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Identification of a New Antimicrobial, Desertomycin H, Utilizing a Modified Crowded Plate Technique

The antibiotic-resistant bacteria-associated infections are a major global healthcare threat. New classes of antimicrobial compounds are urgently needed as the frequency of infections caused by multidrug-resistant microbes continues to rise. Recent metagenomic data have demonstrated that there is st...

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Autores principales: Mohamed, Osama G., Dorandish, Sadaf, Lindow, Rebecca, Steltz, Megan, Shoukat, Ifrah, Shoukat, Maira, Chehade, Hussein, Baghdadi, Sara, McAlister-Raeburn, Madelaine, Kamal, Asad, Abebe, Dawit, Ali, Khaled, Ivy, Chelsey, Antonova, Maria, Schultz, Pamela, Angell, Michael, Clemans, Daniel, Friebe, Timothy, Sherman, David, Casper, Anne M., Price, Paul A., Tripathi, Ashootosh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8400312/
https://www.ncbi.nlm.nih.gov/pubmed/34436264
http://dx.doi.org/10.3390/md19080424
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author Mohamed, Osama G.
Dorandish, Sadaf
Lindow, Rebecca
Steltz, Megan
Shoukat, Ifrah
Shoukat, Maira
Chehade, Hussein
Baghdadi, Sara
McAlister-Raeburn, Madelaine
Kamal, Asad
Abebe, Dawit
Ali, Khaled
Ivy, Chelsey
Antonova, Maria
Schultz, Pamela
Angell, Michael
Clemans, Daniel
Friebe, Timothy
Sherman, David
Casper, Anne M.
Price, Paul A.
Tripathi, Ashootosh
author_facet Mohamed, Osama G.
Dorandish, Sadaf
Lindow, Rebecca
Steltz, Megan
Shoukat, Ifrah
Shoukat, Maira
Chehade, Hussein
Baghdadi, Sara
McAlister-Raeburn, Madelaine
Kamal, Asad
Abebe, Dawit
Ali, Khaled
Ivy, Chelsey
Antonova, Maria
Schultz, Pamela
Angell, Michael
Clemans, Daniel
Friebe, Timothy
Sherman, David
Casper, Anne M.
Price, Paul A.
Tripathi, Ashootosh
author_sort Mohamed, Osama G.
collection PubMed
description The antibiotic-resistant bacteria-associated infections are a major global healthcare threat. New classes of antimicrobial compounds are urgently needed as the frequency of infections caused by multidrug-resistant microbes continues to rise. Recent metagenomic data have demonstrated that there is still biosynthetic potential encoded in but transcriptionally silent in cultivatable bacterial genomes. However, the culture conditions required to identify and express silent biosynthetic gene clusters that yield natural products with antimicrobial activity are largely unknown. Here, we describe a new antibiotic discovery scheme, dubbed the modified crowded plate technique (mCPT), that utilizes complex microbial interactions to elicit antimicrobial production from otherwise silent biosynthetic gene clusters. Using the mCPT as part of the antibiotic crowdsourcing educational program Tiny Earth(TM), we isolated over 1400 antibiotic-producing microbes, including 62 showing activity against multidrug-resistant pathogens. The natural product extracts generated from six microbial isolates showed potent activity against vancomycin-intermediate resistant Staphylococcus aureus. We utilized a targeted approach that coupled mass spectrometry data with bioactivity, yielding a new macrolactone class of metabolite, desertomycin H. In this study, we successfully demonstrate a concept that significantly increased our ability to quickly and efficiently identify microbes capable of the silent antibiotic production.
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spelling pubmed-84003122021-08-29 Identification of a New Antimicrobial, Desertomycin H, Utilizing a Modified Crowded Plate Technique Mohamed, Osama G. Dorandish, Sadaf Lindow, Rebecca Steltz, Megan Shoukat, Ifrah Shoukat, Maira Chehade, Hussein Baghdadi, Sara McAlister-Raeburn, Madelaine Kamal, Asad Abebe, Dawit Ali, Khaled Ivy, Chelsey Antonova, Maria Schultz, Pamela Angell, Michael Clemans, Daniel Friebe, Timothy Sherman, David Casper, Anne M. Price, Paul A. Tripathi, Ashootosh Mar Drugs Article The antibiotic-resistant bacteria-associated infections are a major global healthcare threat. New classes of antimicrobial compounds are urgently needed as the frequency of infections caused by multidrug-resistant microbes continues to rise. Recent metagenomic data have demonstrated that there is still biosynthetic potential encoded in but transcriptionally silent in cultivatable bacterial genomes. However, the culture conditions required to identify and express silent biosynthetic gene clusters that yield natural products with antimicrobial activity are largely unknown. Here, we describe a new antibiotic discovery scheme, dubbed the modified crowded plate technique (mCPT), that utilizes complex microbial interactions to elicit antimicrobial production from otherwise silent biosynthetic gene clusters. Using the mCPT as part of the antibiotic crowdsourcing educational program Tiny Earth(TM), we isolated over 1400 antibiotic-producing microbes, including 62 showing activity against multidrug-resistant pathogens. The natural product extracts generated from six microbial isolates showed potent activity against vancomycin-intermediate resistant Staphylococcus aureus. We utilized a targeted approach that coupled mass spectrometry data with bioactivity, yielding a new macrolactone class of metabolite, desertomycin H. In this study, we successfully demonstrate a concept that significantly increased our ability to quickly and efficiently identify microbes capable of the silent antibiotic production. MDPI 2021-07-27 /pmc/articles/PMC8400312/ /pubmed/34436264 http://dx.doi.org/10.3390/md19080424 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mohamed, Osama G.
Dorandish, Sadaf
Lindow, Rebecca
Steltz, Megan
Shoukat, Ifrah
Shoukat, Maira
Chehade, Hussein
Baghdadi, Sara
McAlister-Raeburn, Madelaine
Kamal, Asad
Abebe, Dawit
Ali, Khaled
Ivy, Chelsey
Antonova, Maria
Schultz, Pamela
Angell, Michael
Clemans, Daniel
Friebe, Timothy
Sherman, David
Casper, Anne M.
Price, Paul A.
Tripathi, Ashootosh
Identification of a New Antimicrobial, Desertomycin H, Utilizing a Modified Crowded Plate Technique
title Identification of a New Antimicrobial, Desertomycin H, Utilizing a Modified Crowded Plate Technique
title_full Identification of a New Antimicrobial, Desertomycin H, Utilizing a Modified Crowded Plate Technique
title_fullStr Identification of a New Antimicrobial, Desertomycin H, Utilizing a Modified Crowded Plate Technique
title_full_unstemmed Identification of a New Antimicrobial, Desertomycin H, Utilizing a Modified Crowded Plate Technique
title_short Identification of a New Antimicrobial, Desertomycin H, Utilizing a Modified Crowded Plate Technique
title_sort identification of a new antimicrobial, desertomycin h, utilizing a modified crowded plate technique
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8400312/
https://www.ncbi.nlm.nih.gov/pubmed/34436264
http://dx.doi.org/10.3390/md19080424
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