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Streptomyces coelicolor Vesicles: Many Molecules To Be Delivered

Streptomyces coelicolor is a model organism for the study of Streptomyces, a genus of Gram-positive bacteria that undergoes a complex life cycle and produces a broad repertoire of bioactive metabolites and extracellular enzymes. This study investigated the production and characterization of membrane...

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Autores principales: Faddetta, Teresa, Renzone, Giovanni, Vassallo, Alberto, Rimini, Emilio, Nasillo, Giorgio, Buscarino, Gianpiero, Agnello, Simonpietro, Licciardi, Mariano, Botta, Luigi, Scaloni, Andrea, Palumbo Piccionello, Antonio, Puglia, Anna Maria, Gallo, Giuseppe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8752130/
https://www.ncbi.nlm.nih.gov/pubmed/34669446
http://dx.doi.org/10.1128/AEM.01881-21
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author Faddetta, Teresa
Renzone, Giovanni
Vassallo, Alberto
Rimini, Emilio
Nasillo, Giorgio
Buscarino, Gianpiero
Agnello, Simonpietro
Licciardi, Mariano
Botta, Luigi
Scaloni, Andrea
Palumbo Piccionello, Antonio
Puglia, Anna Maria
Gallo, Giuseppe
author_facet Faddetta, Teresa
Renzone, Giovanni
Vassallo, Alberto
Rimini, Emilio
Nasillo, Giorgio
Buscarino, Gianpiero
Agnello, Simonpietro
Licciardi, Mariano
Botta, Luigi
Scaloni, Andrea
Palumbo Piccionello, Antonio
Puglia, Anna Maria
Gallo, Giuseppe
author_sort Faddetta, Teresa
collection PubMed
description Streptomyces coelicolor is a model organism for the study of Streptomyces, a genus of Gram-positive bacteria that undergoes a complex life cycle and produces a broad repertoire of bioactive metabolites and extracellular enzymes. This study investigated the production and characterization of membrane vesicles (MVs) in liquid cultures of S. coelicolor M145 from a structural and biochemical point of view; this was achieved by combining microscopic, physical and -omics analyses. Two main populations of MVs, with different sizes and cargos, were isolated and purified. S. coelicolor MV cargo was determined to be complex, containing different kinds of proteins and metabolites. In particular, a total of 166 proteins involved in cell metabolism/differentiation, molecular processing/transport, and stress response were identified in MVs, the latter functional class also being important for bacterial morpho-physiological differentiation. A subset of these proteins was protected from degradation following treatment of MVs with proteinase K, indicating their localization inside the vesicles. Moreover, S. coelicolor MVs contained an array of metabolites, such as antibiotics, vitamins, amino acids, and components of carbon metabolism. In conclusion, this analysis provides detailed information on S. coelicolor MVs under basal conditions and on their corresponding content, which may be useful in the near future to elucidate vesicle biogenesis and functions. IMPORTANCE Streptomycetes are widely distributed in nature and characterized by a complex life cycle that involves morphological differentiation. They are very relevant in industry because they produce about half of all clinically used antibiotics, as well as other important pharmaceutical products of natural origin. Streptomyces coelicolor is a model organism for the study of bacterial differentiation and bioactive molecule production. S. coelicolor produces extracellular vesicles that carry many molecules, such as proteins and metabolites, including antibiotics. The elucidation of S. coelicolor extracellular vesicle cargo will help us to understand different aspects of streptomycete physiology, such as cell communication during differentiation and response to environmental stimuli. Moreover, the capability of these vesicles for carrying different kinds of biomolecules opens up new biotechnological possibilities related to drug delivery. Indeed, decoding the molecular mechanisms involved in cargo selection may lead to the customization of extracellular vesicle content.
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spelling pubmed-87521302022-01-24 Streptomyces coelicolor Vesicles: Many Molecules To Be Delivered Faddetta, Teresa Renzone, Giovanni Vassallo, Alberto Rimini, Emilio Nasillo, Giorgio Buscarino, Gianpiero Agnello, Simonpietro Licciardi, Mariano Botta, Luigi Scaloni, Andrea Palumbo Piccionello, Antonio Puglia, Anna Maria Gallo, Giuseppe Appl Environ Microbiol Biotechnology Streptomyces coelicolor is a model organism for the study of Streptomyces, a genus of Gram-positive bacteria that undergoes a complex life cycle and produces a broad repertoire of bioactive metabolites and extracellular enzymes. This study investigated the production and characterization of membrane vesicles (MVs) in liquid cultures of S. coelicolor M145 from a structural and biochemical point of view; this was achieved by combining microscopic, physical and -omics analyses. Two main populations of MVs, with different sizes and cargos, were isolated and purified. S. coelicolor MV cargo was determined to be complex, containing different kinds of proteins and metabolites. In particular, a total of 166 proteins involved in cell metabolism/differentiation, molecular processing/transport, and stress response were identified in MVs, the latter functional class also being important for bacterial morpho-physiological differentiation. A subset of these proteins was protected from degradation following treatment of MVs with proteinase K, indicating their localization inside the vesicles. Moreover, S. coelicolor MVs contained an array of metabolites, such as antibiotics, vitamins, amino acids, and components of carbon metabolism. In conclusion, this analysis provides detailed information on S. coelicolor MVs under basal conditions and on their corresponding content, which may be useful in the near future to elucidate vesicle biogenesis and functions. IMPORTANCE Streptomycetes are widely distributed in nature and characterized by a complex life cycle that involves morphological differentiation. They are very relevant in industry because they produce about half of all clinically used antibiotics, as well as other important pharmaceutical products of natural origin. Streptomyces coelicolor is a model organism for the study of bacterial differentiation and bioactive molecule production. S. coelicolor produces extracellular vesicles that carry many molecules, such as proteins and metabolites, including antibiotics. The elucidation of S. coelicolor extracellular vesicle cargo will help us to understand different aspects of streptomycete physiology, such as cell communication during differentiation and response to environmental stimuli. Moreover, the capability of these vesicles for carrying different kinds of biomolecules opens up new biotechnological possibilities related to drug delivery. Indeed, decoding the molecular mechanisms involved in cargo selection may lead to the customization of extracellular vesicle content. American Society for Microbiology 2022-01-11 /pmc/articles/PMC8752130/ /pubmed/34669446 http://dx.doi.org/10.1128/AEM.01881-21 Text en Copyright © 2022 Faddetta et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Biotechnology
Faddetta, Teresa
Renzone, Giovanni
Vassallo, Alberto
Rimini, Emilio
Nasillo, Giorgio
Buscarino, Gianpiero
Agnello, Simonpietro
Licciardi, Mariano
Botta, Luigi
Scaloni, Andrea
Palumbo Piccionello, Antonio
Puglia, Anna Maria
Gallo, Giuseppe
Streptomyces coelicolor Vesicles: Many Molecules To Be Delivered
title Streptomyces coelicolor Vesicles: Many Molecules To Be Delivered
title_full Streptomyces coelicolor Vesicles: Many Molecules To Be Delivered
title_fullStr Streptomyces coelicolor Vesicles: Many Molecules To Be Delivered
title_full_unstemmed Streptomyces coelicolor Vesicles: Many Molecules To Be Delivered
title_short Streptomyces coelicolor Vesicles: Many Molecules To Be Delivered
title_sort streptomyces coelicolor vesicles: many molecules to be delivered
topic Biotechnology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8752130/
https://www.ncbi.nlm.nih.gov/pubmed/34669446
http://dx.doi.org/10.1128/AEM.01881-21
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