potential of secondary metabolite production, especially from increasingly important sources like marine microbes.
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spelling pubmed-37779662013-09-25 A Hybrid NRPS-PKS Gene Cluster Related to the Bleomycin Family of Antitumor Antibiotics in Alteromonas macleodii Strains Mizuno, Carolina Megumi Kimes, Nikole E. López-Pérez, Mario Ausó, Eva Rodriguez-Valera, Francisco Ghai, Rohit PLoS One Research Article Although numerous marine bacteria are known to produce antibiotics via hybrid NRPS-PKS gene clusters, none have been previously described in an  Alteromonas  species. In this study, we describe in detail a novel hybrid NRPS-PKS cluster identified in the plasmid of the  Alteromonas macleodii strain AltDE1 and analyze its relatedness to other similar gene clusters in a sequence-based characterization. This is a mobile cluster, flanked by transposase-like genes, that has even been found inserted into the chromosome of some Alteromonas macleodii strains. The cluster contains separate genes for NRPS and PKS activity. The sole PKS gene appears to carry a novel acyltransferase domain, quite divergent from those currently characterized. The predicted specificities of the adenylation domains of the NRPS genes suggest that the final compound has a backbone very similar to bleomycin related compounds. However, the lack of genes involved in sugar biosynthesis indicates that the final product is not a glycopeptide. Even in the absence of these genes, the presence of the cluster appears to confer complete or partial resistance to phleomycin, which may be attributed to a bleomycin-resistance-like protein identified within the cluster. This also suggests that the compound still shares significant structural similarity to bleomycin. Moreover, transcriptomic evidence indicates that the NRPS-PKS cluster is expressed. Such sequence-based approaches will be crucial to fully explore and analyze the diversity and potential of secondary metabolite production, especially from increasingly important sources like marine microbes. Public Library of Science 2013-09-19 /pmc/articles/PMC3777966/ /pubmed/24069455 http://dx.doi.org/10.1371/journal.pone.0076021 Text en © 2013 Mizuno 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
Mizuno, Carolina Megumi
Kimes, Nikole E.
López-Pérez, Mario
Ausó, Eva
Rodriguez-Valera, Francisco
Ghai, Rohit
A Hybrid NRPS-PKS Gene Cluster Related to the Bleomycin Family of Antitumor Antibiotics in Alteromonas macleodii Strains
title A Hybrid NRPS-PKS Gene Cluster Related to the Bleomycin Family of Antitumor Antibiotics in Alteromonas macleodii Strains
title_full A Hybrid NRPS-PKS Gene Cluster Related to the Bleomycin Family of Antitumor Antibiotics in Alteromonas macleodii Strains
title_fullStr A Hybrid NRPS-PKS Gene Cluster Related to the Bleomycin Family of Antitumor Antibiotics in Alteromonas macleodii Strains
title_full_unstemmed A Hybrid NRPS-PKS Gene Cluster Related to the Bleomycin Family of Antitumor Antibiotics in Alteromonas macleodii Strains
title_short A Hybrid NRPS-PKS Gene Cluster Related to the Bleomycin Family of Antitumor Antibiotics in Alteromonas macleodii Strains
title_sort hybrid nrps-pks gene cluster related to the bleomycin family of antitumor antibiotics in alteromonas macleodii strains
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3777966/
https://www.ncbi.nlm.nih.gov/pubmed/24069455
http://dx.doi.org/10.1371/journal.pone.0076021
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